基于工频下垂控制策略的插电式电动汽车微电网集群稳频

Cibumol B Babu, S. S
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摘要

微电网汇集了大量分布式能源、能源用户和储能设备,为最终用户提供可靠的电力。它可以更好地连接到农村地区,在那里输电系统供电不可行,也不经济。当微网单元数量增加时,可以将微网连接形成微网集群,以提高供电的可靠性。当分布式资源的份额增加时,系统的频率会受到影响,插电式电动汽车(PEV)可以作为发电机或负载来调节频率。由于电动汽车充放电过程不是机械过程,因此电动汽车稳频辅助服务具有较好的响应特性。由于将PEV应用于车辆的网格模式,使其在负载频率控制中的适应性成为可能。控制信号通过为此目的而提供的通信网络进行传输。在具有PEV的负载频率控制回路中,这会导致时间延迟,从而可能发生数据丢失。时滞的存在对负载频率控制有很大的影响。
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Frequency Stabilization in a Microgrid Cluster Using Plug-in Electric Vehicle with Power-Frequency Droop Control Strategy
A microgrid brings together a number of distributed energy resources, energy users and energy storing devices to supply reliable power to the end-users. It can better associate to connect to rural areas where it is not feasible and economic for a transmission system to supply power. The microgrids can be connected to form a microgrid cluster for better reliability of power when the microgrid units increase in number. The frequency of the system gets affected when the share of distributed resources increases and a plug-in electric vehicles (PEV) can be used to regulate the frequency as it can work as a generator or load. The ancillary service of a PEV in the frequency stabilization has a better response characteristics as the charging and discharging of a PEV is not a mechanical process.The accommodation of a PEV in load frequency control is possible because of the application of it in the vehicle to grid mode. The control signals are carried through communication network provided for the purpose. In a load frequency control loop with PEV, this causes time delay and hence data missing may happen. The load frequency control is greatly affected by the presence of time delay.
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