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IOSR Journal of Electrical and Electronics Engineering (IOSR-JEEE)
e-ISSN: 2278-1676,p-ISSN: 2320-3331, Volume 10, Issue 2 Ver. II (Mar – Apr. 2015), PP 47-51
www.iosrjournals.org
DOI: 10.9790/1676-10224751 www.iosrjournals.org 47 | Page
Pay Back Period of New Motors & Losses Comparison with
Rewound Induction Motors Used In Rice Mill
Ramanpreet Singh1
,Jasvir Singh2
,RamandipSingh3
Research Scholar M. Tech (E.E. Deptt.) B.G.I.E.T, Sangrur (Pb)1
Assistant Professors,(E.E.Deptt)B.G.I.E.T Sangrur(Pb)2&3
Abstract: To reduce energy consumption in any industry, it is necessary to determine the efficiency of rewound
induction motor and compare it with the rated efficiency of that motor. If the efficiency of rewound induction
motor is found near to the rated efficiency of that motor, then there is no need for any change. If the efficiency of
rewound induction motor is found low as compared to rated efficiency of that motor, then it is better to replace
that motor with new one. This paper explains the pay back period of new motors and its losses comparison with
rewound motors.
Keywords: Rewound induction motors, Rice mill, efficiency, energy losses, payback period.
I. Introduction
The major source of energy consumption in an industry is electrical motors. About 75% of energy is
consumed by induction motors in a Rice mill. It is a common practice in any industry to rewind the induction
motors in case of any fault. This decreases the efficiency of a motor and increases the energy losses and hence
the energy consumption in any industry. Thus, it is better to replace the rewound induction motors with the new
ones.and comprison of losses show the more energy consumed by rewound motors as compared to new motors.
The pay back period of new motors also calculated.
II. Problem Definition
In the Rice mill, the rewound induction motors of different horsepower are to be studied for different
types of losses so as to determine the overall efficiency of the induction motors. Then, these efficiencies are
compared with the efficiencies of new induction motors. After that, it has been found that it is better to replace
the rewound induction motors with the new ones as the payback period is found to be existing in the range of
1.5 years to as less as 7 months.
III. Method
After visiting in the rice mill so many times, several rewound induction motors are identified. After
that, it is being examined that how the machines are working. Then all the parameters (rated, measured and
calculated) of the motors are recorded through different measuring instruments. These parameters are then used
for determining the efficiency of the induction motors. The equipments used for the measurements of induction
motor parameters are described in table 1.
Table-1 Parameters and Measuring Instruments used
Parameters Measuring Instruments
Voltage Power Analyzer
Current Clamp On Transducer
Input Power Power Analyzer
Speed Tachometer
Winding Temp. Resistance Temperature Detector
Winding Resistance Power Analyzer
Pay Back Period of New Motors & Losses Comparison with Rewound Induction Motors Used…
DOI: 10.9790/1676-10224751 www.iosrjournals.org 48 | Page
Fig.1 is showing the process of rice mill
IV. Results And Discussions
The energy can be saved by means of replacing the rewound induction motors with the new ones so as
to increase the efficiency of the motor. Rated parameters of one of the induction motors are shown in table 2.
Table- 2 Rated Parameters
No. of Phases 03
No. of Poles 04
Rated Power(HP) 15
Rated Voltage, (Vrated) 415
Rated Current, (Irated) 20
Full Load Rated Speed, (Nrated) 1450
Supply frequency, f (Hz) 50
Measured parameters of one of the induction motors are shown in table 3.
Table- 3 Measured Parameters
No-load voltage (V) 415
No-load current(A) 8.5
No-load input Power(W) 524
Winding Temp. of still motor, T1(°C) 12
Resistance at room temp., R1( 0.52
Winding Temp. of no load motor, T2(°C) 38
Winding Temp. Of loaded motor , T3(°C) 138
Supply frequency, f (Hz) 50
Full load voltage, Vfull-load(V) 415
Full load current, Ifull-load(A) 20.5
Full-load input Power, Pfull-load(W) 12500
No-load Speed, N1(RPM) 1480
Full-load Speed, N2(RPM) 1475
Pay Back Period of New Motors & Losses Comparison with Rewound Induction Motors Used…
DOI: 10.9790/1676-10224751 www.iosrjournals.org 49 | Page
V. Calculated Parameters
Analysis done on few rewound motors according to the formulae described above is shown below in the form of
graphs:
Fig.2 15HP Motor Losses Analysis For One Year.
Pay Back Period of New Motors & Losses Comparison with Rewound Induction Motors Used…
DOI: 10.9790/1676-10224751 www.iosrjournals.org 50 | Page
Fig.3 15HP Motor efficiency Analysis.
Fig.4 Payback Period Analysis Of New Motor
After doing analysis of rewound motors, it is recommended to replace the motors with new motors. It is
noticed after analysis that there exists a relationship between motor horsepower and its payback period. The
relationship is stating that with the increase of the motor size its payback period decreases.
Hence, it is recommended to replace the large horsepower motors than to make them rewound.
VI. Conclusion And Future Scope
The most energy conservation area is analyzing the rewound motors and after analyzing, it was found
that the losses of new motor is 10000 KWH better then the rewound motor, which has losses 20000 to
30000KWh. Capacitor bank of determined size can also improve the system efficiency. The losses of the system
are reduced. Hence play an important role in conservation of energy. A future study on power factor
improvement analysis and improvement is thus suggested.
Acknowledgments
I would like to express a deep sense of gratitude and thanks profusely to my Dissertation Supervisor,
Er. Jasvir Singh, Assistant Professor, Dept. of Electrical Engineering, Bhai Gurdas Institute of Engineering &
Technology, Sangrur, without those wise counsel and able guidance, it would have been impossible to complete
the dissertation.
Pay Back Period of New Motors & Losses Comparison with Rewound Induction Motors Used…
DOI: 10.9790/1676-10224751 www.iosrjournals.org 51 | Page
References
[1]. Gilbert A. McCoy and John G. Douglass, “Energy Management for Motor Driven System”
[2]. Todd Litman, “Efficient Electric Motor Systems,” The Fairmont Press, Inc., 1995
[3]. Proprietary Method for Energy Conservation in Electric Induction Motors Saves Energy, Saves Money, Available at:
www.energyconservationindustries.com
[4]. Alaj.n Streicher Hagler, Bailly & Company, “Energy efficiency in the Sugar and Manufacturing Industries”. March 1985
[5]. Penrose H. W., “Financial Impact of Electrical Motor System Reliability Programs”, All-Test Division, BJM Corp, 2003.
[6]. John S. H., John D. K., “Comparison of Induction Motor Field Efficiency Evaluation Method”, IEEE Transactions on Industrial
Applications, Vol. 34, No. 1, Jan/Feb 1998.
[7]. Bureau of Energy Efficiency (BEE), Energy Efficiency in Electrical Utilities: Electric Motors, Available at: http://emtindia.
com/BEE-Exam/GuideBooks/book3.pdf
[8]. Bureau of Energy Efficiency (BEE), Energy Performance Assessment for Equipment & Utility Systems: Electric Motors and
Variables Speed Drives, Available at: http://emtindia. com/BEE-Exam/Guide Books/book4.pdf
[9]. Bureau of Energy Efficiency (BEE), General Aspect of Energy Management and Energy Audit: Financial Management, Available
at: http://emt-india.com/BEE- Exam/ GuideBooks/book1.pdf
[10]. Ali Hasanbeigi, Lynn Price, “Industrial Energy Audit Guidebook: Guidelines for Conducting an Energy Audit in industrial
Facilities” 2010.

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G010224751

  • 1. IOSR Journal of Electrical and Electronics Engineering (IOSR-JEEE) e-ISSN: 2278-1676,p-ISSN: 2320-3331, Volume 10, Issue 2 Ver. II (Mar – Apr. 2015), PP 47-51 www.iosrjournals.org DOI: 10.9790/1676-10224751 www.iosrjournals.org 47 | Page Pay Back Period of New Motors & Losses Comparison with Rewound Induction Motors Used In Rice Mill Ramanpreet Singh1 ,Jasvir Singh2 ,RamandipSingh3 Research Scholar M. Tech (E.E. Deptt.) B.G.I.E.T, Sangrur (Pb)1 Assistant Professors,(E.E.Deptt)B.G.I.E.T Sangrur(Pb)2&3 Abstract: To reduce energy consumption in any industry, it is necessary to determine the efficiency of rewound induction motor and compare it with the rated efficiency of that motor. If the efficiency of rewound induction motor is found near to the rated efficiency of that motor, then there is no need for any change. If the efficiency of rewound induction motor is found low as compared to rated efficiency of that motor, then it is better to replace that motor with new one. This paper explains the pay back period of new motors and its losses comparison with rewound motors. Keywords: Rewound induction motors, Rice mill, efficiency, energy losses, payback period. I. Introduction The major source of energy consumption in an industry is electrical motors. About 75% of energy is consumed by induction motors in a Rice mill. It is a common practice in any industry to rewind the induction motors in case of any fault. This decreases the efficiency of a motor and increases the energy losses and hence the energy consumption in any industry. Thus, it is better to replace the rewound induction motors with the new ones.and comprison of losses show the more energy consumed by rewound motors as compared to new motors. The pay back period of new motors also calculated. II. Problem Definition In the Rice mill, the rewound induction motors of different horsepower are to be studied for different types of losses so as to determine the overall efficiency of the induction motors. Then, these efficiencies are compared with the efficiencies of new induction motors. After that, it has been found that it is better to replace the rewound induction motors with the new ones as the payback period is found to be existing in the range of 1.5 years to as less as 7 months. III. Method After visiting in the rice mill so many times, several rewound induction motors are identified. After that, it is being examined that how the machines are working. Then all the parameters (rated, measured and calculated) of the motors are recorded through different measuring instruments. These parameters are then used for determining the efficiency of the induction motors. The equipments used for the measurements of induction motor parameters are described in table 1. Table-1 Parameters and Measuring Instruments used Parameters Measuring Instruments Voltage Power Analyzer Current Clamp On Transducer Input Power Power Analyzer Speed Tachometer Winding Temp. Resistance Temperature Detector Winding Resistance Power Analyzer
  • 2. Pay Back Period of New Motors & Losses Comparison with Rewound Induction Motors Used… DOI: 10.9790/1676-10224751 www.iosrjournals.org 48 | Page Fig.1 is showing the process of rice mill IV. Results And Discussions The energy can be saved by means of replacing the rewound induction motors with the new ones so as to increase the efficiency of the motor. Rated parameters of one of the induction motors are shown in table 2. Table- 2 Rated Parameters No. of Phases 03 No. of Poles 04 Rated Power(HP) 15 Rated Voltage, (Vrated) 415 Rated Current, (Irated) 20 Full Load Rated Speed, (Nrated) 1450 Supply frequency, f (Hz) 50 Measured parameters of one of the induction motors are shown in table 3. Table- 3 Measured Parameters No-load voltage (V) 415 No-load current(A) 8.5 No-load input Power(W) 524 Winding Temp. of still motor, T1(°C) 12 Resistance at room temp., R1( 0.52 Winding Temp. of no load motor, T2(°C) 38 Winding Temp. Of loaded motor , T3(°C) 138 Supply frequency, f (Hz) 50 Full load voltage, Vfull-load(V) 415 Full load current, Ifull-load(A) 20.5 Full-load input Power, Pfull-load(W) 12500 No-load Speed, N1(RPM) 1480 Full-load Speed, N2(RPM) 1475
  • 3. Pay Back Period of New Motors & Losses Comparison with Rewound Induction Motors Used… DOI: 10.9790/1676-10224751 www.iosrjournals.org 49 | Page V. Calculated Parameters Analysis done on few rewound motors according to the formulae described above is shown below in the form of graphs: Fig.2 15HP Motor Losses Analysis For One Year.
  • 4. Pay Back Period of New Motors & Losses Comparison with Rewound Induction Motors Used… DOI: 10.9790/1676-10224751 www.iosrjournals.org 50 | Page Fig.3 15HP Motor efficiency Analysis. Fig.4 Payback Period Analysis Of New Motor After doing analysis of rewound motors, it is recommended to replace the motors with new motors. It is noticed after analysis that there exists a relationship between motor horsepower and its payback period. The relationship is stating that with the increase of the motor size its payback period decreases. Hence, it is recommended to replace the large horsepower motors than to make them rewound. VI. Conclusion And Future Scope The most energy conservation area is analyzing the rewound motors and after analyzing, it was found that the losses of new motor is 10000 KWH better then the rewound motor, which has losses 20000 to 30000KWh. Capacitor bank of determined size can also improve the system efficiency. The losses of the system are reduced. Hence play an important role in conservation of energy. A future study on power factor improvement analysis and improvement is thus suggested. Acknowledgments I would like to express a deep sense of gratitude and thanks profusely to my Dissertation Supervisor, Er. Jasvir Singh, Assistant Professor, Dept. of Electrical Engineering, Bhai Gurdas Institute of Engineering & Technology, Sangrur, without those wise counsel and able guidance, it would have been impossible to complete the dissertation.
  • 5. Pay Back Period of New Motors & Losses Comparison with Rewound Induction Motors Used… DOI: 10.9790/1676-10224751 www.iosrjournals.org 51 | Page References [1]. Gilbert A. McCoy and John G. Douglass, “Energy Management for Motor Driven System” [2]. Todd Litman, “Efficient Electric Motor Systems,” The Fairmont Press, Inc., 1995 [3]. Proprietary Method for Energy Conservation in Electric Induction Motors Saves Energy, Saves Money, Available at: www.energyconservationindustries.com [4]. Alaj.n Streicher Hagler, Bailly & Company, “Energy efficiency in the Sugar and Manufacturing Industries”. March 1985 [5]. Penrose H. W., “Financial Impact of Electrical Motor System Reliability Programs”, All-Test Division, BJM Corp, 2003. [6]. John S. H., John D. K., “Comparison of Induction Motor Field Efficiency Evaluation Method”, IEEE Transactions on Industrial Applications, Vol. 34, No. 1, Jan/Feb 1998. [7]. Bureau of Energy Efficiency (BEE), Energy Efficiency in Electrical Utilities: Electric Motors, Available at: http://emtindia. com/BEE-Exam/GuideBooks/book3.pdf [8]. Bureau of Energy Efficiency (BEE), Energy Performance Assessment for Equipment & Utility Systems: Electric Motors and Variables Speed Drives, Available at: http://emtindia. com/BEE-Exam/Guide Books/book4.pdf [9]. Bureau of Energy Efficiency (BEE), General Aspect of Energy Management and Energy Audit: Financial Management, Available at: http://emt-india.com/BEE- Exam/ GuideBooks/book1.pdf [10]. Ali Hasanbeigi, Lynn Price, “Industrial Energy Audit Guidebook: Guidelines for Conducting an Energy Audit in industrial Facilities” 2010.