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November 24, 2021IEEE Transactions on Power Electronics21 citations

Signal-Injection Sensorless Control of Synchronous Reluctance Machines for Overload Operation

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AVAnantaram VaratharajanGPGianmario PellegrinoEAEric Armando

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Abstract

Signal-injection sensorless control for low speeds region are usually assisted with compensation techniques to support the heavy load operations beyond rated conditions. For the standardd-axis pulsating voltage injection, this article analyzes the prospect of usingq-axis current-model flux instead of theq-axis current for decoupled position estimation. Through convergence analysis, the feasibility of operation at overload is evaluated for the decoupled scheme against the state-of-art compensation technique and is shown to be a promising candidate for its simplicity and the lack ofpreprocessingof flux-map. All claims are experimentally validated on a 1. 1 kW synchronous reluctance machine test-bench.

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Cite This Study

Varatharajan et al. (2021) studied this question.

synapsesocial.com/papers/6a918a5b34ac07881f6f2f32https://doi.org/10.1109/tpel.2021.3130316
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