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Designing and Testing Composite Energy Storage Systems for Regulating the Outputs of Linear Wave Energy Converters

机译:设计和测试用于调节线性波能量转换器输出的复合储能系统

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Linear wave energy converters generate intrinsically intermittent power with variable frequency and amplitude. A composite energy storage system consisting of batteries and super capacitors has been developed and controlled by buck-boost converters. The purpose of the composite energy storage system is to handle the fluctuations and intermittent characteristics of the renewable source, and hence provide a steady output power. Linear wave energy converters working in conjunction with a system composed of various energy storage devices, is considered as a microsystem, which can function in a stand-alone or a grid connected mode. Simulation results have shown that by applying a boost H-bridge and a composite energy storage system more power could be extracted from linear wave energy converters. Simulation results have shown that the super capacitors charge and discharge often to handle the frequent power fluctuations, and the batteries charge and discharge slowly for handling the intermittent power of wave energy converters. Hardware systems have been constructed to control the linear wave energy converter and the composite energy storage system. The performance of the composite energy storage system has been verified in experiments by using electronics-based wave energy emulators.
机译:线性波能量转换器产生具有可变频率和幅度的固有间歇功率。由降压-升压转换器开发并控制了由电池和超级电容器组成的复合储能系统。复合储能系统的目的是处理可再生能源的波动和间歇性特征,从而提供稳定的输出功率。线性波能量转换器与由各种能量存储设备组成的系统一起工作,被视为可以以独立模式或并网模式工作的微系统。仿真结果表明,通过应用升压H桥和复合储能系统,可以从线性波能量转换器中提取更多的功率。仿真结果表明,超级电容器经常充放电以应对频繁的功率波动,而电池缓慢充放电以应对波能转换器的间歇功率。已经构造了硬件系统来控制线性波能量转换器和复合能量存储系统。通过使用基于电子的波能仿真器,已在实验中验证了复合储能系统的性能。

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