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  • This paper deals with voltage control of distribution networks with high representation of photovoltaic power sources. To simulate this, modified IEEE 123-bus radial power system has been equipped with time-dependent loads and generations from PV power plants to include various loading and voltage scenarios of the system. For voltage control, operations of load tap-changing transformers (LTCs) connected to both HV and MV voltage levels have been simulated using traditional Gauss-Seidel method. Multiple load flow calculations along with voltage control algorithms for LTCs were performed in Matlab environment.
  • This paper deals with voltage control of distribution networks with high representation of photovoltaic power sources. To simulate this, modified IEEE 123-bus radial power system has been equipped with time-dependent loads and generations from PV power plants to include various loading and voltage scenarios of the system. For voltage control, operations of load tap-changing transformers (LTCs) connected to both HV and MV voltage levels have been simulated using traditional Gauss-Seidel method. Multiple load flow calculations along with voltage control algorithms for LTCs were performed in Matlab environment. (en)
Title
  • Voltage Control of Distribution Networks with Photovoltaic Power Sources
  • Voltage Control of Distribution Networks with Photovoltaic Power Sources (en)
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  • Voltage Control of Distribution Networks with Photovoltaic Power Sources
  • Voltage Control of Distribution Networks with Photovoltaic Power Sources (en)
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  • RIV/49777513:23220/12:43915757!RIV13-MSM-23220___
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  • P(TA01020865), S
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  • Voltage Control, Distribution Power Systems, Photovoltaic Power Sources, On-Load Tap-Changing Transformers, Load Flow Analysis. (en)
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  • Veleba, Jan
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  • 23220
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