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Design of flux-weakening space vector control algorithms for permanent magnet brushless DC machines on suitable synchronous reference frames

机译:适用于同步参考系的永磁无刷直流电机弱磁空间矢量控制算法设计

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摘要

The design of space vector control (SVC) systems suitable for flux-weakening operation of permanent magnet brushless DC machines (PMBDCMs) is presented in this study. The proposed design approach enables overcoming the critical issues arising from the non-linearities of PMBDCM voltage and torque equations; these issues derive from the trapezoidal shapes of back-emfs and affect PMBDCM constraint management significantly. The SVCs presented in this study have been developed within two different synchronous reference frames, both of which enable distinguishing torque and demagnetising current components clearly. Therefore, reference torque current component is determined in accordance with PMBDCM torque demand, while reference demagnetising current component is computed through a voltage follower PI regulator, which processes the voltage deficit detected on the DC-link. In this regard, a novel synchronous reference frame is proposed in this study, which improves PMBDCM constraint management and results into a wider constant-power speed range, but at the cost of some torque ripple. The enhanced performances achievable by SVC approaches are highlighted by numerical simulations, which regard the comparison among the SVCs and an SVC with no flux-weakening capability, at different operating conditions.
机译:本研究提出了适用于永磁无刷直流电机(PMBDCM)的弱磁化操作的空间矢量控制(SVC)系统的设计。所提出的设计方法可以克服由PMBDCM电压和转矩方程的非线性引起的关键问题。这些问题源自反电动势的梯形形状,并显着影响PMBDCM约束管理。本研究中介绍的SVC是在两个不同的同步参考系中开发的,两者均能够清晰地区分转矩和消磁电流分量。因此,参考扭矩电流分量是根据PMBDCM扭矩需求确定的,而参考消磁电流分量是通过电压跟随器PI调节器计算的,该电压跟随器PI调节器处理在直流母线上检测到的电压不足。在这方面,本研究提出了一种新颖的同步参考系,它改善了PMBDCM约束管理,并产生了一个较宽的恒定功率速度范围,但以一些转矩脉动为代价。数值模拟突出显示了SVC方法可实现的增强性能,数值模拟考虑了在不同工作条件下SVC与不具有弱磁通能力的SVC之间的比较。

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