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首页> 外文期刊>SAE International Journal of Electrified Vehicles >An Electric Vehicle Onboard Microgrid with Solar Panel for Battery Module Balancing and Vehicle-to-Grid Applications
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An Electric Vehicle Onboard Microgrid with Solar Panel for Battery Module Balancing and Vehicle-to-Grid Applications

机译:电动汽车车载微型智能电网"太阳能面板平衡和电池模块汽车电网的应用

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This article proposes an electric vehicle (EV) onboard microgrid for battery module balancing and vehicle-to-grid (V2G) applications. The proposed microgrid is formed by an onboard photovoltaic (PV) system, a bidirectional charger, an auxiliary power module (APM), and selection switches. The system is designed to use solar energy if available for battery balancing by supporting the battery modules with low state-of-charge (SOC) during driving or charging. During charging, when the battery pack is fully charged, the PV system is disconnected from the battery and delivers the solar power to the grid. When the number of these PV-assisted EVs is big enough, they can work together as an aggregated virtual solar farm with energy storage. When there is no solar energy available, the battery management system is able to use the APM for battery management. Simulation-based case studies with recorded solar irradiance data in Detroit, Michigan, show that the virtual solar farm with 10,000 EVs can generate 0.7 MW peak power and 2,953 kWh energy on a sunny winter day, and 1 MW peak power and 5,190 kWh energy on a sunny summer day. The actual experiments verify that the proposed system can perform the designed functions and automatically switch among the required operating modes.
机译:本文提出了一种电动汽车(EV)机载微型智能电网"电池模块的平衡和汽车电网(V2G)应用程序。提出了微型智能电网"是由机载光伏系统、双向的充电器,一个辅助动力模块(APM)和选择开关。太阳能如果用于电池平衡通过支持较低的电池模块在开车或充电电荷状态(SOC)。完全充电时,当电池组指控,光伏系统是断开的电池和太阳能并网发电。当这些PV-assisted电动汽车的数量是大的足够的,他们可以一起工作作为一个聚合虚拟与能量储存太阳能农场。没有可用的太阳能,电池管理系统是能够使用的APM电池管理。在底特律,记录了太阳辐照度数据密歇根州,表明虚拟太阳能农场10000年电动汽车可以产生0.7 MW峰值功率2953千瓦时的能量在一个阳光明媚的冬日,1兆瓦峰值功率和5190千瓦时能量在一个阳光明媚的夏天的一天。提出系统可以执行设计功能和自动开关所需的操作模式。

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