SlideShare ist ein Scribd-Unternehmen logo
1 von 23
Downloaden Sie, um offline zu lesen
EMTP-RV
              USER GROUP MEETING




EMTP_RV MODELLING FOR THE TRANSMISSION LINE
   LIGHNTING PERFORMANCE COMPUTATION
               T. Sadovic, S. Sadovic




               Dubrovnik 30.04.2009
LINE LIGHTNING PERFORMANCE

THE ANNUAL NUMBER OF LIGHTNING
OUTAGES PER 100 KM OF LINE LENGTH
                                                  I0, tf



                                                           BACK FLASHOVERS
           I0, tf                 I 0, t f




 INDUCED



                             SHIELDING FAILURES
LINE BACK FLASHOVER RATE


THE ANNUAL OUTAGE RATE CAUSED BY A   I0, tf
    FLASHOVER OF LINE INSULATION
 RESULTING FROM THE STROKES TO THE
  TOWERS AND TO THE GROUND WIRES




                                                 Back
                                              flashover
LINE SHIELDING FAILURES

THE ANNUAL NUMBER OF LIGHTNING EVENTS      THE ANNUAL NUMBER OF
THAT BYPASS THE OVERHEAD GROUND WIRES      FLASHOVERS CAUSED BY
AND TERMINATE ON THE PHASE CONDUCTORS        SHIELDING FAILURES


                            I0, tf




                                             Shielding failure
                                                flashover


                       Shielding failure
HOW TO IMPROVE LINE LIGHTNING PERFORMANCE?




                                Additional Shield Wires


                                             Underbuilt Ground Wire
   Increasing Insulation




                                  Line Surge Arrester

      Guy Wires




                           Foot_resistance
                            improvement
LINE SURGE ARRESTER APPLICATION
      123 kV Line Dubrovnik - Ston




                      2 LSA
                     per tower




          1 LSA
         per tower
ELECTROMAGNETIC TRANSIENTS SIMULATION
        MODEL OF THE LINE INSULATION FLASHOVER


            (s2)
                                                                             Flashover models:
U(t)                   (s1)
                              (U - t) Insulation characteristic              Constant voltage
 U2                                                                          Equal area
 U1
                                                                             Leader propagation

 U0

                                                                  Leader propagation model:


       t2     t1                                   t                                                        u (t )
                                                                             u (t )              0 , 0015
                                                                                                              d
                                                                  vl   170 d              E0 e
                                                                             d ll

       d           l                                               vl - Leader speed (m/s)
                                  u(t)

                                                                   d - Arcing distance (m)
                                                                   ll - Leader length (m)
                                                                   u(t) - Applied voltage (kV)
                                                                       E0 = 520 (kV/m)
EQUAL AREA FLASHOVER MODEL                                                                 d                      Ugap(t)



    U(t)
                          t                                                            710
                               ( U gap (t ) U 0 )   k
                                                        D            U        (400             ) d      (kV) [IEEE]
     U2    s              t0
                                                                                       t 0, 75
                          k 1
     U50%      D                                                                                     710
     U0                                                              U8   s    U 50%      (400              ) d   550 d
                                                                                                     80, 75

                   2                        8               t ( s)   U0       0,9 U 50%          495 d

EMTP_RV Model data:
                                                                                          710
                                                                     U2   s     (400              ) d    822 d
[d - arcing distance in meters]                                                           2 0, 75

     U0        495 d
                                                                     D        0,2045 d
     k 1
     D 0,2045 d
ELECTROMAGNETIC TRANSIENTS SIMULATION
SOIL IONIZATION TOWER FOOTING RESISTANCE MODEL
    I



                                       Rlc
                             Ri                   U (kA)            Linear Resistance
                                             I
                                   1
                                             Ig
                                                                Non-Linear Resistance
                                       Eg
                              Ig        2                                     I (kA)
                                    2 Rlc
                                                           Ig

Rlc – low current tower footing resistance ( )
Ri – tower footing impulse resistance ( )
I – impulse current (kA)
Ig – soil ionisation limit current (kA)
Eg – soil ionisation critical electric field (kV/m) – [Eg = 400 (kV/m)]
QUICK BACK FLASHOVER RATE COMPUTATIONS

Stroke current is changed until
flashover [IC obtained]
                                     W - Line shadow width
                                     A - Line attraction area
                   IC
                                     hav - Tower average height
                                     IC - Back flashover critical current
                                                100 km




                                       A = 100 x W (km2)                    W


                           Back
hav                      Flashover
                                           Ra    14 hav, 6
                                                     0


                                           W     2 Ra        b
                                           A 100 W
                                           N L NG A
              W
QUICK BACK FLASHOVER RATE COMPUTATIONS

                                                          100 km
             IC



                                                 A = 100 x W (km2)                   W



                                             1               Ra      14 hav, 6
                                                                         0
                                   PI C
                                             I
                    Back                  1 ( C ) 2,6        W       2 Ra        b
hav               Flashover                  31
                                                             A 100 W
                                  BFR      0,6 N L PI C
                                                             N L NG A
                              W - Line shadow width
                              b - Ground wire separation distance
         W
                              NL - Number of strokes collected [str/100km/year]
                              NG – Ground flash density [str/km2/year]
                              BFR - Back flashover rate
                              0,6 > Takes into account strokes hitting shield wire
IEEE DISTRIBUTION



                             1                     i0 (t)        S (kA/ s)
CURRENT PEAK
                    PI
                              I
                          1 ( ) 2,6              I0
                             31
                                                 I0/2
                             1                                                t ( s)
STEEPNESS           PS
                              S 4                           tf           tt
                          1 ( )
                             24

Equal Probability        PS    PI



                               I0
                         S
                               tf
                                        Equivalent Front Time
123 kV TRANSMISSION LINE DUBROVNIK STON


    No       DC Resistance   Outside diameter    x [m]         y [m]           y [m]
              [Ohm/km]             [cm]                                     at midspan
        1       0.1444            1.708           2.5           22.7           14.1
        2       0.1444            1.708           -3            20.5           11.9
        3       0.1444            1.708           3.5           18.3            9.7
        4       0.4555              0.9            0            28.9           21.3
    4

                                                                       L1 = 2,8 H

                                                                       L2 = 1,37 H
                         Un=       123 kV
                         Length = 46 km                                L3 = 1,37 H
             1           Span = 200 m
                         L = ZT/v
2                        v - velocity of light           hT = 28,9 m                          Propagation
             3                                                                                  element
                                                                                         lprop = 20 m

                                                                                         ZT = 184
LINE SURGE ARRESTER



    Rated voltage: 123 kV
    IEC Class II
    Polymer housed


Current (A)         Voltage (V)
   1000              239000
   2500              252000
   5000              275000
  10000              291000
  20000              324000
  40000              357000
123 kV TRANSMISSION LINE DUBROVNIK STON


                Ground flash density: 5 strokes/km2/year
                Length = 46 km


    Ra   14 hav, 6
             0
                         14 28,90, 6      105 (m)
    W    2 Ra        b    2 105 0         210 (m)
    A 100 W 100 0,210 21                         (km2)
    N L N G A 5 21 105                           (strokes/100km/year)
                Using EMTP_RV find IC (Critical current)

                                          1
                              PI C
                                          I
                                       1 ( C ) 2,6
                                          31
                              BFR       0,6 105 PI C
AUTOMATIC BACKFLASHOVER COMPUTATIONS


EMTP_RV Line section model created
Netlist file obtained
AUTOMATIC BACKFLASHOVER SIMULATIONS

                           Tower Model> Sub circuits




Air gap model
Signal = 0: No flashover
Signal =1: Flashover
AUTOMATIC BACKFLASHOVER SIMULATIONS

     Tool developed to run EMTP_RV in a loop




 Initial stroke current   Current step
AUTOMATIC BACKFLASHOVER SIMULATIONS

  EMTP_RV is running in the loop until gap signal > 0




                                Stroke Sub circuit


Flashover Tower 2
Phase conductor C
AUTOMATIC BACKFLASHOVER SIMULATIONS

EMTP_RV is running in the loop until gap signal > 0

                     Critical current




                      Back flashover rate
FUTURE WORK > 3D EGM

                I0, tf
                                                         WS - SIMULATED WIDTH

                                                          STRIKING DISTANCES
                              DOWNWARD
                               LEADER                          1. TO PHC & GW:

     rT1                                                          rS = A I B
                                  rT2
                                                                [A=10, B=0,65]

                                         span                  2. TO TOWERS:
                                                                   rTT = k rS
                         rE
                                                                  [k= 1 – 1,1]

                                                                3. TO EARTH:
x0                                         WS


           y0                                   IEEE :    rE     3,6 1,7 ln(43 yv ) I0,65
FUTURE WORK > 3D EGM


                                          DOWNWARD
         I0, tf
                                      LEADER APPROACHES
                                         UNDER ANGLE

                                                           2
                                                      f        cos2

                              rGW                         rGW = rPHC = rNO = rS

                               rPHC    GW
         rNO

NEARBY                        PHC
OBJECT
     hl
                              dl
                  x0

                       WS/2                   WS/2
FUTURE WORK > sigma slp like interface
EMTP_RV modeling and transients computation
  Monte Carlo Statistical Study and 3D EGM

Weitere Àhnliche Inhalte

Was ist angesagt?

Switchgear presentation
Switchgear presentationSwitchgear presentation
Switchgear presentationNageswar Rao
 
DigSILENT PF - 02. introducciĂłn al entrenamiento
DigSILENT PF - 02. introducciĂłn al entrenamientoDigSILENT PF - 02. introducciĂłn al entrenamiento
DigSILENT PF - 02. introducciĂłn al entrenamientoHimmelstern
 
Generator protection LEC 2
Generator protection  LEC 2Generator protection  LEC 2
Generator protection LEC 2Rahaf Waheep
 
Load Distribution
Load DistributionLoad Distribution
Load DistributionArpit Gupta
 
Power System Protection
Power System ProtectionPower System Protection
Power System ProtectionSumeet Ratnawat
 
DigSILENT PF - 05 (es) pf cortocircuito s
DigSILENT PF - 05 (es) pf cortocircuito sDigSILENT PF - 05 (es) pf cortocircuito s
DigSILENT PF - 05 (es) pf cortocircuito sHimmelstern
 
Safe Operation and Maintenance of Circuit Breakers and Switchgear
Safe Operation and Maintenance of Circuit Breakers and SwitchgearSafe Operation and Maintenance of Circuit Breakers and Switchgear
Safe Operation and Maintenance of Circuit Breakers and SwitchgearLiving Online
 
Project report latest
Project report latestProject report latest
Project report latestaqeela hamzah
 
Switchgear - complete guide
Switchgear - complete guideSwitchgear - complete guide
Switchgear - complete guideSlides Hub
 
Current transformer (ct)
Current transformer (ct)Current transformer (ct)
Current transformer (ct)Jay Ranvir
 
Types of insulator
Types of insulatorTypes of insulator
Types of insulatoradeelshafiq
 
distance relay
distance relaydistance relay
distance relaySURAJ PRASAD
 
Chapter 4 (power factor correction)
Chapter 4 (power factor correction)Chapter 4 (power factor correction)
Chapter 4 (power factor correction)fairuzid
 
Cpc 100 user manual
Cpc 100 user manualCpc 100 user manual
Cpc 100 user manualSARAVANAN A
 
synchronous generator excitation
synchronous generator excitationsynchronous generator excitation
synchronous generator excitationMaria Romina Angustia
 
Reactive power compensation
Reactive power compensationReactive power compensation
Reactive power compensationBiswajit Pratihari
 
Transformers protection, an introduction
Transformers protection, an introductionTransformers protection, an introduction
Transformers protection, an introductionH. Kheir
 

Was ist angesagt? (20)

Switchgear presentation
Switchgear presentationSwitchgear presentation
Switchgear presentation
 
DigSILENT PF - 02. introducciĂłn al entrenamiento
DigSILENT PF - 02. introducciĂłn al entrenamientoDigSILENT PF - 02. introducciĂłn al entrenamiento
DigSILENT PF - 02. introducciĂłn al entrenamiento
 
Generator protection LEC 2
Generator protection  LEC 2Generator protection  LEC 2
Generator protection LEC 2
 
Load Distribution
Load DistributionLoad Distribution
Load Distribution
 
Power System Protection
Power System ProtectionPower System Protection
Power System Protection
 
DigSILENT PF - 05 (es) pf cortocircuito s
DigSILENT PF - 05 (es) pf cortocircuito sDigSILENT PF - 05 (es) pf cortocircuito s
DigSILENT PF - 05 (es) pf cortocircuito s
 
Safe Operation and Maintenance of Circuit Breakers and Switchgear
Safe Operation and Maintenance of Circuit Breakers and SwitchgearSafe Operation and Maintenance of Circuit Breakers and Switchgear
Safe Operation and Maintenance of Circuit Breakers and Switchgear
 
Dynamic voltage restorer (dvr)2
Dynamic voltage restorer (dvr)2Dynamic voltage restorer (dvr)2
Dynamic voltage restorer (dvr)2
 
Project report latest
Project report latestProject report latest
Project report latest
 
Switchgear - complete guide
Switchgear - complete guideSwitchgear - complete guide
Switchgear - complete guide
 
Current transformer (ct)
Current transformer (ct)Current transformer (ct)
Current transformer (ct)
 
Types of insulator
Types of insulatorTypes of insulator
Types of insulator
 
distance relay
distance relaydistance relay
distance relay
 
Chapter 4 (power factor correction)
Chapter 4 (power factor correction)Chapter 4 (power factor correction)
Chapter 4 (power factor correction)
 
Switchgear presentation
Switchgear presentationSwitchgear presentation
Switchgear presentation
 
To study of Shaded pole Induction motor
To study of Shaded pole Induction motorTo study of Shaded pole Induction motor
To study of Shaded pole Induction motor
 
Cpc 100 user manual
Cpc 100 user manualCpc 100 user manual
Cpc 100 user manual
 
synchronous generator excitation
synchronous generator excitationsynchronous generator excitation
synchronous generator excitation
 
Reactive power compensation
Reactive power compensationReactive power compensation
Reactive power compensation
 
Transformers protection, an introduction
Transformers protection, an introductionTransformers protection, an introduction
Transformers protection, an introduction
 

Ähnlich wie Sadovic Lighting Performance Computation

SPICE MODEL of 2SJ438 (Standard+BDS Model) in SPICE PARK
SPICE MODEL of 2SJ438 (Standard+BDS Model) in SPICE PARKSPICE MODEL of 2SJ438 (Standard+BDS Model) in SPICE PARK
SPICE MODEL of 2SJ438 (Standard+BDS Model) in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of 2SK2563 (Professional+BDP Model) in SPICE PARK
SPICE MODEL of 2SK2563 (Professional+BDP Model) in SPICE PARKSPICE MODEL of 2SK2563 (Professional+BDP Model) in SPICE PARK
SPICE MODEL of 2SK2563 (Professional+BDP Model) in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of 2SK2563 (Professional+BDS Model) in SPICE PARK
SPICE MODEL of 2SK2563 (Professional+BDS Model) in SPICE PARKSPICE MODEL of 2SK2563 (Professional+BDS Model) in SPICE PARK
SPICE MODEL of 2SK2563 (Professional+BDS Model) in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of TLWH1100 , White ,TA=40degree (Professional Model) in SPICE PARK
SPICE MODEL of TLWH1100 , White ,TA=40degree (Professional Model) in SPICE PARKSPICE MODEL of TLWH1100 , White ,TA=40degree (Professional Model) in SPICE PARK
SPICE MODEL of TLWH1100 , White ,TA=40degree (Professional Model) in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of 1MB15D-060 (Professional+FWDS Model) in SPICE PARK
SPICE MODEL of 1MB15D-060 (Professional+FWDS Model) in SPICE PARKSPICE MODEL of 1MB15D-060 (Professional+FWDS Model) in SPICE PARK
SPICE MODEL of 1MB15D-060 (Professional+FWDS Model) in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of SSM3J314T (Standard+BDS Model) in SPICE PARK
SPICE MODEL of SSM3J314T (Standard+BDS Model) in SPICE PARKSPICE MODEL of SSM3J314T (Standard+BDS Model) in SPICE PARK
SPICE MODEL of SSM3J314T (Standard+BDS Model) in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of PC851 in SPICE PARK
SPICE MODEL of PC851 in SPICE PARKSPICE MODEL of PC851 in SPICE PARK
SPICE MODEL of PC851 in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of U71 in SPICE PARK
SPICE MODEL of U71 in SPICE PARKSPICE MODEL of U71 in SPICE PARK
SPICE MODEL of U71 in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of N13T1 in SPICE PARK
SPICE MODEL of N13T1 in SPICE PARKSPICE MODEL of N13T1 in SPICE PARK
SPICE MODEL of N13T1 in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of N13T1 in SPICE PARK
SPICE MODEL of N13T1 in SPICE PARKSPICE MODEL of N13T1 in SPICE PARK
SPICE MODEL of N13T1 in SPICE PARKTsuyoshi Horigome
 
N13T1たă‚čăƒ‘ă‚€ă‚čăƒąăƒ‡ăƒ«
N13T1たă‚čăƒ‘ă‚€ă‚čăƒąăƒ‡ăƒ«N13T1たă‚čăƒ‘ă‚€ă‚čăƒąăƒ‡ăƒ«
N13T1たă‚čăƒ‘ă‚€ă‚čăƒąăƒ‡ăƒ«Tsuyoshi Horigome
 
SPICE MODEL of IDD04SG60C (Professional Model) in SPICE PARK
SPICE MODEL of IDD04SG60C (Professional Model) in SPICE PARKSPICE MODEL of IDD04SG60C (Professional Model) in SPICE PARK
SPICE MODEL of IDD04SG60C (Professional Model) in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of 1MBC10D-060 (Professional+FWDS Model) in SPICE PARK
SPICE MODEL of 1MBC10D-060 (Professional+FWDS Model) in SPICE PARKSPICE MODEL of 1MBC10D-060 (Professional+FWDS Model) in SPICE PARK
SPICE MODEL of 1MBC10D-060 (Professional+FWDS Model) in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of TPC8111 (Professional+BDP Model) in SPICE PARK
SPICE MODEL of TPC8111 (Professional+BDP Model) in SPICE PARKSPICE MODEL of TPC8111 (Professional+BDP Model) in SPICE PARK
SPICE MODEL of TPC8111 (Professional+BDP Model) in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of LM7924 SIMetrix in SPICE PARK
SPICE MODEL of LM7924 SIMetrix in SPICE PARKSPICE MODEL of LM7924 SIMetrix in SPICE PARK
SPICE MODEL of LM7924 SIMetrix in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of uPC78L15T in SPICE PARK
SPICE MODEL of uPC78L15T in SPICE PARKSPICE MODEL of uPC78L15T in SPICE PARK
SPICE MODEL of uPC78L15T in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of 2SK3611-01MR (Standard+BDS Model) in SPICE PARK
SPICE MODEL of 2SK3611-01MR (Standard+BDS Model) in SPICE PARKSPICE MODEL of 2SK3611-01MR (Standard+BDS Model) in SPICE PARK
SPICE MODEL of 2SK3611-01MR (Standard+BDS Model) in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of uPC7805A in SPICE PARK
SPICE MODEL of uPC7805A in SPICE PARKSPICE MODEL of uPC7805A in SPICE PARK
SPICE MODEL of uPC7805A in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of 2SK4075 (Standard+BDS Model) in SPICE PARK
SPICE MODEL of 2SK4075 (Standard+BDS Model) in SPICE PARKSPICE MODEL of 2SK4075 (Standard+BDS Model) in SPICE PARK
SPICE MODEL of 2SK4075 (Standard+BDS Model) in SPICE PARKTsuyoshi Horigome
 
SPICE MODEL of LM7824 SIMetrix in SPICE PARK
SPICE MODEL of LM7824 SIMetrix in SPICE PARKSPICE MODEL of LM7824 SIMetrix in SPICE PARK
SPICE MODEL of LM7824 SIMetrix in SPICE PARKTsuyoshi Horigome
 

Ähnlich wie Sadovic Lighting Performance Computation (20)

SPICE MODEL of 2SJ438 (Standard+BDS Model) in SPICE PARK
SPICE MODEL of 2SJ438 (Standard+BDS Model) in SPICE PARKSPICE MODEL of 2SJ438 (Standard+BDS Model) in SPICE PARK
SPICE MODEL of 2SJ438 (Standard+BDS Model) in SPICE PARK
 
SPICE MODEL of 2SK2563 (Professional+BDP Model) in SPICE PARK
SPICE MODEL of 2SK2563 (Professional+BDP Model) in SPICE PARKSPICE MODEL of 2SK2563 (Professional+BDP Model) in SPICE PARK
SPICE MODEL of 2SK2563 (Professional+BDP Model) in SPICE PARK
 
SPICE MODEL of 2SK2563 (Professional+BDS Model) in SPICE PARK
SPICE MODEL of 2SK2563 (Professional+BDS Model) in SPICE PARKSPICE MODEL of 2SK2563 (Professional+BDS Model) in SPICE PARK
SPICE MODEL of 2SK2563 (Professional+BDS Model) in SPICE PARK
 
SPICE MODEL of TLWH1100 , White ,TA=40degree (Professional Model) in SPICE PARK
SPICE MODEL of TLWH1100 , White ,TA=40degree (Professional Model) in SPICE PARKSPICE MODEL of TLWH1100 , White ,TA=40degree (Professional Model) in SPICE PARK
SPICE MODEL of TLWH1100 , White ,TA=40degree (Professional Model) in SPICE PARK
 
SPICE MODEL of 1MB15D-060 (Professional+FWDS Model) in SPICE PARK
SPICE MODEL of 1MB15D-060 (Professional+FWDS Model) in SPICE PARKSPICE MODEL of 1MB15D-060 (Professional+FWDS Model) in SPICE PARK
SPICE MODEL of 1MB15D-060 (Professional+FWDS Model) in SPICE PARK
 
SPICE MODEL of SSM3J314T (Standard+BDS Model) in SPICE PARK
SPICE MODEL of SSM3J314T (Standard+BDS Model) in SPICE PARKSPICE MODEL of SSM3J314T (Standard+BDS Model) in SPICE PARK
SPICE MODEL of SSM3J314T (Standard+BDS Model) in SPICE PARK
 
SPICE MODEL of PC851 in SPICE PARK
SPICE MODEL of PC851 in SPICE PARKSPICE MODEL of PC851 in SPICE PARK
SPICE MODEL of PC851 in SPICE PARK
 
SPICE MODEL of U71 in SPICE PARK
SPICE MODEL of U71 in SPICE PARKSPICE MODEL of U71 in SPICE PARK
SPICE MODEL of U71 in SPICE PARK
 
SPICE MODEL of N13T1 in SPICE PARK
SPICE MODEL of N13T1 in SPICE PARKSPICE MODEL of N13T1 in SPICE PARK
SPICE MODEL of N13T1 in SPICE PARK
 
SPICE MODEL of N13T1 in SPICE PARK
SPICE MODEL of N13T1 in SPICE PARKSPICE MODEL of N13T1 in SPICE PARK
SPICE MODEL of N13T1 in SPICE PARK
 
N13T1たă‚čăƒ‘ă‚€ă‚čăƒąăƒ‡ăƒ«
N13T1たă‚čăƒ‘ă‚€ă‚čăƒąăƒ‡ăƒ«N13T1たă‚čăƒ‘ă‚€ă‚čăƒąăƒ‡ăƒ«
N13T1たă‚čăƒ‘ă‚€ă‚čăƒąăƒ‡ăƒ«
 
SPICE MODEL of IDD04SG60C (Professional Model) in SPICE PARK
SPICE MODEL of IDD04SG60C (Professional Model) in SPICE PARKSPICE MODEL of IDD04SG60C (Professional Model) in SPICE PARK
SPICE MODEL of IDD04SG60C (Professional Model) in SPICE PARK
 
SPICE MODEL of 1MBC10D-060 (Professional+FWDS Model) in SPICE PARK
SPICE MODEL of 1MBC10D-060 (Professional+FWDS Model) in SPICE PARKSPICE MODEL of 1MBC10D-060 (Professional+FWDS Model) in SPICE PARK
SPICE MODEL of 1MBC10D-060 (Professional+FWDS Model) in SPICE PARK
 
SPICE MODEL of TPC8111 (Professional+BDP Model) in SPICE PARK
SPICE MODEL of TPC8111 (Professional+BDP Model) in SPICE PARKSPICE MODEL of TPC8111 (Professional+BDP Model) in SPICE PARK
SPICE MODEL of TPC8111 (Professional+BDP Model) in SPICE PARK
 
SPICE MODEL of LM7924 SIMetrix in SPICE PARK
SPICE MODEL of LM7924 SIMetrix in SPICE PARKSPICE MODEL of LM7924 SIMetrix in SPICE PARK
SPICE MODEL of LM7924 SIMetrix in SPICE PARK
 
SPICE MODEL of uPC78L15T in SPICE PARK
SPICE MODEL of uPC78L15T in SPICE PARKSPICE MODEL of uPC78L15T in SPICE PARK
SPICE MODEL of uPC78L15T in SPICE PARK
 
SPICE MODEL of 2SK3611-01MR (Standard+BDS Model) in SPICE PARK
SPICE MODEL of 2SK3611-01MR (Standard+BDS Model) in SPICE PARKSPICE MODEL of 2SK3611-01MR (Standard+BDS Model) in SPICE PARK
SPICE MODEL of 2SK3611-01MR (Standard+BDS Model) in SPICE PARK
 
SPICE MODEL of uPC7805A in SPICE PARK
SPICE MODEL of uPC7805A in SPICE PARKSPICE MODEL of uPC7805A in SPICE PARK
SPICE MODEL of uPC7805A in SPICE PARK
 
SPICE MODEL of 2SK4075 (Standard+BDS Model) in SPICE PARK
SPICE MODEL of 2SK4075 (Standard+BDS Model) in SPICE PARKSPICE MODEL of 2SK4075 (Standard+BDS Model) in SPICE PARK
SPICE MODEL of 2SK4075 (Standard+BDS Model) in SPICE PARK
 
SPICE MODEL of LM7824 SIMetrix in SPICE PARK
SPICE MODEL of LM7824 SIMetrix in SPICE PARKSPICE MODEL of LM7824 SIMetrix in SPICE PARK
SPICE MODEL of LM7824 SIMetrix in SPICE PARK
 

Mehr von corinne rocherieux

Rte Parisot Overview Of Emtp Studiesandmodel Devpt At Rte
Rte Parisot Overview Of Emtp Studiesandmodel Devpt At RteRte Parisot Overview Of Emtp Studiesandmodel Devpt At Rte
Rte Parisot Overview Of Emtp Studiesandmodel Devpt At Rtecorinne rocherieux
 
Rte Guerrier Lips Toolbox
Rte Guerrier Lips ToolboxRte Guerrier Lips Toolbox
Rte Guerrier Lips Toolboxcorinne rocherieux
 
Rte Lebranchu Compensation And Transient Studies Onalong Ehv Overheadline
Rte Lebranchu Compensation And Transient Studies Onalong Ehv OverheadlineRte Lebranchu Compensation And Transient Studies Onalong Ehv Overheadline
Rte Lebranchu Compensation And Transient Studies Onalong Ehv Overheadlinecorinne rocherieux
 
Rte Dufour Protection Systemforactives Substation
Rte Dufour Protection Systemforactives SubstationRte Dufour Protection Systemforactives Substation
Rte Dufour Protection Systemforactives Substationcorinne rocherieux
 
Univ Of Zagreb Uglesic Prevention Of Flashover
Univ Of Zagreb Uglesic Prevention Of FlashoverUniv Of Zagreb Uglesic Prevention Of Flashover
Univ Of Zagreb Uglesic Prevention Of Flashovercorinne rocherieux
 
Edf R&D Xemard Coupling Between Transmission Underground Cables And Pipelines
Edf R&D Xemard Coupling Between Transmission Underground Cables And PipelinesEdf R&D Xemard Coupling Between Transmission Underground Cables And Pipelines
Edf R&D Xemard Coupling Between Transmission Underground Cables And Pipelinescorinne rocherieux
 
Hydro Quebec Roumy Interfacing Emtp Rv Withothersoftware Using C++
Hydro Quebec Roumy Interfacing Emtp Rv Withothersoftware Using C++Hydro Quebec Roumy Interfacing Emtp Rv Withothersoftware Using C++
Hydro Quebec Roumy Interfacing Emtp Rv Withothersoftware Using C++corinne rocherieux
 
Opal Rt Giroux Scrpting In Emtp Works
Opal Rt Giroux Scrpting In Emtp WorksOpal Rt Giroux Scrpting In Emtp Works
Opal Rt Giroux Scrpting In Emtp Workscorinne rocherieux
 
Edf R&D Dennetiere Hvdc Emtp
Edf R&D Dennetiere Hvdc EmtpEdf R&D Dennetiere Hvdc Emtp
Edf R&D Dennetiere Hvdc Emtpcorinne rocherieux
 
Emtp User Group092008 Supelec Stab Transitoire Web
Emtp User Group092008 Supelec Stab Transitoire WebEmtp User Group092008 Supelec Stab Transitoire Web
Emtp User Group092008 Supelec Stab Transitoire Webcorinne rocherieux
 
Emtp User Group092008 Sicae Raccordement Resau Web
Emtp User Group092008 Sicae Raccordement Resau WebEmtp User Group092008 Sicae Raccordement Resau Web
Emtp User Group092008 Sicae Raccordement Resau Webcorinne rocherieux
 
Emtp User Group092008 Sadovic Etudes Web
Emtp User Group092008 Sadovic Etudes WebEmtp User Group092008 Sadovic Etudes Web
Emtp User Group092008 Sadovic Etudes Webcorinne rocherieux
 
Emtp User Group092008 Rte Etudes Ttr Web
Emtp User Group092008 Rte Etudes Ttr WebEmtp User Group092008 Rte Etudes Ttr Web
Emtp User Group092008 Rte Etudes Ttr Webcorinne rocherieux
 
Emtp User Group092008 Polytechnique Montreal Nouveaux Dvpts Web
Emtp User Group092008 Polytechnique Montreal Nouveaux Dvpts WebEmtp User Group092008 Polytechnique Montreal Nouveaux Dvpts Web
Emtp User Group092008 Polytechnique Montreal Nouveaux Dvpts Webcorinne rocherieux
 
Emtp User Group092008 Idea P Vprotection Web
Emtp User Group092008 Idea P Vprotection WebEmtp User Group092008 Idea P Vprotection Web
Emtp User Group092008 Idea P Vprotection Webcorinne rocherieux
 
Emtp User Group092008 Idea P Vgeneration Web
Emtp User Group092008 Idea P Vgeneration WebEmtp User Group092008 Idea P Vgeneration Web
Emtp User Group092008 Idea P Vgeneration Webcorinne rocherieux
 
Emtp User Group092008 Edf Ttr Discordance Phase Web
Emtp User Group092008 Edf Ttr Discordance Phase WebEmtp User Group092008 Edf Ttr Discordance Phase Web
Emtp User Group092008 Edf Ttr Discordance Phase Webcorinne rocherieux
 
Emtp User Group092008 Edf Sectionneurs Web
Emtp User Group092008 Edf Sectionneurs WebEmtp User Group092008 Edf Sectionneurs Web
Emtp User Group092008 Edf Sectionneurs Webcorinne rocherieux
 
Emtp User Group092008 Edf Programme Web
Emtp User Group092008 Edf Programme WebEmtp User Group092008 Edf Programme Web
Emtp User Group092008 Edf Programme Webcorinne rocherieux
 

Mehr von corinne rocherieux (20)

Rte Parisot Overview Of Emtp Studiesandmodel Devpt At Rte
Rte Parisot Overview Of Emtp Studiesandmodel Devpt At RteRte Parisot Overview Of Emtp Studiesandmodel Devpt At Rte
Rte Parisot Overview Of Emtp Studiesandmodel Devpt At Rte
 
Rte Guerrier Lips Toolbox
Rte Guerrier Lips ToolboxRte Guerrier Lips Toolbox
Rte Guerrier Lips Toolbox
 
Rte Lebranchu Compensation And Transient Studies Onalong Ehv Overheadline
Rte Lebranchu Compensation And Transient Studies Onalong Ehv OverheadlineRte Lebranchu Compensation And Transient Studies Onalong Ehv Overheadline
Rte Lebranchu Compensation And Transient Studies Onalong Ehv Overheadline
 
Rte Dufour Protection Systemforactives Substation
Rte Dufour Protection Systemforactives SubstationRte Dufour Protection Systemforactives Substation
Rte Dufour Protection Systemforactives Substation
 
Univ Of Zagreb Uglesic Prevention Of Flashover
Univ Of Zagreb Uglesic Prevention Of FlashoverUniv Of Zagreb Uglesic Prevention Of Flashover
Univ Of Zagreb Uglesic Prevention Of Flashover
 
Emtp Mahseredjian R&D
Emtp Mahseredjian R&DEmtp Mahseredjian R&D
Emtp Mahseredjian R&D
 
Edf R&D Xemard Coupling Between Transmission Underground Cables And Pipelines
Edf R&D Xemard Coupling Between Transmission Underground Cables And PipelinesEdf R&D Xemard Coupling Between Transmission Underground Cables And Pipelines
Edf R&D Xemard Coupling Between Transmission Underground Cables And Pipelines
 
Hydro Quebec Roumy Interfacing Emtp Rv Withothersoftware Using C++
Hydro Quebec Roumy Interfacing Emtp Rv Withothersoftware Using C++Hydro Quebec Roumy Interfacing Emtp Rv Withothersoftware Using C++
Hydro Quebec Roumy Interfacing Emtp Rv Withothersoftware Using C++
 
Opal Rt Giroux Scrpting In Emtp Works
Opal Rt Giroux Scrpting In Emtp WorksOpal Rt Giroux Scrpting In Emtp Works
Opal Rt Giroux Scrpting In Emtp Works
 
Edf R&D Dennetiere Hvdc Emtp
Edf R&D Dennetiere Hvdc EmtpEdf R&D Dennetiere Hvdc Emtp
Edf R&D Dennetiere Hvdc Emtp
 
Emtp User Group092008 Supelec Stab Transitoire Web
Emtp User Group092008 Supelec Stab Transitoire WebEmtp User Group092008 Supelec Stab Transitoire Web
Emtp User Group092008 Supelec Stab Transitoire Web
 
Emtp User Group092008 Sicae Raccordement Resau Web
Emtp User Group092008 Sicae Raccordement Resau WebEmtp User Group092008 Sicae Raccordement Resau Web
Emtp User Group092008 Sicae Raccordement Resau Web
 
Emtp User Group092008 Sadovic Etudes Web
Emtp User Group092008 Sadovic Etudes WebEmtp User Group092008 Sadovic Etudes Web
Emtp User Group092008 Sadovic Etudes Web
 
Emtp User Group092008 Rte Etudes Ttr Web
Emtp User Group092008 Rte Etudes Ttr WebEmtp User Group092008 Rte Etudes Ttr Web
Emtp User Group092008 Rte Etudes Ttr Web
 
Emtp User Group092008 Polytechnique Montreal Nouveaux Dvpts Web
Emtp User Group092008 Polytechnique Montreal Nouveaux Dvpts WebEmtp User Group092008 Polytechnique Montreal Nouveaux Dvpts Web
Emtp User Group092008 Polytechnique Montreal Nouveaux Dvpts Web
 
Emtp User Group092008 Idea P Vprotection Web
Emtp User Group092008 Idea P Vprotection WebEmtp User Group092008 Idea P Vprotection Web
Emtp User Group092008 Idea P Vprotection Web
 
Emtp User Group092008 Idea P Vgeneration Web
Emtp User Group092008 Idea P Vgeneration WebEmtp User Group092008 Idea P Vgeneration Web
Emtp User Group092008 Idea P Vgeneration Web
 
Emtp User Group092008 Edf Ttr Discordance Phase Web
Emtp User Group092008 Edf Ttr Discordance Phase WebEmtp User Group092008 Edf Ttr Discordance Phase Web
Emtp User Group092008 Edf Ttr Discordance Phase Web
 
Emtp User Group092008 Edf Sectionneurs Web
Emtp User Group092008 Edf Sectionneurs WebEmtp User Group092008 Edf Sectionneurs Web
Emtp User Group092008 Edf Sectionneurs Web
 
Emtp User Group092008 Edf Programme Web
Emtp User Group092008 Edf Programme WebEmtp User Group092008 Edf Programme Web
Emtp User Group092008 Edf Programme Web
 

KĂŒrzlich hochgeladen

CNv6 Instructor Chapter 6 Quality of Service
CNv6 Instructor Chapter 6 Quality of ServiceCNv6 Instructor Chapter 6 Quality of Service
CNv6 Instructor Chapter 6 Quality of Servicegiselly40
 
Transforming Data Streams with Kafka Connect: An Introduction to Single Messa...
Transforming Data Streams with Kafka Connect: An Introduction to Single Messa...Transforming Data Streams with Kafka Connect: An Introduction to Single Messa...
Transforming Data Streams with Kafka Connect: An Introduction to Single Messa...HostedbyConfluent
 
🐬 The future of MySQL is Postgres 🐘
🐬  The future of MySQL is Postgres   🐘🐬  The future of MySQL is Postgres   🐘
🐬 The future of MySQL is Postgres 🐘RTylerCroy
 
FULL ENJOY 🔝 8264348440 🔝 Call Girls in Diplomatic Enclave | Delhi
FULL ENJOY 🔝 8264348440 🔝 Call Girls in Diplomatic Enclave | DelhiFULL ENJOY 🔝 8264348440 🔝 Call Girls in Diplomatic Enclave | Delhi
FULL ENJOY 🔝 8264348440 🔝 Call Girls in Diplomatic Enclave | Delhisoniya singh
 
Handwritten Text Recognition for manuscripts and early printed texts
Handwritten Text Recognition for manuscripts and early printed textsHandwritten Text Recognition for manuscripts and early printed texts
Handwritten Text Recognition for manuscripts and early printed textsMaria Levchenko
 
Slack Application Development 101 Slides
Slack Application Development 101 SlidesSlack Application Development 101 Slides
Slack Application Development 101 Slidespraypatel2
 
Finology Group – Insurtech Innovation Award 2024
Finology Group – Insurtech Innovation Award 2024Finology Group – Insurtech Innovation Award 2024
Finology Group – Insurtech Innovation Award 2024The Digital Insurer
 
WhatsApp 9892124323 ✓Call Girls In Kalyan ( Mumbai ) secure service
WhatsApp 9892124323 ✓Call Girls In Kalyan ( Mumbai ) secure serviceWhatsApp 9892124323 ✓Call Girls In Kalyan ( Mumbai ) secure service
WhatsApp 9892124323 ✓Call Girls In Kalyan ( Mumbai ) secure servicePooja Nehwal
 
Raspberry Pi 5: Challenges and Solutions in Bringing up an OpenGL/Vulkan Driv...
Raspberry Pi 5: Challenges and Solutions in Bringing up an OpenGL/Vulkan Driv...Raspberry Pi 5: Challenges and Solutions in Bringing up an OpenGL/Vulkan Driv...
Raspberry Pi 5: Challenges and Solutions in Bringing up an OpenGL/Vulkan Driv...Igalia
 
Strategies for Unlocking Knowledge Management in Microsoft 365 in the Copilot...
Strategies for Unlocking Knowledge Management in Microsoft 365 in the Copilot...Strategies for Unlocking Knowledge Management in Microsoft 365 in the Copilot...
Strategies for Unlocking Knowledge Management in Microsoft 365 in the Copilot...Drew Madelung
 
Automating Business Process via MuleSoft Composer | Bangalore MuleSoft Meetup...
Automating Business Process via MuleSoft Composer | Bangalore MuleSoft Meetup...Automating Business Process via MuleSoft Composer | Bangalore MuleSoft Meetup...
Automating Business Process via MuleSoft Composer | Bangalore MuleSoft Meetup...shyamraj55
 
A Domino Admins Adventures (Engage 2024)
A Domino Admins Adventures (Engage 2024)A Domino Admins Adventures (Engage 2024)
A Domino Admins Adventures (Engage 2024)Gabriella Davis
 
Enhancing Worker Digital Experience: A Hands-on Workshop for Partners
Enhancing Worker Digital Experience: A Hands-on Workshop for PartnersEnhancing Worker Digital Experience: A Hands-on Workshop for Partners
Enhancing Worker Digital Experience: A Hands-on Workshop for PartnersThousandEyes
 
Injustice - Developers Among Us (SciFiDevCon 2024)
Injustice - Developers Among Us (SciFiDevCon 2024)Injustice - Developers Among Us (SciFiDevCon 2024)
Injustice - Developers Among Us (SciFiDevCon 2024)Allon Mureinik
 
Unblocking The Main Thread Solving ANRs and Frozen Frames
Unblocking The Main Thread Solving ANRs and Frozen FramesUnblocking The Main Thread Solving ANRs and Frozen Frames
Unblocking The Main Thread Solving ANRs and Frozen FramesSinan KOZAK
 
Transcript: #StandardsGoals for 2024: What’s new for BISAC - Tech Forum 2024
Transcript: #StandardsGoals for 2024: What’s new for BISAC - Tech Forum 2024Transcript: #StandardsGoals for 2024: What’s new for BISAC - Tech Forum 2024
Transcript: #StandardsGoals for 2024: What’s new for BISAC - Tech Forum 2024BookNet Canada
 
Maximizing Board Effectiveness 2024 Webinar.pptx
Maximizing Board Effectiveness 2024 Webinar.pptxMaximizing Board Effectiveness 2024 Webinar.pptx
Maximizing Board Effectiveness 2024 Webinar.pptxOnBoard
 
Histor y of HAM Radio presentation slide
Histor y of HAM Radio presentation slideHistor y of HAM Radio presentation slide
Histor y of HAM Radio presentation slidevu2urc
 
From Event to Action: Accelerate Your Decision Making with Real-Time Automation
From Event to Action: Accelerate Your Decision Making with Real-Time AutomationFrom Event to Action: Accelerate Your Decision Making with Real-Time Automation
From Event to Action: Accelerate Your Decision Making with Real-Time AutomationSafe Software
 
SQL Database Design For Developers at php[tek] 2024
SQL Database Design For Developers at php[tek] 2024SQL Database Design For Developers at php[tek] 2024
SQL Database Design For Developers at php[tek] 2024Scott Keck-Warren
 

KĂŒrzlich hochgeladen (20)

CNv6 Instructor Chapter 6 Quality of Service
CNv6 Instructor Chapter 6 Quality of ServiceCNv6 Instructor Chapter 6 Quality of Service
CNv6 Instructor Chapter 6 Quality of Service
 
Transforming Data Streams with Kafka Connect: An Introduction to Single Messa...
Transforming Data Streams with Kafka Connect: An Introduction to Single Messa...Transforming Data Streams with Kafka Connect: An Introduction to Single Messa...
Transforming Data Streams with Kafka Connect: An Introduction to Single Messa...
 
🐬 The future of MySQL is Postgres 🐘
🐬  The future of MySQL is Postgres   🐘🐬  The future of MySQL is Postgres   🐘
🐬 The future of MySQL is Postgres 🐘
 
FULL ENJOY 🔝 8264348440 🔝 Call Girls in Diplomatic Enclave | Delhi
FULL ENJOY 🔝 8264348440 🔝 Call Girls in Diplomatic Enclave | DelhiFULL ENJOY 🔝 8264348440 🔝 Call Girls in Diplomatic Enclave | Delhi
FULL ENJOY 🔝 8264348440 🔝 Call Girls in Diplomatic Enclave | Delhi
 
Handwritten Text Recognition for manuscripts and early printed texts
Handwritten Text Recognition for manuscripts and early printed textsHandwritten Text Recognition for manuscripts and early printed texts
Handwritten Text Recognition for manuscripts and early printed texts
 
Slack Application Development 101 Slides
Slack Application Development 101 SlidesSlack Application Development 101 Slides
Slack Application Development 101 Slides
 
Finology Group – Insurtech Innovation Award 2024
Finology Group – Insurtech Innovation Award 2024Finology Group – Insurtech Innovation Award 2024
Finology Group – Insurtech Innovation Award 2024
 
WhatsApp 9892124323 ✓Call Girls In Kalyan ( Mumbai ) secure service
WhatsApp 9892124323 ✓Call Girls In Kalyan ( Mumbai ) secure serviceWhatsApp 9892124323 ✓Call Girls In Kalyan ( Mumbai ) secure service
WhatsApp 9892124323 ✓Call Girls In Kalyan ( Mumbai ) secure service
 
Raspberry Pi 5: Challenges and Solutions in Bringing up an OpenGL/Vulkan Driv...
Raspberry Pi 5: Challenges and Solutions in Bringing up an OpenGL/Vulkan Driv...Raspberry Pi 5: Challenges and Solutions in Bringing up an OpenGL/Vulkan Driv...
Raspberry Pi 5: Challenges and Solutions in Bringing up an OpenGL/Vulkan Driv...
 
Strategies for Unlocking Knowledge Management in Microsoft 365 in the Copilot...
Strategies for Unlocking Knowledge Management in Microsoft 365 in the Copilot...Strategies for Unlocking Knowledge Management in Microsoft 365 in the Copilot...
Strategies for Unlocking Knowledge Management in Microsoft 365 in the Copilot...
 
Automating Business Process via MuleSoft Composer | Bangalore MuleSoft Meetup...
Automating Business Process via MuleSoft Composer | Bangalore MuleSoft Meetup...Automating Business Process via MuleSoft Composer | Bangalore MuleSoft Meetup...
Automating Business Process via MuleSoft Composer | Bangalore MuleSoft Meetup...
 
A Domino Admins Adventures (Engage 2024)
A Domino Admins Adventures (Engage 2024)A Domino Admins Adventures (Engage 2024)
A Domino Admins Adventures (Engage 2024)
 
Enhancing Worker Digital Experience: A Hands-on Workshop for Partners
Enhancing Worker Digital Experience: A Hands-on Workshop for PartnersEnhancing Worker Digital Experience: A Hands-on Workshop for Partners
Enhancing Worker Digital Experience: A Hands-on Workshop for Partners
 
Injustice - Developers Among Us (SciFiDevCon 2024)
Injustice - Developers Among Us (SciFiDevCon 2024)Injustice - Developers Among Us (SciFiDevCon 2024)
Injustice - Developers Among Us (SciFiDevCon 2024)
 
Unblocking The Main Thread Solving ANRs and Frozen Frames
Unblocking The Main Thread Solving ANRs and Frozen FramesUnblocking The Main Thread Solving ANRs and Frozen Frames
Unblocking The Main Thread Solving ANRs and Frozen Frames
 
Transcript: #StandardsGoals for 2024: What’s new for BISAC - Tech Forum 2024
Transcript: #StandardsGoals for 2024: What’s new for BISAC - Tech Forum 2024Transcript: #StandardsGoals for 2024: What’s new for BISAC - Tech Forum 2024
Transcript: #StandardsGoals for 2024: What’s new for BISAC - Tech Forum 2024
 
Maximizing Board Effectiveness 2024 Webinar.pptx
Maximizing Board Effectiveness 2024 Webinar.pptxMaximizing Board Effectiveness 2024 Webinar.pptx
Maximizing Board Effectiveness 2024 Webinar.pptx
 
Histor y of HAM Radio presentation slide
Histor y of HAM Radio presentation slideHistor y of HAM Radio presentation slide
Histor y of HAM Radio presentation slide
 
From Event to Action: Accelerate Your Decision Making with Real-Time Automation
From Event to Action: Accelerate Your Decision Making with Real-Time AutomationFrom Event to Action: Accelerate Your Decision Making with Real-Time Automation
From Event to Action: Accelerate Your Decision Making with Real-Time Automation
 
SQL Database Design For Developers at php[tek] 2024
SQL Database Design For Developers at php[tek] 2024SQL Database Design For Developers at php[tek] 2024
SQL Database Design For Developers at php[tek] 2024
 

Sadovic Lighting Performance Computation

  • 1. EMTP-RV USER GROUP MEETING EMTP_RV MODELLING FOR THE TRANSMISSION LINE LIGHNTING PERFORMANCE COMPUTATION T. Sadovic, S. Sadovic Dubrovnik 30.04.2009
  • 2. LINE LIGHTNING PERFORMANCE THE ANNUAL NUMBER OF LIGHTNING OUTAGES PER 100 KM OF LINE LENGTH I0, tf BACK FLASHOVERS I0, tf I 0, t f INDUCED SHIELDING FAILURES
  • 3. LINE BACK FLASHOVER RATE THE ANNUAL OUTAGE RATE CAUSED BY A I0, tf FLASHOVER OF LINE INSULATION RESULTING FROM THE STROKES TO THE TOWERS AND TO THE GROUND WIRES Back flashover
  • 4. LINE SHIELDING FAILURES THE ANNUAL NUMBER OF LIGHTNING EVENTS THE ANNUAL NUMBER OF THAT BYPASS THE OVERHEAD GROUND WIRES FLASHOVERS CAUSED BY AND TERMINATE ON THE PHASE CONDUCTORS SHIELDING FAILURES I0, tf Shielding failure flashover Shielding failure
  • 5. HOW TO IMPROVE LINE LIGHTNING PERFORMANCE? Additional Shield Wires Underbuilt Ground Wire Increasing Insulation Line Surge Arrester Guy Wires Foot_resistance improvement
  • 6. LINE SURGE ARRESTER APPLICATION 123 kV Line Dubrovnik - Ston 2 LSA per tower 1 LSA per tower
  • 7. ELECTROMAGNETIC TRANSIENTS SIMULATION MODEL OF THE LINE INSULATION FLASHOVER (s2) Flashover models: U(t) (s1) (U - t) Insulation characteristic Constant voltage U2 Equal area U1 Leader propagation U0 Leader propagation model: t2 t1 t u (t ) u (t ) 0 , 0015 d vl 170 d E0 e d ll d l vl - Leader speed (m/s) u(t) d - Arcing distance (m) ll - Leader length (m) u(t) - Applied voltage (kV) E0 = 520 (kV/m)
  • 8. EQUAL AREA FLASHOVER MODEL d Ugap(t) U(t) t 710 ( U gap (t ) U 0 ) k D U (400 ) d (kV) [IEEE] U2 s t0 t 0, 75 k 1 U50% D 710 U0 U8 s U 50% (400 ) d 550 d 80, 75 2 8 t ( s) U0 0,9 U 50% 495 d EMTP_RV Model data: 710 U2 s (400 ) d 822 d [d - arcing distance in meters] 2 0, 75 U0 495 d D 0,2045 d k 1 D 0,2045 d
  • 9. ELECTROMAGNETIC TRANSIENTS SIMULATION SOIL IONIZATION TOWER FOOTING RESISTANCE MODEL I Rlc Ri U (kA) Linear Resistance I 1 Ig Non-Linear Resistance Eg Ig 2 I (kA) 2 Rlc Ig Rlc – low current tower footing resistance ( ) Ri – tower footing impulse resistance ( ) I – impulse current (kA) Ig – soil ionisation limit current (kA) Eg – soil ionisation critical electric field (kV/m) – [Eg = 400 (kV/m)]
  • 10. QUICK BACK FLASHOVER RATE COMPUTATIONS Stroke current is changed until flashover [IC obtained] W - Line shadow width A - Line attraction area IC hav - Tower average height IC - Back flashover critical current 100 km A = 100 x W (km2) W Back hav Flashover Ra 14 hav, 6 0 W 2 Ra b A 100 W N L NG A W
  • 11. QUICK BACK FLASHOVER RATE COMPUTATIONS 100 km IC A = 100 x W (km2) W 1 Ra 14 hav, 6 0 PI C I Back 1 ( C ) 2,6 W 2 Ra b hav Flashover 31 A 100 W BFR 0,6 N L PI C N L NG A W - Line shadow width b - Ground wire separation distance W NL - Number of strokes collected [str/100km/year] NG – Ground flash density [str/km2/year] BFR - Back flashover rate 0,6 > Takes into account strokes hitting shield wire
  • 12. IEEE DISTRIBUTION 1 i0 (t) S (kA/ s) CURRENT PEAK PI I 1 ( ) 2,6 I0 31 I0/2 1 t ( s) STEEPNESS PS S 4 tf tt 1 ( ) 24 Equal Probability PS PI I0 S tf Equivalent Front Time
  • 13. 123 kV TRANSMISSION LINE DUBROVNIK STON No DC Resistance Outside diameter x [m] y [m] y [m] [Ohm/km] [cm] at midspan 1 0.1444 1.708 2.5 22.7 14.1 2 0.1444 1.708 -3 20.5 11.9 3 0.1444 1.708 3.5 18.3 9.7 4 0.4555 0.9 0 28.9 21.3 4 L1 = 2,8 H L2 = 1,37 H Un= 123 kV Length = 46 km L3 = 1,37 H 1 Span = 200 m L = ZT/v 2 v - velocity of light hT = 28,9 m Propagation 3 element lprop = 20 m ZT = 184
  • 14. LINE SURGE ARRESTER Rated voltage: 123 kV IEC Class II Polymer housed Current (A) Voltage (V) 1000 239000 2500 252000 5000 275000 10000 291000 20000 324000 40000 357000
  • 15. 123 kV TRANSMISSION LINE DUBROVNIK STON Ground flash density: 5 strokes/km2/year Length = 46 km Ra 14 hav, 6 0 14 28,90, 6 105 (m) W 2 Ra b 2 105 0 210 (m) A 100 W 100 0,210 21 (km2) N L N G A 5 21 105 (strokes/100km/year) Using EMTP_RV find IC (Critical current) 1 PI C I 1 ( C ) 2,6 31 BFR 0,6 105 PI C
  • 16. AUTOMATIC BACKFLASHOVER COMPUTATIONS EMTP_RV Line section model created Netlist file obtained
  • 17. AUTOMATIC BACKFLASHOVER SIMULATIONS Tower Model> Sub circuits Air gap model Signal = 0: No flashover Signal =1: Flashover
  • 18. AUTOMATIC BACKFLASHOVER SIMULATIONS Tool developed to run EMTP_RV in a loop Initial stroke current Current step
  • 19. AUTOMATIC BACKFLASHOVER SIMULATIONS EMTP_RV is running in the loop until gap signal > 0 Stroke Sub circuit Flashover Tower 2 Phase conductor C
  • 20. AUTOMATIC BACKFLASHOVER SIMULATIONS EMTP_RV is running in the loop until gap signal > 0 Critical current Back flashover rate
  • 21. FUTURE WORK > 3D EGM I0, tf WS - SIMULATED WIDTH STRIKING DISTANCES DOWNWARD LEADER 1. TO PHC & GW: rT1 rS = A I B rT2 [A=10, B=0,65] span 2. TO TOWERS: rTT = k rS rE [k= 1 – 1,1] 3. TO EARTH: x0 WS y0 IEEE : rE 3,6 1,7 ln(43 yv ) I0,65
  • 22. FUTURE WORK > 3D EGM DOWNWARD I0, tf LEADER APPROACHES UNDER ANGLE 2 f cos2 rGW rGW = rPHC = rNO = rS rPHC GW rNO NEARBY PHC OBJECT hl dl x0 WS/2 WS/2
  • 23. FUTURE WORK > sigma slp like interface EMTP_RV modeling and transients computation Monte Carlo Statistical Study and 3D EGM