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Simulation based V2H Super Capacitor Charging using Bidirectional DC-DC Converter

机译:使用双向DC-DC转换器基于仿真的V2H超级电容器充电

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The extensive use of fossil fuels has resulted into depletion of this valuable resource at an alarming rate. Though the supply of fossil fuel is reducing i.e. generation is reducing but the demand of power is ever increasing. The need of finding alternative energy sources in order to bridge the gap between supply and demand is a must. Moreover the disproportionate distributions of load between peak load and off peak load period have created serious power grid stability issues. Thus a system to solve both these problems is a must. In this paper we have used the vehicle to home infrastructure to solve these problems. In vehicle-to-home (V2H) systems, electric vehicles interact with the home battery as distributed energy storage systems that offer many potential benefits as an energy interface between a vehicle and the grid, the bidirectional converter plays a crucial role in their interaction. A model of the topology is derived, its behavior is analyzed, and its converter design method is developed. In this paper, we have used a super capacitor at home end, which will help to store more energy. Simulation results are employed to verify the design and analysis using MATLAB. The desired results help to determine the suitability of the technology for V2H system.
机译:化石燃料的广泛使用导致这种宝贵资源的消耗速度惊人。尽管化石燃料的供应正在减少,即发电量正在减少,但对电力的需求却在不断增加。必须找到替代能源以弥合供需之间的差距。此外,高峰负荷和非高峰负荷期之间负荷的不均衡分布造成了严重的电网稳定性问题。因此,必须有一个解决这两个问题的系统。在本文中,我们将车辆用于家庭基础设施来解决这些问题。在车对家(V2H)系统中,电动汽车与家用电池进行交互,这是分布式储能系统,可作为车辆和电网之间的能量接口提供许多潜在的好处,双向转换器在它们的交互中起着至关重要的作用。推导了拓扑模型,分析了其行为,并开发了转换器设计方法。在本文中,我们在家用端使用了超级电容器,这将有助于存储更多能量。仿真结果用于验证使用MATLAB进行的设计和分析。期望的结果有助于确定该技术对V2H系统的适用性。

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