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Hardware-in-the-Loop (HIL) Simulations for Smart Grid Impact Studies

机译:智能电网影响研究的硬件在环(HIL)仿真

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摘要

Hardware-in-the-loop (HIL) simulations are increasingly employed in power engineering as more inverter-based generation and smart appliances are connected to the electric grid. HIL techniques allow for the co-simulation of analytical models with actual devices whose complex behavior is computationally inefficient or difficult to model. They also allow for testing the behavior of these devices under adverse conditions that rarely occur in the field but are important to evaluate. This paper provides an overview of how HIL simulations have been used to date and proposes that HIL simulations should play an important role in evaluating new control strategies, especially at the distribution level, that are being proposed to allow for continued affordable and reliable operation of the electric grid. We present a new capability that was developed to evaluate the interactions between residential loads and the smart grid: smart home hardware-in-the-loop. The paper includes results from an HIL experiment that incorporates multiple technologies and controls.
机译:随着越来越多的基于逆变器的发电和智能设备连接到电网,硬件在环(HIL)模拟越来越多地用于电力工程中。 HIL技术允许将分析模型与实际设备进行共同仿真,而实际设备的复杂行为在计算上效率低下或难以建模。它们还允许在不利条件下测试这些设备的性能,这些条件在现场很少发生,但对于评估很重要。本文概述了迄今为止如何使用HIL仿真,并建议HIL仿真应在评估新的控制策略(尤其是在分销级别)中起重要作用,这些策略旨在使HIL仿真能够持续地负担得起且可靠。电网。我们提出了一项新功能,用于评估住宅负载和智能电网之间的相互作用:智能家居硬件在环。本文包括HIL实验的结果,该实验结合了多种技术和控件。

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