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Real time test benchmark design for photovoltaic grid connected control systems

机译:光伏并网控制系统的实时测试基准设计

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摘要

This paper presents a dual digital signal processor (DSP) hardware architecture for a grid-connected photovoltaic interface test benchmark, based on a cascade DC/DC converter and DC/AC inverter, with coordinated control algorithms. The control hardware has been designed to test distributed generation (DG) interfaces to be integrated in a hierarchical structure of computational agents, to apply distributed control techniques to the power system management. The proposed dual DSP architecture enables the programming of the control software for the DC/DC converter and the DC/AC inverter in the same processor, to keep the other one for additional operations that are required when there is a high degree of interaction between the DG unit and the rest of the electrical grid components. The hardware architecture has been tested in several real situations such as power factor correction and anti-islanding protection.
机译:本文提出了一种双数字信号处理器(DSP)硬件架构,用于基于串联的DC / DC转换器和DC / AC逆变器以及协调控制算法的并网光伏接口测试基准。控制硬件已设计为测试分布式发电(DG)接口,以将其集成到计算代理的分层结构中,以将分布式控制技术应用于电力系统管理。所提出的双DSP体系结构使得能够在同一处理器中对DC / DC转换器和DC / AC逆变器的控制软件进行编程,以使另一软件在处理器之间存在高度交互时仍需要进行其他操作。 DG单元和其余的电网组件。硬件体系结构已在几种实际情况下进行了测试,例如功率因数校正和防孤岛保护。

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