基于等效电路参数,用降相电流曲线估算管道阀门感应电驱动磁场定向控制系统的工程实践

D. Bunkov
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引用次数: 0

摘要

为了支持现代对管道阀门感应电驱动的要求,最有希望的是组织一个面向现场的控制系统,如果没有感应电机等效电路的参数,该系统的设置是极其困难的。本文提出了一种基于等效电路参数,通过降相电流曲线估算管道阀门感应电驱动磁场定向控制系统的设置技术。本研究的主要目的是利用负载架测试感应磁场定向电驱动器的功能,负载架的设置是根据先前通过下降相电流曲线估计的参数进行的。方法。为了达到研究目的,采用了理论研究和实验研究相结合的方法。理论研究方法包括电驱动理论、自动控制系统理论、电机理论。实验研究是使用负载支架进行的,该负载支架在被测感应电机的轴上提供所需的负载水平。结果。提出了基于等效电路参数,采用降相电流曲线估算管道阀门感应电驱动磁场定向控制系统的技术。电流、速度和转矩偏差的相对值是在感应电机轴上的标称负载水平上得到的。验证了该技术在装载架上的适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ENGINEERING PRACTICE OF SETTING A FIELD ORIENTED CONTROL SYSTEM FOR INDUCTION ELECTRIC DRIVE OF PIPELINE VALVES BASED ON EQUIVALENT CIRCUIT PARAMETERS, ESTIMATED BY FALLING PHASE CURRENT CURVE
To support modern requirements for an induction electric drive of pipeline valves, the most promising is the organization of a filed oriented control system, the setting of which is extremely difficult without the parameters of the equivalent circuit of an induction machine. This article provides a technique of setting a field oriented control system for induction electric drive of pipeline valves based on equivalent circuit parameters, estimated by falling phase current curve. The main aim of the research is to test the functioning of an induction filed oriented electric drive using a load stand, the setting of which is made on the basis of parameters previously estimated by falling phase current curve. Methods. To achieve the goal of the research, theoretical and experimental research methods were used. Theoretical research methods include the theory of electric drive, the theory of automatic control systems, the theory of electrical machines. Experimental research were carried out using a load stand that provides the required level of load on the shaft of the tested induction machine. Results. Suggested the technique of setting a field oriented control system for induction electric drive of pipeline valves based on equivalent circuit parameters, estimated by falling phase current curve. Relative values of deviations of current, speed and torque are obtained at the nominal level of load on the shaft of an induction machine. The applicability of the proposed technique using a loading stand was confirmed.
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