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Optimum design of high efficiency power conditioning wind energy system

机译:高效功率调节风能系统的优化设计

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This paper introduces a study for the small wind energy conversion system (WECS), which aims to select the optimum design parameters to achieve high performance system. The main features of the studied system are high efficiency, operation at maximum power point tracking (MPPT) and long battery lifetime. The Permanent Magnet Synchronous Generator (PMSG) operates at variable wind speed and it is connected to a full controlled active rectifier. The dc-link voltage is controlled to be fixed by using a storage system through Bi-directional power flow link. As the battery is the most costly part in the small WECS, the controller should have the ability to reduce the battery current ripple, which results in longer life for the battery. It is found here that the designed dc voltage level is the main factor that affects the battery current ripple. Therefore, a full study for choosing the optimum dc voltage level that results in better system performance is provided. A maximum power point tracking control is employed using hysteresis control for the fully controlled active rectifier. The complete system is studied, analyzed and simulated using PSIM to validate the system performance.
机译:本文介绍了对小型风能转换系统(WECS)的研究,旨在选择实现高性能系统的最佳设计参数。研究系统的主要特点是高效率,最大功率点跟踪(MPPT)和长电池寿命的操作。永磁同步发电机(PMSG)以可变风速运行,并且连接到完全控制的有源整流器。通过双向动力流链路使用存储系统来控制DC-Link电压。当电池是小WEC中最昂贵的部分时,控制器应具有减少电池电流纹波的能力,这导致电池的寿命更长。这里发现设计的直流电压电平是影响电池电流波纹的主要因素。因此,提供了一种选择导致更好的系统性能的最佳直流电压电平的完整研究。使用用于完全控制的有源整流器的滞后控制来采用最大功率点跟踪控制。使用PSIM研究,分析和模拟完整系统以验证系统性能。

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