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Online compensation of current sensor gain-faults for safety-relevant IPM-drives

机译:在线补偿与安全相关的IPM驱动器的电流传感器增益故障

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摘要

Detection and compensation of current sensor gain-faults regardless of the operating-point is a crucial aspect for safety-relevant servo-drives. This paper presents and investigates a new direct phase-gain re-balancing methodology, especially suited for interior permanent magnet machine (IPM) drives mostly operating at low speed-ranges including standstill. The proposed model-based approach utilizes high-frequency signal-injection (HFI) to facilitate fast and persistent sensor monitoring for any operating state of the drive. No additional sensing hardware is required. Extraction of the HFI-phase-current response enables detection and immediate compensation of sensor gain-faults. Implementation aspects of the proposed concept are discussed thoroughly. Experimental results are presented to prove and investigate robustness, reliability and fault-tolerant performance.
机译:无论工作点如何,电流传感器增益故障的检测和补偿都是与安全相关的伺服驱动器的关键方面。本文介绍并研究了一种新的直接相位增益重新平衡方法,该方法特别适用于内部永磁电机(IPM)驱动器,该驱动器主要在包括停机在内的低速范围内运行。所提出的基于模型的方法利用高频信号注入(HFI)来促进对驱动器的任何运行状态进行快速且持久的传感器监控。无需其他传感硬件。 HFI相电流响应的提取能够检测并立即补偿传感器增益故障。提出的概念的实现方面将进行全面讨论。实验结果被提出来证明和研究鲁棒性,可靠性和容错性能。

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