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Evaluation of loss effect on optimum operation of variable speed micro-hydropower energy conversion systems

机译:损耗对变速微水电能量转换系统最佳运行的影响评估

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This paper evaluates the effect of converter and generator losses on the maximum power point (MPP) of variable speed micro-hydropower energy conversion systems. As a case study, a semi-Kaplan micro hydropower turbine with a permanent magnet (PM) generator and a back-to-back full converter is considered. Using the analytical model, different loss terms, such as converter losses, PM generator losses and mechanical losses are calculated at different shaft speeds. Then, the curves of turbine power and injected power to the grid are extracted as a function of turbine speed. It is shown that the maximum attainable power of the variable-speed hydropower system does not correspond to the MPP of hydraulic turbine. In other words, to get the maximum power from the whole hydropower system, it is necessary to consider power losses of the electric generator and power electronic interface between the turbine and the grid. These power losses can change the power-speed characteristics or MPP location of the hydropower system. According to this fact, the conventional MPP tracking (MPPT) algorithms which try to track the MPP of hydraulic turbines fail to extract the maximum power. Hence, a modified perturb and observe (P&O) MPP tracking algorithm is proposed for the variable speed hydropower systems to increase their efficiency. The modified tracking algorithm finds the "optimum MPP" automatically and without the extra calculations. Also, the injected power to the grid is increased 3.7% when the modified algorithm is applied to the studied case study. Finally, the validity of theoretical claims is verified by experimental tests on a 5 kW hardware prototype. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文评估了变流器和发电机损耗对变速微水电能量转换系统的最大功率点(MPP)的影响。作为案例研究,考虑了带有永久磁铁(PM)发电机和背靠背全变流器的半卡普兰微型水力涡轮机。使用分析模型,可以在不同的轴转速下计算出不同的损耗项,例如转换器损耗,永磁发电机损耗和机械损耗。然后,提取涡轮功率和向电网注入的功率的曲线,作为涡轮速度的函数。结果表明,变速水电系统的最大可达到功率与水轮机的MPP不对应。换句话说,为了从整个水力发电系统获得最大功率,有必要考虑发电机的功率损耗以及涡轮机和电网之间的功率电子接口。这些功率损耗会改变水力发电系统的功率速度特性或MPP位置。根据这一事实,试图跟踪水轮机的MPP的常规MPP跟踪(MPPT)算法无法提取最大功率。因此,针对变速水电系统提出了一种改进的扰动观测MPP跟踪算法,以提高其效率。修改后的跟踪算法会自动找到“最佳MPP”,而无需进行额外的计算。此外,当将改进算法应用于研究案例研究时,向电网的注入功率将增加3.7%。最后,通过在5 kW硬件原型上进行的实验测试,验证了理论主张的有效性。 (C)2018 Elsevier Ltd.保留所有权利。

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