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Development of an integrated platform for hardware-in-the-loop evaluation of microgrids prior to site commissioning

机译:在现场调试之前开发用于微电网的循环硬件评估的集成平台

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摘要

This paper presents an integrated hardware-in-the-loop (HIL) platform for testing the operation and control of a real-world microgrid system prior to site commissioning. The proposed testing approach shows the value of setting up an integrated HIL platform to test multiple hardware devices (including the system-level controller, device controllers, and field devices). A test bed developed for the Borrego Springs community microgrid is used as an example to demonstrate the feasibility of the integrated platform. Comprehensive tests are carried out using the Borrego Springs test bed to validate the platform, meet the test objectives, and gain valuable insight prior to site commissioning. The selected test scenarios, initial conditions, events, test metrics, etc., are similar to those defined in IEEE P2030.8. The test objectives are to evaluate the microgrid controller and the operation of the microgrid. The HIL platform presented in this paper shows good value for microgrid testing in terms of its flexibility and scalability for testing various microgrids; its accuracy in its representation of the field; the comprehensiveness of the testing capability; and the efficiency of testing, which can reduce risks prior to field deployment.
机译:本文介绍了一个集成的硬件内(HIL)平台,用于测试现场调试之前的现实世界微电网系统的操作和控制。所提出的测试方法显示了设置集成的HIL平台来测试多个硬件设备(包括系统级控制器,设备控制器和现场设备)的值。为Borrego Springs社区微电网开发的测试床被用作示例以证明集成平台的可行性。通过Borrego Springs试验台进行综合测试来验证平台,符合测试目标,并在现场调试之前获得有价值的洞察力。所选的测试场景,初始条件,事件,测试指标等类似于IEEE P2030.8中定义的那些。测试目标是评估微电网控制器和微电网的操作。本文提出的HIL平台在其灵活性和可伸缩性方面显示了微电网测试的良好价值,用于测试各种微电网的可扩展性;其准确性在其现场的代表性;测试能力的全面性;以及测试效率,可以减少现场部署之前的风险。

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