THE STUDY OF CONTROL PRINCIPLES OF THE SWITCHED RELUCTANCE PUMPING EQUIPMENT DRIVE WITH CYCLIC LOAD

Q3 Energy
L. Mazurenko, O. Bibik, M. Shykhnenko
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引用次数: 0

Abstract

The electromechanical water supply system of a multi-storey building based on a switched reluctance motor is considered. A simulation model of the hydraulic network and criteria for evaluating the quasi-steady modes effectiveness of pumping equipment are given. A study of a centrifugal pump operational and energy characteristics has been carried out when adjusting its rotational speed to determine the frequencies at which the compliance of the pump pressure and flow with the hydraulic network requirements is ensured. Simulation models of control systems have been developed that provide the switched reluctance motor speeds at levels corresponding to specified flow rates of the hydraulic system pumping equipment, by means the phase voltage pulse-width regulation or the phase current limitation level adjustment. Comprehensive studies and comparative analysis of the switched reluctance centrifugal pump drive control principles were carried out according to the criteria for evaluating energy efficiency when regulating the rotational speed and changing the switching angles. As a result of this study, it was found that both pumping unit drive control principles provide its necessary productivity and are close in efficiency - a slightly higher efficiency can be achieved using the phase voltage pulse-width regulation of the switched reluctance motor with a changing the switching angles. References 10, figures 8.
循环负载下开关磁阻泵送设备驱动控制原理的研究
考虑了基于开关磁阻电机的多层建筑机电给水系统。给出了水力网络的仿真模型和评价抽油设备准稳态模式有效性的准则。在调节离心泵转速以确定确保泵压力和流量符合液压网络要求的频率时,对离心泵的运行和能量特性进行了研究。已经开发了控制系统的仿真模型,其通过相电压脉冲宽度调节或相电流限制水平调节,在与液压系统泵送设备的指定流速相对应的水平上提供开关磁阻电机速度。根据调节转速和改变切换角度时能量效率的评估标准,对开关磁阻离心泵驱动控制原理进行了全面的研究和比较分析。这项研究的结果发现,两种抽油机驱动控制原理都提供了必要的生产力,并且效率接近——通过改变开关角度来调节开关磁阻电机的相电压脉冲宽度,可以实现略高的效率。参考文献10,图8。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Technical Electrodynamics
Technical Electrodynamics Energy-Energy Engineering and Power Technology
CiteScore
1.80
自引率
0.00%
发文量
72
审稿时长
4 weeks
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