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Design of multi-energy fields coupling testing system of vertical axis wind power system

机译:垂直轴风电系统多能量场耦合试验系统的设计

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The conversion efficiency of wind energy is the focus of researches and concerns as one of the renewable energy. The present methods of enhancing the conversion efficiency are mostly improving the wind rotor structure, optimizing the generator parameters and energy storage controller and so on. Because the conversion process involves in energy conversion of multi-energy fields such as wind energy, mechanical energy and electrical energy, the coupling effect between them will influence the overall conversion efficiency. In this paper, using system integration analysis technology, a testing system based on multi-energy field coupling (MEFC) of vertical axis wind power system is proposed. When the maximum efficiency of wind rotor is satisfied, it can match to the generator function parameters according to the output performance of wind rotor. The voltage controller can transform the unstable electric power to the battery on the basis of optimizing the parameters such as charging times, charging voltage. Through the communication connection and regulation of the upper computer system (UCS), it can make the coupling parameters configure to an optimal state, and it improves the overall conversion efficiency. This method can test the whole wind turbine (WT) performance systematically and evaluate the design parameters effectively. It not only provides a testing method for system structure design and parameter optimization of wind rotor, generator and voltage controller, but also provides a new testing method for the whole performance optimization of vertical axis wind energy conversion system (WECS).
机译:风能的转换效率是研究和作为可再生能源的一个关注的焦点。提高转换效率的本发明的方法大多是提高风力转子结构,优化发电机参数和能量存储控制器等。由于转换过程涉及在多能量领域例如风能,机械能和电能的能量转换,它们之间的耦合效应将影响整体的转换效率。在本文中,使用的系统集成分析技术的基础上垂直轴风力发电系统的多能量场耦合(MEFC)的测试系统,提出了当风力转子的最大效率被满足时,它可以根据风力转子的输出性能匹配到发生器函数参数。电压控制器可以将不稳定的电力给电池优化参数,诸如充电次数,充电电压的基础上。通过上计算机系统(UCS)的通信连接和调节,它可以使耦合参数配置到最佳状态,并且它提高了整体的转换效率。这种方法可以系统地测试整个风力涡轮机(WT)的性能和有效地评价设计参数。它不仅提供用于系统结构设计和风力转子,发电机和电压控制器的参数优化的测试方法,而且还提供了一种用于垂直轴风能转换系统(WECS)的整体性能优化一个新的测试方法。

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