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A torque-injection-based approach for thermal monitoring of induction machines with direct torque control

机译:基于转矩注入的方法,用于具有直接转矩控制的感应电机的热监控

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This paper proposes a nonintrusive thermal monitoring method for induction machines (IM) with the direct torque control (DTC) scheme. The stator winding temperature is estimated by injecting a small DC current offset into the machine winding. Since DTC strategy does not have explicit current control loops, the primary challenge is how to inject the desired DC current via existing torque and flux loops. This paper derives a quantitative relationship between torque and DC current offset; hence the DC current can be injected by offsetting the feedback torque estimation. Simulation and experimental results demonstrate that this method achieves accurate temperature estimation under various operating conditions. This simple and efficient thermal monitoring technique is nonintrusive because it eliminates the need to use winding temperature sensors, has minimal impacts on the IM's normal operations, and requires no hardware change to existing drive systems.
机译:本文提出了一种采用直接转矩控制(DTC)方案的感应电机非侵入式热监测方法。通过向电机绕组中注入一个小的直流电流偏置来估算定子绕组的温度。由于DTC策略没有明确的电流控制回路,因此主要挑战是如何通过现有的转矩和磁通回路注入所需的直流电流。本文推导了转矩与直流电流偏移之间的定量关系。因此,可以通过补偿反馈转矩估算值来注入直流电流。仿真和实验结果表明,该方法可在各种工作条件下实现准确的温度估算。这种简单而有效的热监控技术是非侵入性的,因为它消除了使用绕组温度传感器的需要,对IM的正常运行影响最小,并且不需要对现有驱动系统进行硬件更改。

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