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Technical	
  Note_005	
   	
   Lightning	
  &	
  Static	
  Protection	
  for	
  Oilfield	
  Assets	
  
015-­‐0108	
  Rev	
  1	
  
Jan	
  2015	
  
	
  
www.petroguardian.com	
  
Disclaimer:	
  This	
  engineering	
  recommendation	
  is	
  based	
  on	
  industry	
  standards	
  and	
  practices.	
  This	
  guideline,	
  when	
  applied,	
  does	
  not	
  guarantee	
  a	
  production	
  location	
  
will	
  not	
  be	
  susceptible	
  to	
  lightning	
  strikes	
  or	
  static	
  discharge	
  events.	
  By	
  using	
  these	
  guidelines	
  and	
  industry	
  practices,	
  the	
  likelihood	
  of	
  lightning	
  or	
  static	
  related	
  
damage	
  will	
  be	
  decreased	
  but	
  not	
  eliminated.	
  
Technical	
  Editors:	
  
Chief	
  Technical	
  Officer:	
  Terry	
  Charrier	
  Jr	
  
Director	
  of	
  Engineering	
  Services:	
  Harshul	
  Gupta	
  
©	
  2015	
  Petro	
  Guardian	
  LLC	
  
Page1	
  
	
  
BEST	
  PRACTICES	
  FOR	
  LIGHTNING	
  PROTECTION	
  ON	
  ATS	
  
INTRODUCTION	
  
Automatic	
  Transfer	
  Switch	
  (ATS)	
  surge	
  protection	
  is	
  critical	
  for	
  the	
  operation	
  of	
  the	
  switch.	
  The	
  modern	
  ATS	
  has	
  circuit	
  
boards,	
  electronic	
  controls,	
  relays	
  and	
  sensors	
  that	
  are	
  sensitive	
  to	
  transients.	
  Transient	
  damage	
  to	
  an	
  ATS	
  switch	
  
and/or	
  controller	
  can	
  result	
   in	
  failure	
  of	
   the	
   ATS	
   to	
  perform	
  during	
   an	
  electrical	
  crisis.	
  Cumulative	
  damage	
  from	
  
transients	
  can	
  cause	
  minor	
  problems	
  in	
  the	
  programming	
  or	
  logic	
  controls	
  for	
  the	
  switch.	
  This	
  can	
  result	
  in	
  the	
  false	
  
operation	
  of	
  the	
  transfer	
  switch	
  and	
  operation	
  of	
  the	
  generator	
  when	
  no	
  problem	
  exists,	
  and	
  even	
  worse	
  the	
  failure	
  
to	
  make	
  the	
  transfer	
  in	
  the	
  event	
  of	
  an	
  actual	
  crisis.	
  Catastrophic	
  damage	
  can	
  destroy	
  the	
  switch	
  and/or	
  controller	
  and	
  
take	
  the	
  entire	
  system	
  off-­‐line.	
  This	
  technical	
  note	
  outlines	
  best	
  practices	
  that	
  can	
  be	
  used	
  as	
  a	
  guideline	
  during	
  UPS	
  
installation	
  and	
  operation	
  start-­‐up.
	
  
BACKGROUND	
  	
  	
  
	
  
There	
  are	
  four	
  main	
  sources	
  of	
  potential	
  transient	
  damage	
  that	
  can	
  impact	
  an	
  ATS.	
  	
  
	
  
• The	
  first,	
  and	
  most	
  common,	
  is	
  the	
  utility	
  power	
  line.	
  Lightning,	
  generator	
  switching	
  at	
  the	
  utility	
  power	
  station	
  or	
  
sub-­‐station,	
  capacitor	
  bank	
  switching	
  on	
  the	
  grid,	
  or	
  nearby	
  facilities	
  producing	
  their	
  own	
  large	
  transients	
  can	
  
cause	
  catastrophic	
  as	
  well	
  as	
  cumulative	
  level	
  transients	
  at	
  the	
  ATS.	
  A	
  properly	
  installed	
  Surge	
  Protective	
  Device	
  
(SPD)	
  at	
  the	
  power	
  utility	
  line	
  side	
  of	
  the	
  ATS	
  can	
  prevent	
  the	
  damage	
  from	
  this	
  source.	
  
• The	
  second	
  source	
  of	
  transients	
  is	
  the	
  generator,	
  or	
  back	
  up	
  power	
  source	
  line.	
  The	
  quality	
  of	
  the	
  power	
  produced	
  
by	
  a	
  back-­‐up	
  generator	
  is	
  dependent	
  on	
  many	
  factors.	
  The	
  age	
  of	
  the	
  generator	
  and	
  motor,	
  the	
  quality	
  and	
  
frequency	
  of	
  the	
  maintenance	
  performed	
  on	
  the	
  motor	
  and	
  generator,	
  the	
  load	
  to	
  capacity	
  ratio	
  of	
  the	
  generator,	
  
how	
  frequently	
  the	
  generator	
  is	
  run	
  and	
  for	
  how	
  long,	
  the	
  quality	
  and	
  maintenance	
  of	
  the	
  connections	
  from	
  the	
  
generator	
  to	
  the	
  ATS,	
  and	
  more	
  all	
  have	
  an	
  impact	
  on	
  the	
  ability	
  of	
  the	
  generator	
  to	
  provide	
  clean	
  quality	
  power	
  to	
  
the	
  electrical	
  system	
  during	
  a	
  power	
  utility	
  outage.	
  Problems	
  in	
  any	
  of	
  these	
  areas	
  can	
  result	
  in	
  the	
  generator-­‐
producing	
  transients	
  with	
  the	
  capability	
  of	
  causing	
  everything	
  from	
  a	
  minor	
  nuisance	
  to	
  catastrophic	
  failure.	
  A	
  
properly	
  installed	
  SPD	
  at	
  the	
  generator	
  line	
  side	
  of	
  the	
  ATS	
  can	
  prevent	
  the	
  damage	
  from	
  this	
  source.	
  
• The	
  third	
  source	
  of	
  transients	
  is	
  the	
  down	
  line	
  electrical	
  system.	
  Internally	
  generated	
  transients	
  can	
  travel	
  back	
  up	
  line	
  
to	
  the	
  ATS	
  and	
  cause	
  cumulative	
  as	
  well	
  as	
  catastrophic	
  damage	
  to	
  the	
  switch	
  and	
  controller.	
  A	
  properly	
  installed	
  SPD	
  at	
  
the	
  load	
  side	
  line	
  of	
  the	
  ATS	
  can	
  prevent	
  the	
  damage	
  from	
  this	
  source.	
  
• The	
  last	
  source	
  of	
  transients	
  is	
  the	
  actual	
  physical	
  switch	
  within	
  the	
  ATS	
  itself.	
  The	
  blades	
  that	
  switch	
  from	
  the	
  
power	
  utility	
  line	
  input	
  to	
  the	
  generator	
  line	
  input	
  will	
  cause	
  arcing	
  and	
  transients	
  when	
  they	
  disconnect	
  from	
  one	
  
and	
  make	
  contact	
  with	
  the	
  other.	
   A	
  properly	
  installed	
  SPD	
  at	
  the	
  blades	
  of	
  the	
  ATS	
  can	
  prevent	
  the	
  damage	
  from	
  
this	
  source.	
  
	
  
COMMON	
  MODES	
  OF	
  LIGHTNING	
  DAMAGE	
  TO	
  ELECTRONICS	
  
	
  
• Lightning	
  strike	
  to	
  the	
  network	
  of	
  power,	
  phone	
  and	
  communication	
  cable	
  wiring.	
  This	
  network,	
  especially	
  if	
  it	
  is	
  
elevated,	
  is	
  an	
  effective	
  collector	
  of	
  lightning	
  induced	
  surges.	
  The	
  wiring	
  conducts	
  the	
  surges	
  directly	
  into	
  the	
  facility,	
  
and	
  then	
  to	
  the	
  connected	
  equipment.	
  
• Lightning	
  travels	
  through	
  the	
  ground	
  (soil),	
  reaching	
  underground	
  cables	
  or	
  pipes.	
  This	
  is	
  another	
  route	
  for	
  lightning	
  
to	
  enter	
  a	
  facility.	
  Surges	
  are	
  induced	
  in	
  underground	
  cables	
  and	
  into	
  the	
  ground	
  reference	
  for	
  electrical	
  and	
  
electronics	
  systems.	
  
Technical	
  Note_005	
   	
   Lightning	
  &	
  Static	
  Protection	
  for	
  Oilfield	
  Assets	
  
015-­‐0108	
  Rev	
  1	
  
Jan	
  2015	
  
	
  
www.petroguardian.com	
  
Disclaimer:	
  This	
  engineering	
  recommendation	
  is	
  based	
  on	
  industry	
  standards	
  and	
  practices.	
  This	
  guideline,	
  when	
  applied,	
  does	
  not	
  guarantee	
  a	
  production	
  location	
  
will	
  not	
  be	
  susceptible	
  to	
  lightning	
  strikes	
  or	
  static	
  discharge	
  events.	
  By	
  using	
  these	
  guidelines	
  and	
  industry	
  practices,	
  the	
  likelihood	
  of	
  lightning	
  or	
  static	
  related	
  
damage	
  will	
  be	
  decreased	
  but	
  not	
  eliminated.	
  
Technical	
  Editors:	
  
Chief	
  Technical	
  Officer:	
  Terry	
  Charrier	
  Jr	
  
Director	
  of	
  Engineering	
  Services:	
  Harshul	
  Gupta	
  
©	
  2015	
  Petro	
  Guardian	
  LLC	
  
Page2	
  
• Lightning	
  strikes	
  to,	
  or	
  near,	
  the	
  external	
  wiring	
  network	
  common	
  to	
  most	
  outdoor	
  facilities.	
  Power	
  Generators,	
  
satellite	
  dishes,	
  exterior	
  lights,	
  gate	
  control	
  systems,	
  flare	
  control	
  panel,	
  drive	
  panel,	
  RTU	
  Panel,	
  and	
  security	
  systems	
  
can	
  all	
  be	
  struck	
  by	
  lightning,	
  allowing	
  lightning	
  surges	
  to	
  be	
  carried	
  by	
  the	
  wiring	
  damaging	
  critical	
  circuits	
  and	
  
operations.	
  
• Lightning	
  may	
  strike	
  nearby	
  objects	
  (open	
  field,	
  trees,	
  or	
  another	
  facility)	
  that	
  are	
  close	
  to,	
  but	
  not	
  directly	
  connected	
  
to	
  the	
  facility.	
  In	
  this	
  scenario,	
  the	
  lightning	
  strike	
  radiates	
  a	
  strong	
  electromagnetic	
  field,	
  which	
  can	
  be	
  induced	
  into	
  
the	
  wiring	
  of	
  power	
  and	
  instrumentation	
  cables,	
  producing	
  large	
  voltage	
  spikes	
  that	
  can	
  damage	
  equipment.	
  
• A	
  direct	
  lightning	
  strike	
  to	
  the	
  structure.	
  This	
  type	
  of	
  strike	
  is	
  rare.	
  It	
  can	
  severely	
  damage	
  a	
  structure	
  without	
  a	
  
lightning	
  protection	
  system	
  (LPS)	
  and	
  will	
  generally	
  damage	
  most	
  electronic	
  equipment	
  connected	
  to	
  the	
  facility.	
  The	
  
structural	
  	
  damage	
  can	
  normally	
  be	
  prevented	
  by	
  a	
  properly	
  installed	
  LPS	
  ,(network	
  of	
  air	
  terminals,	
  lightning	
  
conductor,	
  bonding,	
  grounding)	
  but	
  the	
  LPS	
  alone	
  provides	
  little	
  protection	
  for	
  the	
  electronic	
  equipment.	
  
	
  
PROTECTING	
  ATS	
  FROM	
  SURGES	
  
	
  
Installing	
  four	
  separate	
  SPDs	
  on	
  a	
  transfer	
  switch	
  would	
  not	
  be	
  practical	
  or	
  cost	
  effective.	
  The	
  most	
  cost	
  effective	
  
solution	
  is	
  to	
  place	
  one	
  properly	
  sized	
  SPD	
  at	
  a	
  location	
  on	
  the	
  ATS	
  that	
  will	
  provide	
  the	
  best	
  "path	
  of	
  least	
  resistance"	
  
for	
  any	
  transients	
  coming	
  from	
  any	
  of	
  the	
  four	
  sources.	
  This	
  best	
  location	
  is	
  usually	
  the	
  load	
  side	
  output	
  terminals	
  of	
  the	
  
ATS.	
  Their	
  proximity	
  to	
  the	
  switching	
  blades,	
  sensors	
  and	
  electronics	
  in	
  the	
  ATS,	
  as	
  well	
  as	
  the	
  power	
  utility	
  and	
  
generator	
  lines,	
  will	
  usually	
  make	
  them	
  the	
  closest	
  common	
  junction	
  point	
  to	
  connect	
  the	
  SPD.	
  
	
  
Selecting	
  type	
  of	
  SPD	
  Device:	
  Because	
  the	
  ATS	
  is	
  controlled	
  with	
  electronics,	
  the	
  use	
  of	
  a	
  SPD	
  integrated	
  with	
  an	
  
EMI/RFI	
  filter	
  is	
  required.	
  The	
  oscillatory	
  ring	
  wave	
  transients	
  that	
  are	
  generated	
  by	
  the	
  operation	
  of	
  electronic	
  
equipment	
  on	
  the	
  system	
  can	
  have	
  a	
  particularly	
  damaging	
  effect	
  on	
  the	
  controller,	
  sensors	
  and	
  relays	
  within	
  the	
  ATS.	
  
An	
  All	
  Mode	
  SPD	
  with	
  an	
  EMI/RFI	
  Filter	
  will	
  provide	
  protection	
  from	
  these	
  oscillatory	
  ring	
  wave	
  transients	
  as	
  well	
  as	
  
providing	
  brute	
  force	
  protection	
  from	
  the	
  generally	
  stronger,	
  but	
  less	
  frequent	
  electrical	
  switching,	
  impulse	
  type	
  
transients.	
  The	
  SPD	
  should	
  have	
  the	
  ability	
  to	
  provide	
  both	
  impulse	
  and	
  oscillatory	
  ring	
  wave	
  protection	
  in	
  every	
  mode,	
  
i.e.	
  line-­‐to-­‐neutral,	
  line-­‐to-­‐ground,	
  neutral-­‐to-­‐ground	
  and	
  line-­‐to-­‐line.	
  
	
  
Selecting	
  SPD	
  Rating:	
  Proper	
  sizing	
  of	
  the	
  SPD	
  for	
  the	
  correct	
  peak	
  surge	
  current	
  is	
  essential	
  to	
  ensuring	
  the	
  survival	
  of	
  
the	
  SPD	
  and	
  its	
  ability	
  to	
  protect	
  the	
  ATS	
  over	
  time.	
  Even	
  if	
  there	
  is	
  a	
  properly	
  sized	
  SPD	
  at	
  the	
  service	
  entrance	
  up	
  line	
  
from	
  the	
  ATS,	
  the	
  SPD	
  at	
  the	
  ATS	
  will	
  effectively	
  become	
  the	
  service	
  entrance	
  protection	
  from	
  the	
  time	
  the	
  source	
  
power	
  is	
  switched	
  from	
  the	
  utility	
  line	
  to	
  the	
  generator	
  line,	
  to	
  the	
  time	
  it	
  is	
  switched	
  back	
  to	
  the	
  utility	
  line.	
  Because	
  
this	
  increases	
  the	
  potential	
  for	
  catastrophic	
  surge	
  activity	
  at	
  this	
  point	
  on	
  the	
  system,	
  the	
  SPD	
  should	
  be	
  "up-­‐sized"	
  
one	
  level	
  of	
  peak	
  surge	
  current	
  to	
  ensure	
  continued	
  operation	
  under	
  all	
  but	
  the	
  most	
  severe,	
  direct	
  strike	
  type	
  
situations.	
  
	
  
Correct	
  installation	
  of	
  SPD:	
  Installation	
  of	
  the	
  SPD	
  should	
  be	
  accomplished	
  with	
  the	
  device	
  positioned	
  to	
  provide	
  the	
  
shortest,	
  straightest	
  leads	
  to	
  the	
  load	
  side	
  buss	
  or	
  output	
  terminals	
  of	
  the	
  ATS.	
  For	
  this	
  reason,	
  an	
  integral	
  type	
  SPD	
  
installed	
  inside	
  the	
  ATS	
  cabinet	
  may	
  be	
  the	
  best	
  solution.	
   The	
  integral	
  unit,	
  having	
  no	
  exposed	
  metal	
  parts,	
  can	
  be	
  
installed	
  in	
  close	
  proximity	
  to	
  the	
  bus	
  or	
  lugs	
  and	
  allow	
  for	
  extremely	
  short	
  leads.	
  The	
  use	
  of	
  an	
  external	
  remote	
  
indicator	
  lamp	
  kit	
  mounted	
  to	
  the	
  front	
  of	
  the	
  ATS	
  will	
  alert	
  the	
  user	
  of	
  any	
  problems	
  with	
  the	
  SPD.	
  
	
  	
  
ABOUT	
  PETROGUARDIAN	
  
Petro	
  Guardian	
  engineers	
  systems	
  to	
  protect	
  your	
  oil	
  and	
  gas	
  field	
  assets	
  from	
  damage	
  caused	
  by	
  lightning	
  strikes	
  and	
  static	
  
discharge.	
  Petro	
  Guardian’s	
  experienced	
  engineering	
  team	
  works	
  alongside	
  your	
  operations	
  and	
  engineering	
  team	
  to	
  develop	
  a	
  
standardized	
  plan	
  that	
  prevents	
  ignition	
  from	
  lightning	
  strikes	
  and	
  static	
  discharge.	
  Contact	
  team@petroguardian.com	
  to	
  
schedule	
  an	
  appointment.	
  	
  

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Best Practices for Lightning Protection on Automatic Transfer Switches

  • 1. Technical  Note_005     Lightning  &  Static  Protection  for  Oilfield  Assets   015-­‐0108  Rev  1   Jan  2015     www.petroguardian.com   Disclaimer:  This  engineering  recommendation  is  based  on  industry  standards  and  practices.  This  guideline,  when  applied,  does  not  guarantee  a  production  location   will  not  be  susceptible  to  lightning  strikes  or  static  discharge  events.  By  using  these  guidelines  and  industry  practices,  the  likelihood  of  lightning  or  static  related   damage  will  be  decreased  but  not  eliminated.   Technical  Editors:   Chief  Technical  Officer:  Terry  Charrier  Jr   Director  of  Engineering  Services:  Harshul  Gupta   ©  2015  Petro  Guardian  LLC   Page1     BEST  PRACTICES  FOR  LIGHTNING  PROTECTION  ON  ATS   INTRODUCTION   Automatic  Transfer  Switch  (ATS)  surge  protection  is  critical  for  the  operation  of  the  switch.  The  modern  ATS  has  circuit   boards,  electronic  controls,  relays  and  sensors  that  are  sensitive  to  transients.  Transient  damage  to  an  ATS  switch   and/or  controller  can  result   in  failure  of   the   ATS   to  perform  during   an  electrical  crisis.  Cumulative  damage  from   transients  can  cause  minor  problems  in  the  programming  or  logic  controls  for  the  switch.  This  can  result  in  the  false   operation  of  the  transfer  switch  and  operation  of  the  generator  when  no  problem  exists,  and  even  worse  the  failure   to  make  the  transfer  in  the  event  of  an  actual  crisis.  Catastrophic  damage  can  destroy  the  switch  and/or  controller  and   take  the  entire  system  off-­‐line.  This  technical  note  outlines  best  practices  that  can  be  used  as  a  guideline  during  UPS   installation  and  operation  start-­‐up.   BACKGROUND         There  are  four  main  sources  of  potential  transient  damage  that  can  impact  an  ATS.       • The  first,  and  most  common,  is  the  utility  power  line.  Lightning,  generator  switching  at  the  utility  power  station  or   sub-­‐station,  capacitor  bank  switching  on  the  grid,  or  nearby  facilities  producing  their  own  large  transients  can   cause  catastrophic  as  well  as  cumulative  level  transients  at  the  ATS.  A  properly  installed  Surge  Protective  Device   (SPD)  at  the  power  utility  line  side  of  the  ATS  can  prevent  the  damage  from  this  source.   • The  second  source  of  transients  is  the  generator,  or  back  up  power  source  line.  The  quality  of  the  power  produced   by  a  back-­‐up  generator  is  dependent  on  many  factors.  The  age  of  the  generator  and  motor,  the  quality  and   frequency  of  the  maintenance  performed  on  the  motor  and  generator,  the  load  to  capacity  ratio  of  the  generator,   how  frequently  the  generator  is  run  and  for  how  long,  the  quality  and  maintenance  of  the  connections  from  the   generator  to  the  ATS,  and  more  all  have  an  impact  on  the  ability  of  the  generator  to  provide  clean  quality  power  to   the  electrical  system  during  a  power  utility  outage.  Problems  in  any  of  these  areas  can  result  in  the  generator-­‐ producing  transients  with  the  capability  of  causing  everything  from  a  minor  nuisance  to  catastrophic  failure.  A   properly  installed  SPD  at  the  generator  line  side  of  the  ATS  can  prevent  the  damage  from  this  source.   • The  third  source  of  transients  is  the  down  line  electrical  system.  Internally  generated  transients  can  travel  back  up  line   to  the  ATS  and  cause  cumulative  as  well  as  catastrophic  damage  to  the  switch  and  controller.  A  properly  installed  SPD  at   the  load  side  line  of  the  ATS  can  prevent  the  damage  from  this  source.   • The  last  source  of  transients  is  the  actual  physical  switch  within  the  ATS  itself.  The  blades  that  switch  from  the   power  utility  line  input  to  the  generator  line  input  will  cause  arcing  and  transients  when  they  disconnect  from  one   and  make  contact  with  the  other.   A  properly  installed  SPD  at  the  blades  of  the  ATS  can  prevent  the  damage  from   this  source.     COMMON  MODES  OF  LIGHTNING  DAMAGE  TO  ELECTRONICS     • Lightning  strike  to  the  network  of  power,  phone  and  communication  cable  wiring.  This  network,  especially  if  it  is   elevated,  is  an  effective  collector  of  lightning  induced  surges.  The  wiring  conducts  the  surges  directly  into  the  facility,   and  then  to  the  connected  equipment.   • Lightning  travels  through  the  ground  (soil),  reaching  underground  cables  or  pipes.  This  is  another  route  for  lightning   to  enter  a  facility.  Surges  are  induced  in  underground  cables  and  into  the  ground  reference  for  electrical  and   electronics  systems.  
  • 2. Technical  Note_005     Lightning  &  Static  Protection  for  Oilfield  Assets   015-­‐0108  Rev  1   Jan  2015     www.petroguardian.com   Disclaimer:  This  engineering  recommendation  is  based  on  industry  standards  and  practices.  This  guideline,  when  applied,  does  not  guarantee  a  production  location   will  not  be  susceptible  to  lightning  strikes  or  static  discharge  events.  By  using  these  guidelines  and  industry  practices,  the  likelihood  of  lightning  or  static  related   damage  will  be  decreased  but  not  eliminated.   Technical  Editors:   Chief  Technical  Officer:  Terry  Charrier  Jr   Director  of  Engineering  Services:  Harshul  Gupta   ©  2015  Petro  Guardian  LLC   Page2   • Lightning  strikes  to,  or  near,  the  external  wiring  network  common  to  most  outdoor  facilities.  Power  Generators,   satellite  dishes,  exterior  lights,  gate  control  systems,  flare  control  panel,  drive  panel,  RTU  Panel,  and  security  systems   can  all  be  struck  by  lightning,  allowing  lightning  surges  to  be  carried  by  the  wiring  damaging  critical  circuits  and   operations.   • Lightning  may  strike  nearby  objects  (open  field,  trees,  or  another  facility)  that  are  close  to,  but  not  directly  connected   to  the  facility.  In  this  scenario,  the  lightning  strike  radiates  a  strong  electromagnetic  field,  which  can  be  induced  into   the  wiring  of  power  and  instrumentation  cables,  producing  large  voltage  spikes  that  can  damage  equipment.   • A  direct  lightning  strike  to  the  structure.  This  type  of  strike  is  rare.  It  can  severely  damage  a  structure  without  a   lightning  protection  system  (LPS)  and  will  generally  damage  most  electronic  equipment  connected  to  the  facility.  The   structural    damage  can  normally  be  prevented  by  a  properly  installed  LPS  ,(network  of  air  terminals,  lightning   conductor,  bonding,  grounding)  but  the  LPS  alone  provides  little  protection  for  the  electronic  equipment.     PROTECTING  ATS  FROM  SURGES     Installing  four  separate  SPDs  on  a  transfer  switch  would  not  be  practical  or  cost  effective.  The  most  cost  effective   solution  is  to  place  one  properly  sized  SPD  at  a  location  on  the  ATS  that  will  provide  the  best  "path  of  least  resistance"   for  any  transients  coming  from  any  of  the  four  sources.  This  best  location  is  usually  the  load  side  output  terminals  of  the   ATS.  Their  proximity  to  the  switching  blades,  sensors  and  electronics  in  the  ATS,  as  well  as  the  power  utility  and   generator  lines,  will  usually  make  them  the  closest  common  junction  point  to  connect  the  SPD.     Selecting  type  of  SPD  Device:  Because  the  ATS  is  controlled  with  electronics,  the  use  of  a  SPD  integrated  with  an   EMI/RFI  filter  is  required.  The  oscillatory  ring  wave  transients  that  are  generated  by  the  operation  of  electronic   equipment  on  the  system  can  have  a  particularly  damaging  effect  on  the  controller,  sensors  and  relays  within  the  ATS.   An  All  Mode  SPD  with  an  EMI/RFI  Filter  will  provide  protection  from  these  oscillatory  ring  wave  transients  as  well  as   providing  brute  force  protection  from  the  generally  stronger,  but  less  frequent  electrical  switching,  impulse  type   transients.  The  SPD  should  have  the  ability  to  provide  both  impulse  and  oscillatory  ring  wave  protection  in  every  mode,   i.e.  line-­‐to-­‐neutral,  line-­‐to-­‐ground,  neutral-­‐to-­‐ground  and  line-­‐to-­‐line.     Selecting  SPD  Rating:  Proper  sizing  of  the  SPD  for  the  correct  peak  surge  current  is  essential  to  ensuring  the  survival  of   the  SPD  and  its  ability  to  protect  the  ATS  over  time.  Even  if  there  is  a  properly  sized  SPD  at  the  service  entrance  up  line   from  the  ATS,  the  SPD  at  the  ATS  will  effectively  become  the  service  entrance  protection  from  the  time  the  source   power  is  switched  from  the  utility  line  to  the  generator  line,  to  the  time  it  is  switched  back  to  the  utility  line.  Because   this  increases  the  potential  for  catastrophic  surge  activity  at  this  point  on  the  system,  the  SPD  should  be  "up-­‐sized"   one  level  of  peak  surge  current  to  ensure  continued  operation  under  all  but  the  most  severe,  direct  strike  type   situations.     Correct  installation  of  SPD:  Installation  of  the  SPD  should  be  accomplished  with  the  device  positioned  to  provide  the   shortest,  straightest  leads  to  the  load  side  buss  or  output  terminals  of  the  ATS.  For  this  reason,  an  integral  type  SPD   installed  inside  the  ATS  cabinet  may  be  the  best  solution.   The  integral  unit,  having  no  exposed  metal  parts,  can  be   installed  in  close  proximity  to  the  bus  or  lugs  and  allow  for  extremely  short  leads.  The  use  of  an  external  remote   indicator  lamp  kit  mounted  to  the  front  of  the  ATS  will  alert  the  user  of  any  problems  with  the  SPD.       ABOUT  PETROGUARDIAN   Petro  Guardian  engineers  systems  to  protect  your  oil  and  gas  field  assets  from  damage  caused  by  lightning  strikes  and  static   discharge.  Petro  Guardian’s  experienced  engineering  team  works  alongside  your  operations  and  engineering  team  to  develop  a   standardized  plan  that  prevents  ignition  from  lightning  strikes  and  static  discharge.  Contact  team@petroguardian.com  to   schedule  an  appointment.