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A class of fast dynamics V/f sensorless AC general drives with PM-RSM as a case study

机译:一类以PM-RSM为例的快速动态V / f无传感器交流通用变频器

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Field oriented (FOC) and direct torque and flux (DTFC) control of AC drives are credited with fast torque response, but, in general purpose sensorless AC drives, the on-line software and hardware control effort and their reliability may seem prohibitive for general applications or, at least for synchronous motors, a starting strategy is necessary. The present paper presents a novel class of V/f sensorless AC general drives with two stabilizing loops-one based on active flux balance and one based on speed error-that provide fast speed dynamics response without steady state error, without speed or current regulators; flux weakening conditions are built in. The exposition of principles is followed by exemplification for IMs, SPMSM, IPMSM, and DC excited SMs and by digital simulations on a PM-RSM (with weak PMs and reasonably high magnetic saliency Ld/Lq>3). Rather promising fast dynamics performance is obtained, in digital simulations for a PM-RSM case study, but more theoretical and then experimental work (which is under way) are needed to fully establish the proposed solutions as practical.
机译:交流驱动器的磁场定向(FOC)和直接转矩与磁通(DTFC)控制被认为具有快速的转矩响应能力,但是,在通用无传感器交流驱动器中,在线软件和硬件控制的努力及其可靠性似乎对常规驱动器来说是令人望而却步的。应用,或者至少对于同步电动机而言,必须采用启动策略。本文提出了一种新型的V / f无传感器交流通用驱动器,它具有两个稳定环,一个基于有源磁通平衡,另一个基于速​​度误差,它们提供了快速的动态响应,而没有稳态误差,没有速度或电流调节器。内置了磁通弱化条件。在原理阐述后,举例说明了IM,SPMSM,IPMSM和DC励磁SM,并在PM-RSM上进行了数字仿真(PM弱且磁凸度Ld / Lq> 3相当高) 。在PM-RSM案例研究的数字仿真中,获得了相当有希望的快速动力学性能,但是需要更多的理论研究和实验工作(正在进行中)才能完全确立建议的解决方案。

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