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首页> 外文期刊>IET Cyber-Physical Systems: Theory & Applications >Compartmentalisation-based design automation method for power grid
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Compartmentalisation-based design automation method for power grid

机译:基于分区的电网设计自动化方法

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摘要

Power grid design and maintenance are conducted to solve the problems caused by load growth over time and to stay within the constraints of voltage drop, power factor, etc. Typically, solutions to these problems are optimised individually. Considering multiple problems simultaneously and applying different solutions require vast design space exploration. This exclusively needs advanced algorithms and complex global optimisation methods which are not easily-applicable in different scenarios. In the state-of-the-art methods, for solving multiple problems simultaneously, these individually optimised solutions are applied sequentially to the power grid. In this so-called uncoordinated method, the final solution may not be optimal solution considering all the variables, since it is considering the overlapping effect of the solutions on the power grid. To validate the compartmentalisation method, a detailed distribution grid has been modeled. After analysing the possible solutions and optimisation, power loss was reduced 45% and total cost decreased by 71%, compared to the uncoordinated method.
机译:进行电网设计和维护是为了解决由负载随时间增长引起的问题,并使其保持在电压降,功率因数等的约束范围内。通常,对这些问题的解决方案进行单独优化。同时考虑多个问题并应用不同的解决方案需要大量的设计空间探索。这仅需要高级算法和复杂的全局优化方法,这些方法在不同情况下不容易应用。在最先进的方法中,为了同时解决多个问题,将这些单独优化的解决方案依次应用于电网。在这种所谓的非协调方法中,考虑所有变量的最终解可能不是最优解,因为它正在考虑解对电网的重叠效应。为了验证分隔方法,已对详细的分配网格进行了建模。与不协调的方法相比,在分析了可能的解决方案并进行了优化之后,功耗降低了45%,总成本降低了71%。

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