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Modeling and simulation of fleet vehicle batteries for integrated logistics and grid services

机译:综合物流与电网服务舰队车辆电池的建模与仿真

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Vehicle to grid technologies (V2G) utilize the batteries in electric vehicles (EV) to provide ancillary services to the electric power grid. In order to maintain a 60-hertz frequency in the electric grid, there exists a wholesale market for frequency regulation (FR), a specific type of ancillary service. This paper examines V2G technology for providing FR, while focusing on the effect FR service has on battery life, state of charge, and potential revenue. Fleet vehicles are prime candidates for FR, as most are only active a portion of the day. During FR, a small amount of charge is drawn and released from the battery several times a minute, each cycle helping to stabilize the electric grid. Battery degradation, the loss of battery capacity over time, is crucial to the feasibility of V2G. Degradation is influenced by several factors including temperature, total electrical throughput, and the rate energy is taken from the battery. Using historical frequency regulation signals coupled with a throughput based equation for battery degradation, a model analyzes the effects of FR on battery life, battery state of charge, and revenues generated. An analytical simulation written in Java, and a conceptual simulation made in Simio are used for analysis. Results suggest that FR does not dramatically alter the state of charge of a battery and has a minimal impact on battery life. Furthermore, the revenues from FR far exceed costs of degradation. The findings support that V2G will enable a lower total cost of ownership for electric vehicles.
机译:车辆到电网技术(V2G)利用在电动汽车(EV)的电池向电网提供配套服务。为了维持在电网60赫兹频率,存在用于频率调节(FR),辅助服务的特定类型的一个批发市场。本文探讨V2G技术提供FR,同时注重效果FR服务上的电池寿命,充电状态,以及潜在的收入了。车队车辆是FR总理候选人,因为大多数是一天中唯一活跃的部分。 FR期间,电荷少量被拉出并从电池释放数次分钟,每个循环帮助稳定电网。电池的劣化,电池容量会随着时间的流失,是V2G的可行性至关重要。降解是由几个因素,包括温度,总电吞吐量的影响,并且速度能量从电池取出。使用偶联有用于电池劣化的吞吐量基于方程历史频率调节信号,模型分析FR的对电池寿命,电池充电状态,并产生的收入的影响。用Java编写的分析模拟,并在SIMIO作出了概念性的仿真被用于分析。结果表明,FR不显着地改变电池的充电状态和对电池寿命的影响微乎其微。此外,从FR收入远远超过退化成本。这一发现支持V2G将使电动汽车较低的拥有总成本。

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