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Automatic Control System of Load Bus Reactive Factor

机译:负荷母线反应因素自动控制系统

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摘要

For the purpose of the automatic control system (ACS)error decrease of the power grid load bus power factor angle tangent and the reduction of the reactive demand charge the mathematical model of the load bus was developed. The mathematical model that takes into account the voltage instability was built up of the following elements: a supply transmission line, a synchronous motor, asynchronous load and capacitor bank load. Based on this model and the results of the economic assessment, the ACS of the power grid load bus power factor angle tangent control with the synchronous electric drive was obtained. Different ways of control based on different feedback variables were compared on the steady-state error criterion. It is shown that ACS with a synchronous motor reactive power closed-loop control and compensation asynchronous load active/ reactive power closed-loop control has the lowest error. The ACS reference variable change program was obtained. The efficiency of the system was confirmed by the dynamic characteristics derived from the modeling of the asynchronous load switching. The developed model can be applied at industrial plants with capable synchronous motors. The correct system operation was proved by the testing on the laboratory test bench.
机译:出于自动控制系统(ACS)的目的,减少了电网负载母线功率因数切线的误差并减少了无功需求电荷,建立了负载母线的数学模型。考虑电压不稳定性的数学模型由以下要素构成:电源传输线,同步电动机,异步负载和电容器组负载。基于该模型和经济评价结果,获得了采用同步电驱动的电网负荷母线功率因数角正切控制的ACS。根据稳态误差准则比较了基于不同反馈变量的不同控制方式。结果表明,带有同步电动机无功闭环控制和补偿异步负载有功/无功闭环控制的ACS误差最小。获得了ACS参考变量更改程序。系统的效率由异步负载切换模型的动态特性确定。开发的模型可用于具有同步电动机功能的工业工厂。通过实验室测试台上的测试证明了正确的系统操作。

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