Sensorless commutation of a two-phase linear machine for marine renewable power generation

A. Ridge, R. McMahon, H. Kelly
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Abstract

A sensorless scheme is presented for a two-phase permanent-magnet linear machine targeted for use in marine wave-power generation. This is a field where system reliability is a key concern. The scheme is able to extract the effective inductance and back-emf of the machine's phases simultaneously from measurements of the current ripple present on the power electronic converter. These measurements can then be used to estimate position. An enhancement to the scheme in the presence of spatially-varying mutual inductance between phases allows more accurate and reliable tracking from inductance-based measurements than would otherwise be expected. This scheme is able to operate at any speed including, critically, when stationary. Experimental results show promise for the scheme, although some work to reduce the level of noise would be desirable.
船用可再生能源发电用两相直线电机无传感器换相
提出了一种用于海洋波浪发电的两相永磁直线电机的无传感器方案。在这个领域,系统可靠性是一个关键问题。该方案能够从电力电子变换器上存在的电流纹波测量中同时提取出机器各相的有效电感和反电动势。这些测量可以用来估计位置。在相位之间存在空间变化互感的情况下,对该方案进行了增强,使得基于电感的测量比预期的更准确和可靠的跟踪。该方案能够在任何速度下运行,关键的是,包括静止时。实验结果显示了该方案的前景,尽管需要做一些降低噪声水平的工作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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