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Dual voltage/power system by battery/flywheel configuration

机译:双电压/电源系统通过电池/飞轮配置

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Flywheel Energy Storage Systems have gained more attention over the last years due to the requirement of reliable energy systems in modern society. The combination of a flywheel and a battery can be very interesting as they merge high power and high energy capabilities for use in a broad variety of applications. In Electric Vehicles, dual voltage/power systems using batteries and flywheels have already been investigated. However, different configurations can be obtained depending on the flywheel topology and the load requirements. In this paper, series and parallel connection of flywheel and battery are tested using a simulation model built in Simulink. The model includes power converters and controls, and the flywheel machine model is based on the parameters of an existent prototype. Results show that both configurations are capable to deliver the power requested by the machine load. However, total energy consumption is lower when the parallel configuration is used. This can be attributed to the higher number of switching devices existent in the series configuration.
机译:由于现代社会中可靠的能源系统的要求,飞轮储能系统在过去几年中获得了更多的关注。飞轮和电池的组合可以非常有趣,因为它们合并用于广泛应用的高功率和高能量能力。在电动车辆中,已经研究了使用电池和飞轮的双电压/电源系统。然而,可以根据飞轮拓扑和负载要求获得不同的配置。在本文中,使用在Simulink中构建的仿真模型来测试飞轮和电池的系列和并联连接。该模型包括电源转换器和控制器,飞轮机模型基于存在原型的参数。结果表明,这两种配置都能够提供机器负载所需的电源。但是,当使用并行配置时,总能量消耗较低。这可以归因于串联配置中存在的较数越多的交换设备。

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