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A modified direct torque control with fault tolerance

机译:具有容错功能的改进型直接转矩控制

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The use of inverters in induction motor control has reduced classical motor faults, such as broken rotor bars or windings short-circuit, besides improving control performance. The control becomes faster and more precise, reducing peaks in current and torque, so that the motor can have a softer operation. On the other hand, new elements are included in the system and it will be necessary to take into account their faults. These elements are sensors and power electronic devices that since a control point of view are the system sensors and actuators. Fault tolerance tries to maintain the system under control in case a fault appears in the system. If this is not possible, it takes the system to a safe operational point. In this paper a fault-tolerant control for induction motors is designed. Based on a direct torque control, new control strategies have been added in case current sensor and power switch faults are detected. The challenge is to overcome these faults without any physical redundancy of sensors or power switches as other authors propose. With the proposed control, it will be possible to guarantee the motor operation in the whole speed-torque range with one or none current sensors instead of the two usually used, though the performance will be slightly worsened. In case of inverter faults, the operation range will be restricted but the performance with respect to the fault situation is improved.
机译:在感应电动机控制中使用逆变器不仅可以改善控制性能,还可以减少传统的电动机故障,例如转子条断裂或绕组短路。控制变得更快,更精确,减少了电流和转矩的峰值,从而使电动机的运行更柔和。另一方面,新元素包括在系统中,因此有必要考虑到它们的故障。这些元素是传感器和电力电子设备,从控制角度来看,它们是系统传感器和执行器。容错功能试图使系统处于受控状态,以防系统中出现故障。如果无法做到这一点,则将系统带到安全的运行点。本文设计了一种感应电动机的容错控制。基于直接转矩控制,在检测到电流传感器和电源开关故障的情况下,添加了新的控制策略。挑战是要克服这些故障,而没有其他作者提出的传感器或电源开关的任何物理冗余。使用建议的控制,尽管性能会稍有下降,但可以使用一个或一个电流传感器而不是通常使用的两个传感器来保证电动机在整个速度转矩范围内运行。如果逆变器出现故障,则将限制运行范围,但会改善有关故障情况的性能。

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