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Cause-Effect Modeling and Spatial-Temporal Simulation of Power Distribution Fault Events

机译:配电故障事件的因果建模和时空仿真

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Modeling and simulation are important tools in the study of power distribution faults due to the limited amount of actual data and the high cost of experimentation. Although a number of software packages are available to simulate the electrical signals, approaches for simulating fault events in different environments have not been well developed. In this paper, we propose a framework for modeling and simulating fault events in power distribution systems based on environmental factors and the cause-effect relationships among them. The spatial and temporal aspects of significant environmental factors leading to various faults are modeled as raster maps and probability functions, respectively. The cause-effect relationships are expressed as fuzzy rules and a hierarchical fuzzy inference system is built to infer the probability of faults in the simulated environments. A test case simulating a part of a typical city's power distribution systems demonstrates the effectiveness of the framework in generating realistic distribution faults. This work is helpful in fault diagnosis for different local systems and provides a configurable data source to other researchers and engineers in similar areas as well.
机译:由于有限的实际数据和高昂的实验成本,建模和仿真是研究配电故障的重要工具。尽管可以使用许多软件包来模拟电信号,但是在不同环境中模拟故障事件的方法还没有得到很好的开发。在本文中,我们提出了一个基于环境因素及其因果关系对配电系统中的故障事件进行建模和仿真的框架。导致各种故障的重要环境因素的空间和时间方面分别建模为栅格图和概率函数。因果关系表示为模糊规则,并建立了层次模糊推理系统来推断模拟环境中的故障​​概率。一个模拟典型城市配电系统一部分的测试案例证明了该框架在产生实际配电故障中的有效性。这项工作有助于不同本地系统的故障诊断,并且也为类似领域的其他研究人员和工程师提供了可配置的数据源。

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