Performance Evaluation of an Advanced Distributed Energy Resource Management Algorithm

Jing Wang, Jeffery Simpson, Rui Yang, B. Palmintier, Soumya Tiwari, Y. Zhang
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引用次数: 1

Abstract

This paper presents performance evaluation of a new distributed energy resource management system (DERMS) algorithm via an advanced hardware-in-the-loop (HIL) platform. The HIL platform provides realistic testing in a laboratory environment, including the accurate modeling of sub-transmission and distribution networks, the DERMS software controller, and 84 power hardware solar photovoltaic (PV) inverters, standard communication protocols, and a capacitor bank controller. The DERMS algorithm is also called, Grid-Optimization of Solar (GO-Solar) platform which includes predictive state estimation (PSE) and online multiple objective optimization (OMOO) to dispatch the legacy devices and distributed energy resources (e.g., PV). The voltage regulation performance is evaluated under three scenarios, volt-var smart inverter (baseline), and DERMS control for 100% and 30% of PV. The results show that controlling 30% of PV systems with the GO-Solar platform may provide the best balance of control performance and implementation cost.
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一种先进的分布式能源管理算法的性能评价
本文通过先进的半实物(HIL)平台对分布式能源管理系统(DERMS)的一种新算法进行了性能评估。HIL平台在实验室环境中提供了真实的测试,包括子输配电网络的精确建模、DERMS软件控制器、84个电力硬件太阳能光伏(PV)逆变器、标准通信协议和电容器组控制器。DERMS算法也被称为太阳能电网优化(GO-Solar)平台,它包括预测状态估计(PSE)和在线多目标优化(OMOO),以调度遗留设备和分布式能源(例如PV)。电压调节性能在三种情况下进行评估,电压-无智能逆变器(基线)和100%和30%光伏的DERMS控制。结果表明,使用GO-Solar平台控制30%的光伏系统可以实现控制性能和实施成本的最佳平衡。
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