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An Open-End Winding BLDC Motor Drive With Fault Diagnosis and Autoreconfiguration

机译:具有故障诊断和自动配置的开放式绕组BLDC电机驱动器

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摘要

This article proposes a dynamically reconfigurable open-end winding brush-less dc motor drive (OEWBLDCMD). In this drive configuration, open-ended motor phase windings are fed with two voltage source inverters from each end, which are powered with separate battery banks. Power semiconductor switching devices, which constitute the dual-inverter system, are susceptible for the development of open-circuit (OC) fault and short-circuit faults (SCFs) on the fly, seriously hampering the reliability of the drive. This article proposes simple algorithms to diagnose both of these faults. In particular, the SCF detection is essentially preemptive in nature, as the acts of detection and the subsequent circuit-reconfiguration are carried out before the SCF can cause overcurrents in healthy switching devices and damage them. The fault diagnosis algorithms employ simple analog circuits and Hall current sensors, making them inexpensive and reliable. This article also presents the strategies for the dynamic reconfiguration of the power circuit, which ensures that the charge residing in the healthy battery bank is utilized even if the associated inverter develops a fault. The effectiveness of the proposed power circuit, fault diagnosis algorithms, and reconfiguration strategies is assessed with simulation studies and is validated experimentally.
机译:本文提出了一种动态可重新配置的开放式绕组刷子 - 更少的直流电机驱动(OEWBLDCMD)。在该驱动配置中,开口的电动机相位绕组用来自每个端的两个电压源逆变器供电,该电压源逆变器由单独的电池组供电。构成双逆变器系统的功率半导体开关装置易于在飞行中开发开路(OC)故障和短路故障(SCFS)的影响,严重妨碍驱动器的可靠性。本文提出了简单的算法来诊断这两种故障。特别地,SCF检测本质上基本上是抢先的,因为在SCF之前进行了检测的动作和随后的电路重新配置,在SCF可能导致健康的开关装置中导致过流并损坏它们。故障诊断算法采用简单的模拟电路和霍尔电流传感器,使它们廉价且可靠。本文还介绍了电源电路的动态重新配置的策略,这确保了即使相关的逆变器发出故障,也能够利用驻留在健康电池组中的电荷。通过模拟研究评估了所提出的电源电路,故障诊断算法和重新配置策略的有效性,并通过实验验证。

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