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首页> 外文期刊>Electric Power Applications, IET >Design and application of a decoupled rotary-linear switched reluctance motor for concentrated photovoltaic power generation
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Design and application of a decoupled rotary-linear switched reluctance motor for concentrated photovoltaic power generation

机译:集中光伏发电用解耦旋转线性开关磁阻电动机的设计与应用

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摘要

A decoupled two-degree of freedom switched reluctance motor is investigated for a special application in concentrated photovoltaic (CPV) power generation system. Firstly, a new method to adjust the gesture of solar cells by the motor is proposed. Second, the motor is introduced elaborately, including its structure, design and control. Importantly, this motor has been manufactured and initially used by the CPV power generation system. Thirdly, experimental measurements involving force outputs and torque outputs are given. The tracking accuracies in linear and rotary directions can achieve high accuracy in both degree of freedom of 0.3° and 100 μm, respectively, that is utterly needed by CPV. As the results of the tracking upgraded, the power generation output of the new CPV system has been enhanced, validating the effectiveness of the motor and the solar tracking system proposed. This power generation approach can be used in solar energy harvesting in future.
机译:研究了一种解耦的两自由度开关磁阻电动机,该电动机专门用于聚光光伏(CPV)发电系统。首先,提出了一种通过电机来调节太阳能电池姿态的新方法。其次,详细介绍了电动机,包括其结构,设计和控制。重要的是,该电动机已经由CPV发电系统制造并开始使用。第三,给出了涉及力输出和扭矩输出的实验测量。 CPV完全需要在线性和旋转方向上的跟踪精度分别达到0.3°和100μm的两个自由度。随着跟踪结果的升级,新的CPV系统的发电输出得到了增强,从而验证了所提出的电动机和太阳能跟踪系统的有效性。这种发电方法可在将来用于太阳能收集。

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