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Modeling and control of household-size vertical axis wind turbine and electric power generation system

机译:家用垂直轴风力涡轮机和发电系统的建模与控制

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This paper discusses the design of a low tip-speed ratio, drag type vertical axis wind turbine which is incorporated with permanent magnet synchronous generator with maximum power point tracking (MPPT) strategy of control system to acquire the optimal performance. By using two dimensional large eddy simulations (LES) method as fluid dynamic model, the calculated power coefficient for this multi-blade vertical axis wind turbine may reach 0.34 at tip speed ratio (TSR) ranging from 0.8 to 1.0. Also, with the aids of simulation results, a direct coupled permanent magnet synchronous generator with 64-poles is designed and fabricated to generate 1.5 kW rated power at 90 rpm in 12 m/s wind speed. By changing the shape of magnet and applying approximate-skew method as stepped magnet configuration, the cogging torque and noise level of generator can be minimized. Moreover, MPPT control system with low current harmonic distortion level is designed to transfer energy into power grid with estimated 92% of power efficiency. Consequently, by eliminating gearbox system, low start-up wind speed, low current harmonic distortion and low cogging torque, the proposed of low acoustic/noise level wind turbine generator system can be applied for urban-environmental usage.
机译:本文讨论了低尖端速度比,拖曳式垂直轴风力涡轮机的设计,其与具有最大功率点跟踪(MPPT)控制系统的最大功率点跟踪(MPPT)策略的控制系统进行了最佳性能。通过使用二维大涡模拟(LES)方法作为流体动态模型,该多叶片垂直轴风力涡轮机的计算功率系数可以在0.8至1.0的尖端速比(TSR)下达到0.34。此外,通过仿真结果的辅助辅助,设计具有64杆的直接耦合的永磁同步发电机和制造,以在12米/秒的风速下以90 rpm产生1.5 kW额定功率。通过改变磁体的形状并将近似偏斜方法作为阶梯式磁体构造,可以最小化发电机的齿槽扭矩和噪声水平。此外,具有低电流谐波失真水平的MPPT控制系统,用于将能量传送到电网中,估计功率效率为92%。因此,通过消除齿轮箱系统,低启动风速,低电流谐波失真和低齿槽扭矩,所提出的低声/噪声水平风力涡轮发电机系统可以应用于城市环境使用。

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