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An investigation on speed measurement method of hermetic compressor based on current fluctuation

机译:基于电流波动的密封压缩机速度测量方法研究

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摘要

As an important parameter of hermetic compressor, the speed value has direct effects on the cooling capacity, control performance and power consumption of the refrigeration system. Therefore, modern refrigeration industry has put forward higher requirement for measuring the speed of the compressor. Conventional speed measurement methods are based on shell vibration and discharge pressure fluctuation. However, shell vibration-based methods require more elaborate instrumentation, leading to more complex and expensive procedure, as well as unsatisfied accuracy. Discharge pressure fluctuation-based methods can destruct mechanical structure and influence the state of fluid flow. This paper proposed a measurement method based on slip signal and presented a Hilbert transform-based algorithm to improve the extraction accuracy and real-time measurement, and to reduce the complexity of the measurement system. Compared with the standard measurements generated by the compressor with encode, under the 1 s sampling time, it is possible to reach a maximum error smaller than +/- 1 rpm, which can prove broad application prospect in the refrigeration industry. (C) 2018 Elsevier Ltd and IIR. All rights reserved.
机译:作为密封压缩机的重要参数,速度值对制冷系统的冷却能力,控制性能和功耗具有直接影响。因此,现代化制冷行业提出了测量压缩机速度的更高要求。传统的速度测量方法基于壳体振动和排出压力波动。然而,基于壳的振动方法需要更精细的仪器,导致更复杂和昂贵的程序,以及不满意的准确性。放电压力波动的方法可以破坏机械结构并影响流体流动状态。本文提出了一种基于滑移信号的测量方法,呈现了一种基于Hilbert变换的算法,提高了提取精度和实时测量,并降低了测量系统的复杂性。与压缩机产生的标准测量相比,在1秒采样时间下,可以达到小于+/- 1转/分的最大误差,这可以证明制冷行业的广泛应用前景。 (c)2018年Elsevier Ltd和IIR。版权所有。

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