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Multilayer Control for Inverters in Parallel Operation without Intercommunications

机译:无相互通信并联运行的逆变器多层控制

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摘要

In this paper, a multilayer control is proposed for inverters able to operate in parallel without intercommunications. The first control layer is an improved droop method that introduces power proportional terms into the conventional droop scheme, letting both active and reactive power to be shared among the inverters. The second layer is designed to compensate the voltage deviations caused by the mentioned droop control, thus improving the load-voltage regulation of the system. The third layer is a quasi-synchronization control aiming to roughly adjust the angle of the inverter to be close to the common ac bus. This layer ensures that the phase difference of each inverter inside a limited margin with the help of the phase signal sensed from the common ac bus. The principle of operation of the control scheme has been analyzed in detail. A small-signal model has been developed in order to study the system dynamics, which can be used for adjust the main control parameters. A prototype consisted of a two 35 KVA-inverter system has been build and tested in order to verify the feasibility of the proposed approach.
机译:在本文中,提出了一种多层控制,用于能够在不相互通信的情况下并行运行的逆变器。第一控制层是一种改进的下垂方法,该方法将功率比例项引入常规的下垂方案中,从而使有功功率和无功功率在逆变器之间共享。第二层设计用于补偿由上述下降控制引起的电压偏差,从而改善系统的负载电压调节。第三层是准同步控制,旨在粗略地调整逆变器的角度,使其接近公共交流母线。该层借助从公共交流总线感应到的相位信号,确保每个逆变器的相位差在有限的余量内。已经详细分析了控制方案的操作原理。为了研究系统动力学,已经开发了一个小信号模型,该模型可用于调整主要控制参数。为了验证所提出方法的可行性,已经构建并测试了由两个35 KVA逆变器系统组成的原型。

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