Agent-based control of a DC MicroGrid

D. H. Moore, J. M. Murray, F. Maturana, T. Wendel, K. Loparo
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引用次数: 7

Abstract

A lab-scale hardware DC MicroGrid system has been designed and built as part of a suite of electrical grid simulation environments. It is intended for use as an educational tool and in research as a testbed for control strategy development. The testbed has the capability to rapidly transition between hardware and software simulation of the DC MicroGrid system and consists of three components: Software in the Loop Simulation (SILS), Hardware in the Loop Simulation (HILS), and Hardware. SILS uses a PLC emulator and a Simulink model to simulate the plant and control system. In HILS, the emulator is replaced with an actual hardware controller. In the transition from HILS to hardware, a software switch shifts the PLC I/O from the model to the PLC I/O modules connected to the DC MicroGrid. In tandem with the PLC ladder code, Rockwell Automation's agent-based distributed control software enables the investigation of complex interactions between autonomous decision makers on the grid.
基于agent的直流微电网控制
设计并构建了一个实验室规模的硬件直流微电网系统,作为电网仿真环境套件的一部分。它的目的是作为一种教育工具,并在研究中作为控制策略发展的测试平台。该试验台具有在直流微电网系统的硬件和软件仿真之间快速转换的能力,由三个部分组成:软件在环仿真(SILS)、硬件在环仿真(HILS)和硬件。SILS采用PLC仿真器和Simulink模型对工厂和控制系统进行仿真。在HILS中,仿真器被实际的硬件控制器所取代。在从HILS到硬件的过渡中,软件开关将PLC I/O从模型转移到连接到直流微电网的PLC I/O模块。与PLC梯形代码相结合,罗克韦尔自动化基于代理的分布式控制软件能够对电网中自主决策者之间的复杂交互进行调查。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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