智能微电网中的实时守恒降压与控制

S. Singh, A. Thakur, P. Babu, S. Singh
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引用次数: 2

摘要

本文研究了应用节能降压技术实现智能微电网运行的需求侧管理。引入了一种智能伏特/无功控制方法来实现CVR的运行。提出了一种事件驱动的实时控制方法来检验CVR部署的有效性。研究了社区能源系统(CES)对微网运行和控制的影响,开发了微网社区能源系统(CES)控制器的自适应伏安/无功下垂控制策略。采用了精确的电压敏感负载模型。利用实时数字模拟器(RTDS)对正常运行、CVR运行和CVR下云瞬态冲击三种情况进行了仿真。进一步研究了云暂态下无控制器、有常规控制器和有μCES控制器的电压波动控制。实时仿真结果验证了所提出的控制方案的有效性,结果也表明CVR可以显著降低微网运行中的峰值电力需求。此外,与传统的下垂控制相比,μCES控制器方案可以巧妙地处理电压控制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Real-Time Conservation Voltage Reduction and Control in Smart Micro-Grid Application
This paper studied the demand side management in smart micro-grid operation via conservation voltage reduction (CVR) application. A smart volt/VAR control approach has been introduced to enable the CVR operation. An event-driven realtime control approach has been proposed to check the effectiveness of CVR deployment. The impact of the community energy system (CES) in micro-grid operation and control has been studied by developing an adaptive volt/VAR droop control strategy for micro-grid CES (μCES) controllers. An accurate voltage sensitive load model has been utilized. The simulations have been carried out using a real-time digital simulator (RTDS) for three cases: normal operation, CVR operation, and cloud transient impact under CVR. Voltage fluctuation control under cloud transient has been further studied without controller, with conventional controller and in the presence of μCES controllers. The real-time simulation results validate the proposed control scheme, and results also reveal that CVR could reduce considerable peak power demand in micro-grid operation. Further, the μCES controller scheme handles voltage control smartly in comparison to conventional droop control.
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