用于长期扩展规划的大型输电网的简化表示

Claude-Alexandra Fezeu, K. Bell, Jiansong Ding, P. Panciatici, Marie-Sophie Debry
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引用次数: 6

摘要

本文讨论了一种简化大型输电网络空间维度表示的新方法的发展,以便能够以实际的方式评估对大容量输电的影响,并易于确定应加强的主要路线。主要的挑战是实现一个令人满意的集群,以交付一些足够小的区域,以便对扩展规划问题进行后续分析,但又不能小到忽略原始系统的关键区域。描述了先前提出的两种特定方法:K-means算法和Dodu的混合整数线性规划方法。它们都有一些缺点,特别是可能推导出两个区域之间的直接接口,而在实际网络中没有对应的接口;或者很难控制区域的数量。因此,本文描述了一种新的混合方法,该方法确保从物理连接的角度来看,所得到的层位圈定具有工程意义,并允许对层位数量进行一定的控制。以英国输电网为例,给出了结果。讨论了简化网络的应用,不仅在长期规划方面,而且在传输收费方面的应用潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simplified representation of a large transmission network for use in long-term expansion planning
This paper concerns the development of a new approach to the simplification of representation of the spatial dimension of a large transmission network in order that the influences on bulk power transfers can be assessed in a practical way and the main routes that should be reinforced readily identified. The main challenge is to achieve a satisfactory clustering to deliver a number of zones that is small enough to make subsequent analysis of the expansion panning problem manageable but not so small as to neglect key regions of the original system. Two particular methods that have previously been proposed are described: a K-means algorithm and Dodu's mixed integer linear programming based approach. Each of them has some disadvantages, in particular that a direct interface between two zones might be derived that has no equivalent on the real network; or that it is difficult to control the number of zones. Hence, this paper describes a new hybrid method that ensures that resulting zonal delineations make engineering sense from the point of view of physical connections and allow some control over the number of zones. Results are presented in respect of the transmission network in Great Britain. Applications of the simplified network are discussed, not only in long-term planning but also in respect of the potential for use in transmission charging.
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