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International Journal of Computer Engineering in Research Trends. Scholarly, Peer-Reviewed,Open Access and Multidisciplinary

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A Novel Control Strategy of PV making System with LPC for Loading Balance of Distribution Feeders

M.Tech Research Scholar, Priyadarshini Institute of Technology & Management
Assistant Professor, Priyadarshini Institute of Technology & Management

At Present days solar power plants are more dependable, because no fuel and reduced CO2 emission. But the solar power generation system do not work in all weather conditions, it is power generated only solar radiation time .To overcome this problem by using fuel cell (FC). In fuel cell power generation there will be no problems, where as in fuel cell power distribution systems have some problems like overloading the distribution feeders. In this project to overcome this overloading by using Loop Power Controller (LPC) and also photovoltaic (PV) power generation is incorporated in balancing the feeder loading..The loop power controller to control real power and reactive power flow by adjusting voltage ratio and phase shift. Daily loading unbalance is determined by analyzing fuel cell (FC) power generation recording by using SCADA system and load profile based on Data Automation System (DAS).The loop power controller can improve controllability, operational flexibility and reduce power loss of the distribution system. The Loop Power Controller (LPC) is based on the MATLAB/ SIMULINK

N. MAHESH,A. VYSHNAVI."A Novel Control Strategy of PV making System with LPC for Loading Balance of Distribution Feeders". International Journal of Computer Engineering In Research Trends (IJCERT) ,ISSN:2349-7084 ,Vol.1, Issue 06,pp.570-574, DECEMBER - 2014, URL :,

Keywords : Distribution system, Fuel cell, Loop power controller.

[1]. Jin-Woo Jung,1 Ali Keyhani,2 Modeling and Control
of Fuel Cell Based Distributed Generation Systems in a
Standalone AC Power Supply
[2]. Y. Zhu and K. Tomsovic, “Adaptive power flow
method for distribution systems with dispersed
generation,” IEEE Trans. Power Del., vol. 17, no. 3, pp.
822–827, Jul. 2002.
[3]. 2008 Report of Long-Term Load Forecasting and
Energy Development, Bureau of Energy, Ministry of
Economic Affairs,Taiwan, Dec. 2008.
[4]. N. Okada, “A method to determine the distributed
control setting of looping devices for active distribution
systems,” in Proc.2009 IEEE Bucharest Power Tech
(POWERTECH), Bucharest, Romania, Jun. 2009, pp. 1–6.
[5]. S. A. Farouji, E. Bakhshizadeh, R. Kazemzadeh, and
R. Ghazi, “The static VAR compensator equations
development for loading balance at desired power
factor based on load admittance parameters and
instantaneous voltage and current values,” in Proc. 2009
Int. Conf. Elect. Power Energy Conversion Syst.,
Sharjah, United Arab Emirates, Nov. 10–12, 2009, pp. 1–
[6]. C. H. Lin, “Distribution network reconfiguration for
loading balance with a coloured petri net algorithm,”
Proc. Inst. Elect. Eng.,Gen., Transm., Distrib., vol. 150,
no. 3, pp. 317–324, May 2003.
[7]. N. Okada, “Verification of control method for a loop
distribution system using loop power flow controller,” in Proc. 2006 IEEE PES Power Syst. Conf. Expo., Atlanta,
GA, Oct./Nov. 2006, pp. 2116–2123.


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