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Computationally Efficient Finite-Position-Set-Phase-Locked Loop for Sensorless Control of PMSGs in Wind Turbine Applications

机译:用于风力涡轮机应用中PMSG的无传感器控制的计算上高效的有限位置设相锁定环

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Finite-control-set model predictive control (FCS-MPC) techniques have been widely applied for power electronics, and motor drive. Furthermore, the principles of FCS-MPC have been extended to phase-locked loop (PLL), which called finite-position-set PLL (FPS-PLL), for sensorless control of permanent-magnet synchronous generators (PMSGs) in wind turbine applications (WTAs). However, 64 iterations are essential to find the optimal rotor position, i.e., high computational burden. In this article, two computationally efficient (CE) FPS-PLLs are proposed for encoderless control of PMSGs in WTAs. The first CE-FPS-PLL$_1$ reduces the number of iterations to 36 with slightly better accuracy than the FPS-PLL, while the second (novel) CE-FPS-PLL$_2$ calls for only 24 iterations to find the best rotor position with significantly better accuracy than the FPS-PLL. The performance of the proposed CE-FPS-PLLs has been experimentally investigated, and compared with that of the FPS-PLL, and classical PLL using a 14.5-kW PMSG. Furthermore, the robustness of the proposed CE-FPS-PLLs is investigated against variations of the PMSG parameters.
机译:有限控制设定的模型预测控制(FCS-MPC)技术已广泛应用于电力电子设备和电机驱动。此外,FCS-MPC的原理已经扩展到锁相环(PLL),其称为有限位置设定PLL(FPS-PLL),用于风力涡轮机应用中的永磁同步发电机(PMSG)的无传感器控制(WTA)。然而,64个迭代对于找到最佳转子位置,即高计算负担至关重要。在本文中,提出了两个计算效率(CE)FPS-PLL,用于对WTA中的PMSG进行编码控制。第一个CE-FPS-PLL<内联公式XMLNS:MML =“http://www.w3.org/1998/math/mathml”xmlns:xlink =“http://www.w3.org/1999/xlink”> $ _ 1 $ 将迭代次数减少到36,比FPS-PLL略微更好,而第二种(新颖)CE-FPS-PLL<内联公式XMLNS:MML =“http://www.w3.org/1998/math/mathml”xmlns:xlink =“http://www.w3.org/1999/xlink”> $ _ 2 $ 仅拨打24次迭代以找到最佳转子位置,比FPS-PLL明显更好。所提出的CE-FPS-PLLS的性能已经通过实验研究,并与FPS-PLL的比较,以及使用14.5kW PMSG的典型PLL。此外,针对PMSG参数的变化研究了所提出的CE-FPS-PLL的鲁棒性。

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