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Application of electrical variable transmission in wind power generation system

机译:电气变速箱在风力发电系统中的应用

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In the widely applied non-direct driven wind power generation system, a gearbox is connected between the wind turbine and the high speed doubly-fed induction generator (DFIG) so that the system could be smaller and supply power with constant voltage and constant frequency as the wind turbine speed varies. However, the multi-level mechanical gearbox is rather vulnerable and poses many difficulties to maintain. Electrical variable transmission (EVT), an electrical continuous variable gearbox, is a very competitive alternative for vulnerable constant speed-ratio mechanical gearbox. In this paper, the application of EVT in wind power generation system with its unique power conversion characteristics is presented. EVT machine structures and the main principles of the EVT-based wind power generation system are introduced. Unique power conversion characteristics of the EVT-based system are investigated and compared among the conventional DEIG system and direct-driven permanent magnet generator (PMG) system. A controller without maximum power point tracking (MPPT) control to the outer rotor is implemented in Matlab/Simulink and speed sensorless control of the inner rotor is tested. The operational principle and the operation modes are evaluated by computer simulation and system experiments.
机译:在广泛应用的非直接驱动式风力发电系统中,风力涡轮机与高速双馈感应发电机(DFIG)之间连接有齿轮箱,因此该系统可以更小,并以恒定的电压和恒定的频率供电。风力涡轮机的速度会变化。然而,多级机械齿轮箱相当脆弱并且难以维护。电动无级变速箱(EVT)是一种电动无级变速箱,是易损的恒速比机械变速箱的极具竞争力的替代产品。本文介绍了EVT以其独特的功率转换特性在风力发电系统中的应用。介绍了EVT的机器结构和基于EVT的风力发电系统的主要原理。对基于EVT的系统的独特功率转换特性进行了研究,并将其与常规DEIG系统和直接驱动式永磁发电机(PMG)系统进行了比较。在Matlab / Simulink中实现了对外部转子没有最大功率点跟踪(MPPT)控制的控制器,并对内部转子的无速度传感器控制进行了测试。通过计算机仿真和系统实验对工作原理和工作方式进行了评估。

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