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Dynamic Behavioral Observation in Power Systems Utilizing Real-Time Complexity Computation

机译:利用实时复杂度计算的电力系统动态行为观察

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In this paper, a novel real-time complexity measurement (RCM) through the approximate entropy calculation is put forward to detect the dynamical changes in the power system. These dynamical changes (can be seen as irregularities) are able to drive the system into instability. The detection of these irregularities based on the RCM technique brings a clear understanding of the system interactions when the system undergoes changes in terms of parameters or the topology. Unlike the conventional linear-based tools, which are highly reliant on the model, this technique is independent of the model. In this paper, three solid state transformers (SSTs) in a micro-grid are considered as a test system. The test system is evaluated under different scenarios implying different types of dynamics for each of three SSTs. The performance of the proposed RCM method is verified using a real-time processor coordinated with the test system.
机译:本文提出了一种通过近似熵计算的新型实时复杂度测量(RCM),以检测电力系统的动态变化。这些动态变化(可以看作不规则现象)能够使系统不稳定。当系统经历参数或拓扑方面的更改时,基于RCM技术的这些不规则性的检测可以使您对系统交互产生清晰的了解。与高度依赖模型的常规基于线性的工具不同,该技术独立于模型。本文将微电网中的三个固态变压器(SST)视为测试系统。在不同的场景下对测试系统进行评估,这意味着三个SST的每一个都有不同的动态类型。所提出的RCM方法的性能是通过与测试系统配合使用的实时处理器进行验证的。

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