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A Transfer-Function-Based Thermal Model Reduction Study for Induction Machine Thermal Overload Protective Relays

机译:基于传递函数的感应电机热过载保护继电器热模型简化研究

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摘要

High-order induction machine thermal models have been widely studied for the analysis of the thermal behavior of induction machines. However, the real-time implementation of such models for the online thermal protection of induction machines is very difficult due to the lack of accurate information on the machines. This paper proposes a novel simplified thermal model of induction machines for thermal overload relays. Instead of using a lumped thermal network, a transfer-function-based approach is proposed for reducing the order of induction machine thermal models. The proposed thermal model requires significantly fewer thermal parameters for the accurate modeling of the thermal behavior of the machine. The proposed thermal model is validated via experimental results on a 7.5-hp open-drip-proof induction machine under various load conditions. The major features of the proposed thermal model are the following: 1) high accuracy of the stator winding temperature estimation, with a root-mean-square error within 3 $^{circ}hbox{C}$; 2) low computational requirement, which reduces the cost of thermal overload relays; and 3) easy implementation since only current sensors are required.
机译:高阶感应电机热模型已经被广泛研究用于分析感应电机的热行为。但是,由于缺少有关电机的准确信息,因此很难实时实现用于感应电机在线热保护的此类模型。本文提出了一种用于热过载继电器的新型感应电机简化热模型。代替使用集总热网络,提出了一种基于传递函数的方法来减少感应电机热模型的阶数。所提出的热模型需要很少的热参数来对机器的热行为进行精确建模。通过在各种负载条件下的7.5 hp防滴漏感应电机上的实验结果验证了所提出的热模型。提出的热模型的主要特征如下:1)高精度的定子绕组温度估计,均方根误差在3 $ ^ {circ} hbox {C} $以内; 2)计算量低,降低了热过载继电器的成本; 3)易于实施,因为仅需要电流传感器。

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