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基于 PWM 逆变器的电动汽车的改进容错控制方案。

An improved fault-tolerant control scheme for PWM inverter-fed induction motor-based EVs.

机构信息

The Ecole Militaire Polytechnique, 16111 Algiers, Algeria.

出版信息

ISA Trans. 2013 Nov;52(6):862-9. doi: 10.1016/j.isatra.2013.07.004. Epub 2013 Aug 2.

DOI:10.1016/j.isatra.2013.07.004
PMID:23916869
Abstract

This paper proposes an improved fault-tolerant control scheme for PWM inverter-fed induction motor-based electric vehicles. The proposed strategy deals with power switch (IGBTs) failures mitigation within a reconfigurable induction motor control. To increase the vehicle powertrain reliability regarding IGBT open-circuit failures, 4-wire and 4-leg PWM inverter topologies are investigated and their performances discussed in a vehicle context. The proposed fault-tolerant topologies require only minimum hardware modifications to the conventional off-the-shelf six-switch three-phase drive, mitigating the IGBTs failures by specific inverter control. Indeed, the two topologies exploit the induction motor neutral accessibility for fault-tolerant purposes. The 4-wire topology uses then classical hysteresis controllers to account for the IGBT failures. The 4-leg topology, meanwhile, uses a specific 3D space vector PWM to handle vehicle requirements in terms of size (DC bus capacitors) and cost (IGBTs number). Experiments on an induction motor drive and simulations on an electric vehicle are carried-out using a European urban driving cycle to show that the proposed fault-tolerant control approach is effective and provides a simple configuration with high performance in terms of speed and torque responses.

摘要

本文提出了一种改进的 PWM 逆变器供电感应电动机电动汽车容错控制方案。所提出的策略处理可重构感应电动机控制中的功率开关(IGBT)故障缓解。为了提高车辆动力传动系统对 IGBT 开路故障的可靠性,研究了 4 线和 4 腿 PWM 逆变器拓扑结构,并在车辆环境中讨论了它们的性能。所提出的容错拓扑结构仅需对传统现成的六开关三相驱动器进行最小的硬件修改,通过特定的逆变器控制来缓解 IGBT 故障。实际上,这两种拓扑结构利用感应电动机中性点的可访问性来实现容错目的。四线拓扑结构然后使用经典的磁滞控制器来考虑 IGBT 故障。4 腿拓扑结构同时使用特定的 3D 空间矢量 PWM 来满足车辆在尺寸(直流母线电容器)和成本(IGBT 数量)方面的要求。使用欧洲城市驾驶循环在感应电动机驱动器上进行实验,并在电动汽车上进行仿真,以表明所提出的容错控制方法是有效的,并提供了一种简单的配置,具有出色的速度和转矩响应性能。

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