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Bounded droop controller for parallel operation of inverters

机译:有界下垂控制器,用于逆变器并联运行

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摘要

In this paper, the stability of parallel-operated inverters in the sense of boundedness is investigated. At first, the non-linear model of parallelled inverters with a generic linear or non-linear load is obtained by using the generalised dissipative Hamiltonian structure and then the robust droop controller, recently proposed in the literature for parallel operation of inverters, is implemented in a way to produce a bounded control output. The proposed controller is called the bounded droop controller (BDC). It introduces a zero-gain property and can guarantee the boundedness of the closed-loop system solution. Therefore, for the first time, the closed-loop stability in the sense of boundedness is guaranteed for parallelled inverters feeding generic non-linear/linear loads. The controller structure is further improved to increase its robustness with respect to initial conditions, numerical errors or external disturbances while maintaining the stability property. Moreover, the controller is tuned to avoid any possible limit cycles in the voltage dynamics. Real-time simulation results for two single-phase inverters operated in parallel loaded with a non-linear load are presented to verify the effectiveness of the proposed BDC. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文研究了有界意义上的并联逆变器的稳定性。首先,通过使用广义耗散哈密顿结构,获得具有一般线性或非线性负载的并联逆变器的非线性模型,然后在文献中提出了用于逆变器并联运行的鲁棒下垂控制器。一种产生有界控制输出的方法。所提出的控制器称为有界下垂控制器(BDC)。它引入了零增益特性,可以保证闭环系统解决方案的有界性。因此,首次保证了并行逆变器在馈入通用非线性/线性负载时在有界性方面的闭环稳定性。控制器结构得到了进一步改进,以提高其相对于初始条件,数值误差或外部干扰的鲁棒性,同时保持稳定性。此外,调节控制器以避免在电压动态变化中出现任何可能的极限循环。提出了两个并联负载并带有非线性负载的单相逆变器的实时仿真结果,以验证所提出的BDC的有效性。 (C)2015 Elsevier Ltd.保留所有权利。

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