Sensorless vector control for hermetic reciprocating compressor

R. Z. Azzolin, R. Vieira, C. C. Gastaldini, H. Grundling
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引用次数: 1

Abstract

This paper presents a sensorless vector control algorithm applied to a hermetic reciprocating compressor of a conventional refrigeration system. The single-phase induction motor of conventional on/off refrigerator is driven in variable speed to improve the thermal performance of the system. A sensorless technique is necessary because the conventional speed sensor cannot be employed in the hermetic compressor. To overcome this drawback, a model reference adaptive-system is used to estimate the mechanical speed of a single-phase induction motor. The electrical parameters of machine are needed to set the speed estimator and to implement a vector control. The classical tests to obtain the electrical parameters are a difficult task in hermetic compressor. Thus, a recursive least-square algorithm is used for parameter identification. The high performance speed control of hermetic compressor is shown and the experimental results are provided and discussed to validate the proposed algorithm.
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闭式往复式压缩机无传感器矢量控制
本文提出了一种应用于传统制冷系统的闭式往复式压缩机的无传感器矢量控制算法。为提高系统的热工性能,采用变频调速方式驱动传统开关式制冷机的单相感应电机。由于传统的速度传感器不能用于密封压缩机,因此必须采用无传感器技术。为了克服这一缺点,采用模型参考自适应系统来估计单相感应电动机的机械速度。需要电机的电气参数来设置速度估计器并实现矢量控制。在密闭式压缩机中,获得电气参数的经典测试是一项困难的任务。因此,采用递归最小二乘算法进行参数辨识。给出了密闭压缩机的高性能速度控制,并给出了实验结果,对算法进行了验证。
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