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Design and validation of a communication and control system for a 20MVA hardware-in-the-loop renewable energy test facility

机译:用于20MVA硬件在环可再生能源测试设施的通信和控制系统的设计和验证

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As the electric grid evolves into the smart grid, the ability to adequately model and test components going on the grid becomes more critical. As such, the role of large scale testbeds capable of testing utility-scale equipment will play an ever increasing role in the development of smart grid technologies. A flexible and robust communication and control system is of paramount importance in the successful operation of such testbeds. This paper describes one approach to control of a large-scale hardware-in-the-loop power system testbed. Clemson University's Duke Energy eGRID is a multi-megawatt electric power laboratory combining real time grid simulation capabilities with a highly configurable, medium voltage three phase experimental grid. Control of this laboratory is achieved through the use of real-time hardware, a custom serial communication protocol, and FPGA-based data acquisition.
机译:随着电网向智能电网的发展,对电网中的组件进行充分建模和测试的能力变得越来越重要。因此,能够测试公用事业规模设备的大型测试平台的作用将在智能电网技术的发展中发挥越来越大的作用。灵活,强大的通信和控制系统对于此类测试平台的成功运行至关重要。本文介绍了一种控制大型硬件在环电源系统测试台的方法。克莱姆森大学(Clemson University)的Duke Energy eGRID是一个多兆瓦的电力实验室,结合了实时电网仿真功能和高度可配置的中压三相实验电网。该实验室的控制通过使用实时硬件,自定义串行通信协议和基于FPGA的数据采集来实现。

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