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Output Voltage Control of Hydrogen Engine Generator Using A Hill Climbing Method by Adjusting the Hydrogen Flow Rate with A Proportional Control Valve

机译:通过用比例控制阀调节氢气流速的储氢方法输出氢发动机发生器的输出电压控制

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Hydrogen engine generator has attracted attention because it is cheaper than fuel cells and does not emit CO2. However, hydrogen flow rate must be controlled appropriately according to output power, which changes depending on the load. If the hydrogen flow rate input into the engine was not controlled appropriately, the output voltage is dropped or the fuel efficiency becomes worse. In this paper, output voltage control of a hydrogen engine generator using a hill climbing method with an evaluation function simulating a quadratic function is proposed. It is clarified by experiments that the output voltage of the generator can be controlled to a constant value by applying the hill climbing method with the evaluation function even when the load fluctuates. In addition, it is shown that the response time can be shortened by 0.4 sec with the same system configuration as the previously proposed PI controlled system.
机译:氢发动机发电机引起了注意力,因为它比燃料电池便宜,并且不发出CO 2 。然而,必须根据输出功率适当地控制氢气流量,这取决于负载。如果没有适当地控制发动机进入发动机的氢气流量,则输出电压掉落或燃料效率变差。本文提出了利用山攀岩方法的氢发动机发生器的输出电压控制,具有模拟二次函数的评价函数。通过实验阐明了即使当负载波动时,通过将发电机的输出电压控制到恒定值,即使加载波动也可以通过利用评估功能来控制恒定值。另外,示出了响应时间可以缩短0.4秒,其系统配置与先前提出的PI控制系统相同。

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