An autonomous distributed vehicle-to-grid control of grid-connected electric vehicle

Y. Ota, H. Taniguchi, T. Nakajima, K. Liyanage, A. Yokoyama
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引用次数: 38

Abstract

Penetrating large amount of renewable energy resources into power system, battery energy storage system perform important role for smoothing their natural variability, ensuring grid-wide frequency stability, and suppressing voltage rise caused by reverse power flow. The ubiquitous power grid concept has been proposed as a Japanese smart grid, in where total battery capacity could be optimized by coordinating controllable distributed generators, loads on demand side, for example, heat pump system with heat storage, and plug-in hybrid vehicle or battery electric vehicle with onboard battery. In this paper, we propose a vehicle-to-grid control of grid-connected plug-in hybrid electric vehicle and electric vehicle as a kind of the demand response in the ubiquitous power grid. Proposed control is based on simple droop characteristics against the power system frequency at plug-in terminal, and considers the risks about use for vehicle and battery condition. Autonomous distributed Smart Storage for governor free control, spinning reserve, local area voltage control, and other smart grid applications is realized by packaging the proposed control to automotive power electronics circuit and electric control unit.
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并网电动汽车的自主分布式车对网控制
电池储能系统将大量可再生能源引入电力系统,在平滑可再生能源的自然变异性、保证电网频率稳定、抑制反向潮流引起的电压上升等方面发挥着重要作用。无处不在的电网概念被提出为日本的智能电网,通过协调可控的分布式发电机,需求侧负载,例如带储热的热泵系统,插电式混合动力汽车或带车载电池的电池电动汽车,可以优化电池总容量。本文将插电式混合动力汽车和电动汽车并网控制作为泛在电网中的一种需求响应。所提出的控制方法是基于插电终端对电力系统频率的简单下垂特性,并考虑车辆使用风险和电池状况。通过将所提出的控制封装到汽车电力电子电路和电气控制单元中,实现了用于调速器自由控制、旋转储备、局部电压控制等智能电网应用的自治分布式智能存储。
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