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An Evaluation of State-of-Charge Limitations and Actuation Signal Energy Content on Plug-in Hybrid Electric Vehicle, Vehicle-to-Grid Reliability, and Economics

机译:插电式混合动力汽车的荷电状态限制和致动信号能量含量评估,车辆到电网的可靠性和经济性

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Researchers have proposed that plug-in hybrid electric vehicles (PHEVs) performing vehicle-to-grid (V2G) ancillary services can accrue significant economic benefits without degrading vehicle performance. However, analyses to date have not evaluated the effect that automatic generator control signal energy content and call rate has on V2G ancillary service reliability and value. This research incorporates a new level of detail into the modeling of V2G ancillary services by incorporating probabilistic vehicle travel models, time-series automatic generation control signals, and time series ancillary services pricing into a non-linear dynamic simulation of the driving and charging behavior of PHEVs. Stochastic results are generated using Monte-Carlo methods. Results show that in order to integrate a V2G system into the existing market and power grid the V2G system will require: 1) an aggregative architecture to meet current industry standard reliability requirements; 2) the construction of low energy automatic generation control signals; 3) a lower percent call for V2G even if the pool of contracted ancillary service resources gets smaller; 4) a consideration of vehicle performance degradation due to the potential loss of electrically driven miles; and 5) a high-power home charging capability.
机译:研究人员提出,执行车辆到电网(V2G)辅助服务的插电式混合动力汽车(PHEV)可以在不降低车辆性能的情况下获得可观的经济效益。但是,迄今为止的分析尚未评估自动发电机控制信号的能量含量和呼叫速率对V2G辅助服务的可靠性和价值的影响。这项研究通过将概率性车辆行驶模型,时间序列自动生成控制信号和时间序列辅助服务定价纳入到V2G辅助服务建模的非线性动态仿真中,将新的细节水平纳入了V2G辅助服务建模。 PHEV。随机结果是使用蒙特卡洛方法生成的。结果表明,为了将V2G系统集成到现有市场和电网中,V2G系统将需要:1)满足当前行业标准可靠性要求的聚合体系结构; 2)构建低能耗自动发电控制信号; 3)即使合同规定的辅助服务资源池变小,对V2G的需求也会降低; 4)考虑由于电动行驶里程的潜在损失而导致的车辆性能下降; 5)高功率家庭充电能力。

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