A Decentralised Adaptive Voltage Droop Control for Inverters in Power Distribution Networks

Asia-Pacific Power and Energy Engineering Conference(2018)

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摘要
This paper investigates voltage control in distribution power systems with high penetration level of inverter-based distributed generation. The proposed controller locally adapts automatic Volt/Watt and Volt/VAr droop control coefficients taking into account the location of the distributed generator in the feeder to mitigate voltage deviations while ensuring that voltage deviations at all buses are kept within tight bounds. The proposed controller consists of voltage zones with different characteristics which renders the closed-loop system to be a switched system. We study analytical stability of this system and give sufficient conditions to ensure boundedness of the switched control system within safe voltage limits. An illustrative example shows effectiveness of the proposed control design.
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关键词
voltage limits,penetration level,system stability,distributed generator,inverter-based distributed generation,distribution power systems,power distribution networks,decentralised adaptive voltage droop control,control design,switched control system,closed-loop system,voltage zones,voltage deviations
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