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Current-Limiting Droop Control Design of Paralleled AC/DC and DC/DC Converters in DC Micro-Grids

机译:直流微网格中的并联AC / DC和DC / DC转换器的电流限制下垂控制设计

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In this paper, we propose two nonlinear controllers for a three-phase rectifier, and a bidirectional DC/DC boost converter respectively, to ensure voltage regulation, reactive power control and load power sharing with an inherent current-limiting capability, independently from system parameters. In contrast to the traditional approaches that use small-signal modelling, this approach takes into account the nonlinear model of the rectifier by considering the generic dq transformation, and the accurate nonlinear model of the dc/dc bidirectional converter, to demonstrate the boundedness and the current-limiting capability using Lyapunov methods and the input-to-state stability theory. This new method is based on the concept of introducing a bounded dynamic virtual resistance at the input of the rectifier, and a constant virtual resistance with a bounded dynamic virtual controllable voltage for the bidirectional converter that can be both positive and negative leading to a bidirectional power flow. Simulation results of a DC micro-grid consisting of a three-phase rectifier in parallel with a bidirectional dc/dc boost converter feeding a common load are presented to verify the effectiveness of the proposed control strategy.
机译:在本文中,我们分别提出一种用于三相整流器两个非线性控制器,和双向DC / DC升压转换器,以确保电压调节,无功功率控制和负载功率共享具有固有的限流能力,独立地从系统参数。相较于使用小信号建模的传统方法,这种方法考虑了整流器的非线性模型考虑的一般dq变换和DC / DC双向转换器的精确非线性模型,证明有界性和使用李雅普诺夫方法和输入到状态稳定性理论限流能力。这种新方法是基于在所述整流器的输入引入的有界动态虚拟电阻的概念,并且与所述双向转换器的有界动态虚拟可控电压,可以是正的和负导致双向功率恒定虚拟电阻流动。由与双向DC / DC升压转换器供给的公共负载并联的三相整流器的DC微电网的模拟结果被呈现给验证所提出的控制策略的有效性。

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