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Current harmonic compensation in symmetrical multiphase machines by resonant controllers in synchronous reference frames—Part 1: Extension to any phase number

机译:在同步参考系中通过谐振控制器在对称多相电机中进行电流谐波补偿,第1部分:扩展到任何相数

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Low-order odd harmonics arise in practical multiphase drives because of the machine and converter nonlinear behavior (e.g., deadtime and saturation). If the windings are distributed, some of the harmonics cause torque ripple, while others cause losses. The latter is aggravated by the small impedance in the no-torque subspaces. The harmonics can be compensated without steady-state error by proportional-integral controllers in multiple synchronous reference frames (SRFs); however, a heavy computational load is required. In three-phase systems, the computational burden of this multiple SRF (MRF) scheme is often avoided by implementing instead resonant controllers (RCs) tuned at the harmonics that are multiples of six in an SRF rotating with the fundamental frequency. A similar structure has been proved to be satisfactory for deadtime compensation in an asymmetrical six-phase machine. Part 1 of this paper extends that harmonic current control strategy to symmetrical machines of any phase number. The optimum frequencies for the SRFs and for the RCs in each plane, so that the total number of RCs is minimized, are assessed. Part 2 studies the computational load and compares it with that of the MRF scheme.
机译:由于电机和转换器的非线性行为(例如死区时间和饱和度),在实际的多相驱动器中会出现低阶奇次谐波。如果绕组是分布的,则某些谐波会引起转矩波动,而另一些则会造成损耗。无扭矩子空间中的小阻抗会加剧后者。谐波可以在多个同步参考帧(SRF)中通过比例积分控制器进行补偿,而不会产生稳态误差。但是,这需要很大的计算量。在三相系统中,通常可以通过在以基本频率旋转的SRF中实现以六倍数的谐波调谐的谐振控制器(RC)来避免这种多重SRF(MRF)方案的计算负担。事实证明,类似的结构对于不对称六相电机的死区时间补偿是令人满意的。本文的第1部分将谐波电流控制策略扩展到任何相数的对称电机。评估每个平面中SRF和RC的最佳频率,以使RC的总数最小化。第2部分研究了计算负荷,并将其与MRF方案进行了比较。

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