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International Journal of Electrical Engineering and Futuristic Technology

  • ISSN (Print) : xxxx-xxxx
  • ISSN (Online) : xxxx-xxxx
  • Impact Factor : x.xxx
  • Frequency : 02
  • Publisher : A D Publication

Jounaral Scope

International Journal of Electrical Engineering and Futuristic Technology (IJEEFT) is peer- reviewed (refereed) international journal published by A D Publication. Its aim to provide the most complete and reliable source of information on current and Futuristic research. It is a leading e-journal, under which we are encouraging and exploring newer ideas of current trends in research by publishing papers containing pure knowledge. The Journal is started with noble effort to help the researchers in their work and also to share knowledge and research ideas.

Salient Feature

Open access Journal : Journal is an open access journal and the paper published in the serial publication can be downloaded from the archive section free of cost in pdf format.

Reputed Editorial Board : Journal has a panel of distinguished Editorial Board members from multiple countries along with finest reviewers to strengthen the quality of publication.

Strict Plagiarism Policy : Each manuscript passes through our Plagiarism testing tool before issuance of Acceptance for publication in Journal.

Rapid Publication Process : The paper submitted to Journal is evaluated within a period of 2-3 weeks for acceptance/ rejection after plagiarism testing and peer review followed by a simple and fast publication process.

Certification of Publication : A Softcopy of Certificate of Publication is issued to the corresponding author free of cost. Authors can also order for Hard copy certificates if required for academic purposes.

Highly Indexed & Impact Factor Journal : Journal is indexed with google scholar, Issuu, dox top, academia.edu, docstoc , Scribd, Slide share, etc.

Online paper Submission : Authors can submit manuscript online.

Nominal Processing and Publication Charges : Nominal Processing & Publishing Charges (Includes online publication, Indexing & Abstracting in various online repositories, Soft copy of certificate to each author, Soft copy of letter of acceptance, Soft copy of reviewer evaluation card). There is no hidden cost. The hardcopy certificates can be ordered @ Rs 200 (INR) / $20 per author per certificate for academic purpose (optional).

Environment Friendly Policy : We insist for ONLINE publication only, as the journal is open access, so one can download the published papers for unrestricted reprints as and when required. We believe that we have a responsibility towards the environment and every paper saved is worth saving the Mother Nature.

International Journal of Electrical Engineering and Futuristic Technology (IJEEFT) accepting manuscripts for below research area  but not limited to:

  • Circuit Design,
  • Simulation and CAD,
  • Circuits and Devices,
  • Electric Power Generation,
  • Electric Traction,
  • Electromagnetic Compatibility and Electrical Engineering Materials,
  • Electrical Machines,
  • Electromagnetic Compatibility,
  • Embedded Systems,
  • High Voltage Apparatuses,
  • High Voltage Insulation Technologies,
  • Information Theory,
  • Communication Theory and Techniques,
  • Instrumentation and Control,
  • Instrumentation System Design,
  • Lightning Detection and Protection,
  • Measurement and Instrumentation,
  • Microprocessors & Microcontroller,
  • Microwave Theory & Techniques,
  • Radar,
  • Sonar,
  • Antennas,
  • Power Electronics,
  • Power Engineering,
  • Power Quality & Economics,
  • Power System Analysis,
  • SCADA and Electrical Measurements,
  • Renewable Energy,
  • Transmission and Distribution,
  • Electrical Engineering and its allied areas
  • And their applications in business, industry and other subjects.

This journal publishes the following types of contributions:

Research papers that propose is presenting the novel methodology.

Review articles are providing reviews and critical evaluation of developments in a specific topic of interest.

Short communications describing initial research findings of potential significance, and substantive comments on previously published papers.

Technical notes that focus on the implementation of established methodology.

Chief Editor:

Dr. Akshaykumar A Pandya

Electrical Engineering Department, BVM Engineering College,Gujarat,India

email: aap.bvm@gmail.com

Editor Board:

Dr. M. R. Mohamed

Senior Lecturer, Head of Sustainable Energy Research Group (SEG),Sustainable Energy & Power Electronics Research Cluster (SuPER)

Faculty of Electrical & Electronics Engineering,Universiti Malaysia Pahang Main Campus, 26600 Pekan, Pahang, Malaysia

email: rusllim@ump.edu.my

Total Teaching / Industrial / Research Experience in year: 16

Total Number of paper published (National / International /Journal / Conference): 18

Mohd Shawal Jadin

Faculty of Electrical & Electronics Engineering

Universiti Malaysia Pahang Main Campus, 26600 Pekan, Pahang, Malaysia

Dr. Mahfuzah Mustafa

Faculty of Electrical & Electronics Engineering,Universiti Malaysia Pahang Main Campus-26600, Pekan, Pahang, Malaysia

email: mahfuzah@ump.edu.my

Total Teaching / Industrial / Research Experience in year: 20

Total Number of paper published (National / International /Journal / Conference): 30

Dr. Norizam Sulaiman

Faculty of Electrical & Electronics Engineering,Universiti Malaysia Pahang Main Campus-26600, Pekan, Pahang, Malaysia

email: norizam@ump.edu.my

Rosmadi Abdullah

Faculty of Electrical & Electronics Engineering Universiti Malaysia Pahang Main Campus, 26600 Pekan, Pahang, Malaysia

Prof. & Dr. Atul M Gonsai

Saurashtra University, Department of computer science Rajkot,India

email: amgosai@sauuni.ernet.in

Total Teaching / Industrial / Research Experience in year: 18

Total Number of paper published (National / International /Journal / Conference): 80

Dr. Naimish Zaveri

Professor & Head, Electrical Engineering Department, C K Pithawala College of Engineering and Technology, Surat, Gujarat, India

email: zaverinaimish@yahoo.com

Dr. A Senthil Kumar

M.E.,MBA.,Ph.D(IITR).,PDF(TUT,SA).,Senior PDF(VSB-TUO, EUROPE)., Professor / EEE Velammal Engineering College Velammal Nagar Ambattur - Redhills Road surapet Chennai-600 066,India, mobile no: +91 7708854742

email: vastham@gmail.com

Total Teaching / Industrial / Research Experience in year: 20

Total Number of paper published (National / International /Journal / Conference): 143

Dr. Thiruvenkadam

Professor and Head, Department of Electrical and Electronics Engineering, P. A. College of Engineering and Technology, Pollachi-642002,India

email: drstv.2011@gmail.com

Total Teaching / Industrial / Research Experience in year: 16

Total Number of paper published (National / International /Journal / Conference): 20

Dr. M Ramesh Babu

Department of Electrical and Electronics Engineering, St Joseph's College of Engineering,India

email: rameshbabum@stjosephs.ac.in

Total Teaching / Industrial / Research Experience in year: 17

Total Number of paper published (National / International /Journal / Conference): 40

Dr. Shenbagalakshmi

Department of Electrical Engineering, Sinhgad Institute of Technology, Lonavala, Maharashtra, India

email: lakshmi_amrith@yahoo.com

Total Teaching / Industrial / Research Experience in year: 15

Total Number of paper published (National / International /Journal / Conference): 10

Dr. D Mary

Professor,Electrical Engineering Department, Government College of Technology,Coimbator-641013,Anna University,Chennai,India

email: dmary.1008@yahoo.com

Total Teaching / Industrial / Research Experience in year: 35

Total Number of paper published (National / International /Journal / Conference): 150

Dr. S.Titus

Professor and Head, Department of Electrical and Electronics Engineering,M A M college of Engineering, Anna University,Chennai,India

email: drs.titus@gmail.com

Total Teaching / Industrial / Research Experience in year: 17

Total Number of paper published (National / International /Journal / Conference): 40

Dr. Konstantinos Kalorektis

University of Thessaly,Greece

email: kkalovr@gmail.com

Total Teaching / Industrial / Research Experience in year: 20

Total Number of paper published (National / International /Journal / Conference): 40

Dr. I.A.Chidambaram

Professor, Department of Electrical Engineering, Annamalai University, Annamalainagar-608002, India

email: driacdm@yahoo.com

Total Teaching / Industrial / Research Experience in year: 30

Total Number of paper published (National / International /Journal / Conference): 66

Dr. Vasiliki Vita

Department of Electrical and Electronic Engineering Educators, ASPETE – School of Pedagogical and Technological Education, Athens, Greece

email: vasvita@aspete.gr

Total Teaching / Industrial / Research Experience in year: 08

Total Number of paper published (National / International /Journal / Conference): 33

Dr. Hsin-Jang Shieh

Department of Electrical Engineering National Dong Hwa University, Taiwan

email: hjshieh@gms.ndhu.edu.tw

Total Teaching / Industrial / Research Experience in year: 15

Total Number of paper published (National / International /Journal / Conference): 30

Dr. C Divya

Centre for Information Technology and Engineering, Manonmaniam Sundaranar University,Tirunelveli,Tamil Nadu, India

email: cdivya@msuniv.ac.in

Total Teaching / Industrial / Research Experience in year: 07

Total Number of paper published (National / International /Journal / Conference): 20

Dr. Karthikeyan J

Electrical Engineering, SSMIET, Dindigul, Anna university,Chennai,India

email: JKARTHI30@GMAIL.COM

Total Teaching / Industrial / Research Experience in year: 18

Total Number of paper published (National / International /Journal / Conference): 45

Dr. Julián Antonio Pucheta

Faculty of Exact, Physical and Natural Sciences National University of Córdoba, Córdoba, Argentina.

email: julian.pucheta@yahoo.com.ar

Total Teaching / Industrial / Research Experience in year: 18

Total Number of paper published (National / International /Journal / Conference): 104

Prof. & Dr. Nabil Ngote

Electromechanical Engineering Department National School of Mining (Ecole Nationale Supérieure des Mines de Rabat), Rabat, Morocco

email: ngotenabil@gmail.com

Total Teaching / Industrial / Research Experience in year: 27

Total Number of paper published (National / International /Journal / Conference): 09

Prof. & Dr. Rosário Calado

Electromechanical Engineering Department, University of Beira Interior, Portugal

email: rc@ubi.pt

Total Teaching / Industrial / Research Experience in year: 25

Total Number of paper published (National / International /Journal / Conference): 95

Volumn : 1, Issue : 1
SR No.Paper TitlePage No.Download
1

Voltage stability improvement in 2-bus system using Thyristor Switched Capacitor- Thyristor Controlled Reactor

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Monark K Patel, Dr. Akshay A Pandya

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MLA : Patel, Monark et al."Voltage stability improvement in 2-bus system using Thyristor Switched Capacitor- Thyristor Controlled Reactor","International Journal of Electrical Engineering and Futuristic Technology" (2017).

APA : Patel, M et al. (2017)."Voltage stability improvement in 2-bus system using Thyristor Switched Capacitor- Thyristor Controlled Reactor","International Journal of Electrical Engineering and Futuristic Technology.

Chicago : Patel, Monark et al."Voltage stability improvement in 2-bus system using Thyristor Switched Capacitor- Thyristor Controlled Reactor","International Journal of Electrical Engineering and Futuristic Technology" (2017).

This paper presents analysis of voltage stability using Thyristor Switched Capacitor- Thyristor Controlled Reactor (TSC-TCR). Most of the commercial and industrial installations such as motor, large machines, air conditioners, etc, which draw large amount of reactive power and result in voltage instability. So it is required to improve the voltage stability. MATLAB simulation for single phase 2-bus system using TSC-TCR controller is done and their results are discussed. TSC-TCR controller not only improves voltage stability but also eliminates manual intervention

Voltage stability, Thyristor Switched Capacitor- Thyristor Controlled Reactor (TSC-TCR)

Journal Papers:

1.   Claudia Reis, António Andrade, F.P. Maciel, “Voltage Stability Analysis of Electrical Power System” Lisbon, Portugal, March 18-20, 2009

Books:

2. IEEE special publication, “Voltage Stability of Power Systems: Concepts, Analytical Tools, and Industry Experience” 90TH0358-2-PWR, 1990

01-06 Download
2

Inner DC Link Capacitor Voltage balancing in Five Level Diode Clamped Multilevel Inverter Using Boost Converter

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Shubham R Patel, Gaurang K Sharma, Ashish R Patel

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MLA : Patel, Shubham et al."Inner DC Link Capacitor Voltage balancing in Five Level Diode Clamped Multilevel Inverter Using Boost Converter","International Journal of Electrical Engineering and Futuristic Technology" (2017).

APA : Patel, S et al. (2017)."Inner DC Link Capacitor Voltage balancing in Five Level Diode Clamped Multilevel Inverter Using Boost Converter","International Journal of Electrical Engineering and Futuristic Technology.

Chicago : Patel, Shubham et al."Inner DC Link Capacitor Voltage balancing in Five Level Diode Clamped Multilevel Inverter Using Boost Converter","International Journal of Electrical Engineering and Futuristic Technology" (2017).

This paper deals with the problem of capacitor voltage unbalancing arising in the multilevel inverter. This unbalancing leads to the deterioration in the quality of the ac output voltage, unequal voltage stresses across the components and the useful life of various electronic components. This unbalancing of capacitor voltage is being balanced by the use of two level-boost converter. The simulation is being performed in MATLAB Simulink® and this is being analyzed with different loading conditions

Diode-clamped multilevel inverter;switching signal; two level boost converter;LC filter

Journal Papers:

  1.       M.M Renge and H.M. Suryawanshi,"Five level diode clamped inverter to eliminate common mode voltage and reduce dv/dt in medium voltage rating induction motor drives", IEEE Trans. Power Electron, vol. 23, no. 4, pp. 1598-1607, July 2008.
  2.      A.A Boora,A.Nami,F.Zare,A.Ghosh and F. Blaabjerg"Voltage sharing converter to supply single phase assymetrical four level diode clamped multilevel inverter with high power factor loads", IEEE Trans. Power Electron, vol. 25, no. 10, pp. 2507-2520, Oct 2010.
  3.       K.Hasegawa and H.Akagi, "A new Dc-Voltage balancing circuit including a single coupled inductor for a five level diode-clamped PWM inverter", IEEE Trans Ind Application, vol. 47, no. 2, pp. 841-852, Mar/Apr 2011.
  4.       M. Calais and V. G Agelids,” Multilevel Converters for single  phase grid connected photovoltaic system-An overview,” in  Proc.IEEE Int. Symp.   Ind. Electron.1998, vol.1, pp.224-229.
  5.       Ronalad Y. Barazarte,Guadalupe G.Gonzalex,”Design Of a two-level boost converter”,in Eleventh LACCEI latin american and carribean conference of engineering and technology,Aug 14-16,2013.

Books:

  1.        M.H.Rashid, Power Electronics Circuits,Devices and Applications, PEARSON, 2006.

 

07-14 Download
3

Application of Field Oriented Control Scheme for AC Motors

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Ujash V Vachhani, Ashish R Patel

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MLA : Vachhani, Ujash et al."Application of Field Oriented Control Scheme for AC Motors","International Journal of Electrical Engineering and Futuristic Technology" (2017).

APA : Vachhani, U et al. (2017)."Application of Field Oriented Control Scheme for AC Motors","International Journal of Electrical Engineering and Futuristic Technology.

Chicago : Vachhani, Ujash et al."Application of Field Oriented Control Scheme for AC Motors","International Journal of Electrical Engineering and Futuristic Technology" (2017).

This paper presents the controlling of the AC Motor by using the ‘Field Oriented Control (FOC)’ method. Also the paper describes the FOC scheme and its computer simulation in MATLAB/SIMULINK®. By using FOC scheme with AC motor, we can get the high starting torque like in DC motor with all the by default advantages of AC motor, is presented here. 

AC motor; control of AC motor; field oriented control

          Journal Papers:

  1. Popescu M., “Induction Motor Modelling for Vector Control Purposes”, Helsinki University of Technology, Laboratory of Electromechanics, Report, Espoo 2000, 144 p.
  2. Anand Bellure, Dr. M. S. Aspalli, “Dynamic d-q model of Induction Motor using Simulink”, IJETT – volume 24 Number 5th June, 2015.
  3. Tiecheng Sun, Jingwei Han, Deyan Gao, Sanling Xu, Ningbo Lu, “Research on Field Oriented Control system of Induction Motor based on Computer”, at 2012 IEEE 7th International Power Electronics and Motion Control Conference, June 2-5, 2012, Harbin, China
  4. Burak Ozpineci, Leon M. Tolbert, “Simulink Implementation of Induction Machine Model-A Modular Approach”, Oak Ridge National Labiratory, Oak Ridge
  5. Parsa Farmanzadeh, Mohammad Reza Azizian, Afshin Ebrahimi, “A Robust Conroller Design to Stabilize induction Motor Drive Operation Using IFOC Method”, Sahand University of Technology, Tabriz-Iran
  6. Nisha G. K., Lakaparampil Z. V., Ushakumari S., “Torque capability improvement of sensorless FOC induction machine in field weakening for propulsion purposes” at Journal of Electrical System and Information Technology, ScienceDirect, ELSEVIER
  7. Zeina Bitar, Samih Al Jabi, “Studying the Performance of Induction Motor used in Electric Car” at The International Conference on Technologies and Materials for Renewable Energy, Environment and sustainability, TMREES14, ScienceDirect, ELSEVIER

Books:

  1. P. C. Krause, O. Wasynczuk, S. D. Sudhoff, “Analysis of Electric Machinery and Drive Systems”, IEEE Press, A John Wiley & Sons, Inc. Publication Second Edition, 2002.

           Theses:

  1. “Field Oriented Control”, application note by Hamid Khan at RENESAS
  2. Ashish R. Patel, “Modelling and control of DFIG”, M.Tech. dissertation report, IITB, 2009
15-19 Download
4

Diode Clamped Multilevel Inverter with various PWM techniques and LC filter

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Maharshi Patel, Swapnil Arya

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MLA : Patel, Maharshi et al."Diode Clamped Multilevel Inverter with various PWM techniques and LC filter","International Journal of Electrical Engineering and Futuristic Technology" (2017).

APA : Patel, M et al. (2017)."Diode Clamped Multilevel Inverter with various PWM techniques and LC filter","International Journal of Electrical Engineering and Futuristic Technology.

Chicago : Patel, Maharshi et al."Diode Clamped Multilevel Inverter with various PWM techniques and LC filter","International Journal of Electrical Engineering and Futuristic Technology" (2017).

<p style="text-align: justify;"> The paper is regarding to, understanding concept and working of Multilevel Inverter (Diode Clamped MLI). For the controlling of Multilevel Inverter, various Pulse Width Modulation Techniques are discussed. Also the comparisons of various PWM techniques used in Diode Clamped MLI are given with reference to THD (Total Harmonic Distortion) level. For the controlling of Diode Clamped Multilevel Inverter, there are Phase Disposition PWM method (PDPWM), Phase Opposition Disposition PWM method, Alternate Phase Opposition Disposition PWM method (APODPWM), and Phase Opposition Disposition with variable frequency PWM methods (PODFPWM) are discussed in detail. Also for the harmonic reduction, passive filter is used with the Multilevel inverter. Performance of Diode Clamped Multilevel Inverter is simulated by using MATLAB-SIMULINK.</p>
Multilevel inverter, DCMLI, PWM techniques for MLI, Controlling of Inverter
<ol> <li style="text-align: justify;" value="NaN"> <em>M. H. Rashid, &ldquo;Power Electronics: Circuit, Devices, and Applications,&rdquo; Multilevel Inverter, 3th ed. Florida, India, 2004, ch. 9.</em></li> <li style="text-align: justify;" value="NaN"> <em>J. Rodr&iacute;guez, J. S. Lai, and F. Z. Peng, &ldquo;Multilevel inverters: A survey of topologies, controls, and applications,&rdquo; IEEE Trans. Ind. Electron., vol. 49, no. 4, pp. 724&ndash;738, 2002.</em></li> <li style="text-align: justify;" value="NaN"> <em>S. Ozdemir, E. Ozdemir, L. M. Tolbert, and S. Khomfoi, &ldquo;Elimination of harmonics in a five-level diode-clamped multilevel inverter using fundamental modulation,&rdquo; Proc. Int. Conf. Power Electron. Drive Syst., pp. 850&ndash;854, 2007.</em></li> <li style="text-align: justify;" value="NaN"> <em>Suroso and T. Noguchi, &ldquo;New generalized multilevel current-source PWM inverter with no-isolated switching devices,&rdquo; Proc. Int. Conf. Power Electron. Drive Syst., pp. 314&ndash;319, 2009.</em></li> <li style="text-align: justify;" value="NaN"> <em>M. Annas, J. E. Muralidhar, &ldquo;Harmonic Analysis of 3-Level and 5- Level Diode Clamped Multilevel Inverter based on Sinusoidal PWM Control,&rdquo; IJCTA., vol. 8, no. 1, pp. 48&ndash;58, 2015.</em></li> <li style="text-align: justify;" value="NaN"> <em>C. R. Balamurugan, S. P. Natarajan, and R. Bensraj, &ldquo;Investigations on Three Phase Five Level Diode Clamped Multilevel Inverter,&rdquo; International Journal of Mordern Engineering Research., vol. 2, no. 3, pp. 1273&ndash;1279, 2012.</em></li> <li style="text-align: justify;" value="NaN"> <em>Z. Xu, S. Li, and H. Pan, &ldquo;Study of Five-level diodes-clamped Inverter Modulation Technology Based on Three-harmonic Injection Method,&rdquo; Proc. 2nd Int. Conf. Electron. Mech. Eng. Inf. Technol., pp. 1973&ndash;1976, 2012.</em></li> <li style="text-align: justify;" value="NaN"> <em>S. K. Peddapelli, &ldquo;Recent Advances in Pulse Width Modulation Techniques and Multilevel Inverters,&rdquo; International Journal of Electrical, Computer, Energetic, Electronic and Communication Engineering., vol. 8, no. 3, pp. 570&ndash;578, 2014.</em></li> <li style="text-align: justify;" value="NaN"> <em>A. B. Sankar and R. Seyezhai, &ldquo;Analysis of Carrier Based Modulation Strategies for an Active Neutral Point Clamped Multilevel Inverter for Wind Applications.&rdquo; IET Int. Conf. on Sustainable Energy and Intelligent Systems., 12-14 Dec 2013.</em></li> <li style="text-align: justify;" value="NaN"> <em>P. Palanivel and S. S. Dash, &ldquo;Control of Three Phase Cascaded Multilevel Inverter Using Various Novel Multicarrier Pulse Width Modulation Techniques,&rdquo; TENCON 2010 IEEE Reg. 10 Conf., pp. 59&ndash;64, 2010.</em></li> <li style="text-align: justify;" value="NaN"> <em>P. Palanivel and S. S. Dash, &ldquo;Implementation of THD and output voltage of three phase cascaded multilevel inverter using multicarrier pulse width modulation techniques,&rdquo; 2010 IEEE Int. Conf. Sustain. Energy Technol. ICSET 2010, 2010.</em></li> <li style="text-align: justify;" value="NaN"> <em>X. Zhang, &ldquo;Control Strategy of Cascaded H-Bridge Multilevel Inverter With PV system as Separate DC Source Control Strategy of Cascaded H-Bridge Multilevel Inverter with PV System as Separate DC Source,&rdquo; 2011.</em></li> <li style="text-align: justify;" value="NaN"> <em>I. Scholar, &ldquo;Power Quality Analysis of a PV fed Seven Level Cascaded H-Bridge Multilevel Inverter,&rdquo; no. 978, pp. 281&ndash;285, 2014.</em></li> <li style="text-align: justify;" value="NaN"> <em>M. Pozo-palma, M. Pacas, and S. Member, &ldquo;Predictive Control for a PMSM with LC-Filter and a Virtual Multilevel Inverter,&rdquo; 2014.</em></li> <li style="text-align: justify;" value="NaN"> <em>M. D. Patil, &ldquo;L-C Filter Design Implementation and Comparative Study with Various PWM Techniques for DCMLI,&rdquo; no. Icesa, pp. 347&ndash;352, 2015.</em></li> <li style="text-align: justify;" value="NaN"> <em>T. Lahlou, M. Abdelrahem, S. Valdes, and H. Herzog, &ldquo;Filter Design for Grid-Connected Multilevel CHB Inverter for Battery Energy Storage Systems,&rdquo; 2016.</em></li> </ol>
20-30 Download
5

Linear Sensitivity Indices And Series Compensation For Transmission Congestion Management In Power System

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Arpita K Patel, Dr. B R Parekh

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MLA : Patel, Arpita et al."Linear Sensitivity Indices And Series Compensation For Transmission Congestion Management In Power System","International Journal of Electrical Engineering and Futuristic Technology" (2017).

APA : Patel, A et al. (2017)."Linear Sensitivity Indices And Series Compensation For Transmission Congestion Management In Power System","International Journal of Electrical Engineering and Futuristic Technology.

Chicago : Patel, Arpita et al."Linear Sensitivity Indices And Series Compensation For Transmission Congestion Management In Power System","International Journal of Electrical Engineering and Futuristic Technology" (2017).

The transmission congestion is one of the major problems in deregulated electricity market. The transmission network is unable to accommodate the desired transactions due to violation of operating limits of power system. So transmission congestion is occurred. It affects system security and electricity cost. To maintain the power flow limits in the transmission lines, sufficient amount of reactive power supports are needed. This paper describes the congestion due to N-1 contingencies for line outage and generator outage. The analysis is done based on linear sensitivity factors that are line outage distribution factors and generator shift factors. The series compensation is provided to the most sensitive lines. The results are carried out on 6 bus system using MATLAB programming.

Congestion management, linear sensitivity index, series compensation, FACTS
  1. L.Rajalakshmi,M.V.Suganyadevi,S.Parameswari, “Congestion Management in Deregulated Power System by Locating Series FACTS Devices,” International journal of Computer applications,Vol.13,pp 0975-8887,Jan2011.
  2. R.D.Christie, B.F.Wollenberg, and I.Wangensteen, “Transmission management in the deregulated environment,” Proc. of IEEE, vol.88, Issue 2, pp. 170-195, 2000.
  3. A.R.Abhyankar, Prof.S.A.Khaparde, “Introduction  to Deregulation in Power Industry,”IIT Bomaby.
  4. Pooja P. Kulkarni, Dr. N. D. Ghawghawe, “Optimal Placement and Parameter setting of TCSC in Power Transmission System to increase the Power Transfer Capability”, International Conference on Energy Systems and Applications (ICESA 2015).
  5. G. Vinod Kumar, J. Srinivasa Rao, J. Amarnath, “Transmission Congestion Management By Using Series FACTS Devices And Changing Participation Factors Of Generators”, International journal of morden engineering research, vol.3, issue.4, Jul-Aug.2013.
  6. S. Charles Raja, Dr. P. Venkatesh, Dr. B.V. Manikandan, Transmission Congestion Management in Restructured Power Systems, IEEE,2011.
  7.  A. J. Wood and B. F. Wollenberg, Power Generation, Operation and Control. New York: Wiley, 1996.
  8.  P. Venkatesh, B.V. Manikandan, S. Charles Raja, A. Srinivasan, Electrical Power Systems:Analysis, Security, Deregulation, PHI,2015.
  9.  V. Srinivasa Rao and R. Srinivasa Rao, Comparison of Various Methods for Optimal Placement of FACTS Device, IEEE, 2014.
  10. Vijaykumar Krishnasamy, Jegatheesan, Optimal Location of Multiple TCSCs for Congestion Management, 7th International Power Engineering and Optimization Conference (PEOCO2013), Langkawi, Malaysia. 3-4 June 2013. IEEE 2013.
31-38 Download
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  5. Articles submitted to this journal will be considered on the understanding that, the entire copyright shall pass to the A D Publication International Journal.
  6. Articles are considered on the understanding that, if they are accepted for publication, the entire copyright shall pass to the A D Publication International Journal.
  7. Editor-In-Chief has complete responsibility and authority to reject/accept an article.
  8. Editor-In-Chief has the rights to publish the manuscript submitted/received to this journal without any prior notification to the authors.

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