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Electrical load controller for rural micro-hydroelectric systems using a programmable logic controller

机译:使用可编程逻辑控制器的农村微水力系统的电负载控制器

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Micro-hydroelectric systems convert the energy of moving water into electric energy. In rural settings, micro hydroelectric systems are run at full power at all times to avoid the cost of expensive electromechanical controls. That in turn causes the generator to produce its maximum rated power. If the electric energy supply and demand are not matching, the generator eventually fails. Electronic load controllers have been proposed in the literature to better match the demand and supply. In this paper, an electrical load controller is implemented using a programmable logic controller (PLC). PLCs are used in industrial applications and can withstand high levels of dust, dirt and moisture making them very suitable for micro-hydroelectric applications. The proposed controller monitors the frequency of the generator. It will dynamically balance the system power by incrementing or decrementing the power rating of a resistive heating load. The controller was experimentally tested in a lab using a micro-hydroelectric emulator. The emulator includes a 13.8 kW generator, a 10 Hp motor, a motor drive and the PLC controller. The results showed that the PLC controller is a viable load control system for such an application.
机译:微水力系统将移动水的能量转换为电能。在农村环境中,微水力系统始终运行全功率,以避免昂贵的机电控制的成本。反过来导致发电机产生其最大额定功率。如果电能供应和需求不匹配,则发电机最终失败。在文献中提出了电子负荷控制器,以更好地满足需求和供应。在本文中,使用可编程逻辑控制器(PLC)实现电负载控制器。 PLC用于工业应用,可承受高水平的灰尘,污垢和水分,使其非常适合微水力学应用。所提出的控制器监视发电机的频率。它将通过递增或递减电阻加热负载的功率等级来动态平衡系统功率。控制器在使用微水力电仿真器的实验室进行实验测试。仿真器包括13.8 kW发电机,10 HP电动机,电动机驱动器和PLC控制器。结果表明,PLC控制器是用于这种应用的可行负载控制系统。

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