利用需求响应和并网光伏的协调控制来缓解过电压

B. Bhattarai, B. Bak‐Jensen, J. Pillai, J. Gentle, Kurt S. Myers
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引用次数: 16

摘要

采用各种有功/无功控制技术,可有效缓解太阳能光伏发电集成度高的低压配电网的过电压问题。由于这些方法会给光伏发电业主带来收益损失或增加逆变器成本,因此本研究提出将电动汽车作为潜在的需求响应资源,对负载需求和光伏进行协调控制,以缓解过电压。设计了两阶段控制来理解所提出的协调控制,以便集中阶段定期确定pv / ev的最佳运行设定点,分散阶段实时自适应控制pv / ev。为了证明所提出方法的有效性,在包含45个独立住宅用户的典型0.4 kV/400 kVA丹麦配电网络中进行了模拟。该方法有效地减轻了过电压,提高了技术性能,有效地利用了光伏电力,提高了经济效益。在给定配置和市场结构下,该方法可使光伏发电收益增加19.23%,电动汽车充电成本减少25.73%。
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Overvoltage mitigation using coordinated control of demand response and grid-tied photovoltaics
Overvoltages in low voltage distribution grids with high solar photovoltaic (PV) integration are usually alleviated by implementing various active/reactive power control techniques. As those methods create revenue loss or inverter cost increase to PV owners, a coordinated control of load demand and the PVs, considering electric vehicles (EVs) as potential demand response resource, is proposed in this study to alleviate the overvoltages. A two-stage control is designed to comprehend the proposed coordinated control such that a centralized stage periodically determines optimum operating set-points for PVs/EVs and a decentralized stage adaptively control the PVs/EVs in real-time. To demonstrate effectiveness of the proposed approach, simulations are performed in a typical 0.4 kV/400 kVA Danish distribution network containing 45 detached residential consumers. The presented method demonstrates better technical performance by effectively mitigating the overvoltages and improved economic performance by efficiently utilizing the PV power. For the given configuration and market structure, the presented method demonstrated 19.23% increment on PV power revenue and 25.73% decrement on EV charging cost.
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