Adequacy assessment of future electricity networks

W. Bukhsh, G. Hawker, K. Bell, T. Bedford
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引用次数: 2

Abstract

Liberalisation of electricity markets, changing patterns in the generation and use of electricity and new technologies are some of the factors that result in increased uncertainty about the future operating conditions of our power system. In this context, planning for future investments in power system requires careful selection and assessment of future operating conditions. This paper revisits the notion of power system adequacy and highlights the need for consideration of some factors that have hitherto tended not to be part of a transmission expansion planning process, in particular in respect of the credible range of possible values of system operating conditions and transitions between successive operating states. Firstly, we present some definitions of power system operational regions. Secondly, we present a stochastic optimisation model that measures the adequacy of a transmission network for given future operating conditions. Uncertainties in demand and generation are modelled using a large number of scenarios. The optimisation model identifies the critical future operating conditions needing the special attention of a power system planner. The proposed model is simulated on a 39-bus network, whereby it is shown that this model can identify critical operating conditions that need the attention of a system planner.
未来电网的充分性评估
电力市场的开放、电力生产和使用模式的改变,以及新科技,都是导致香港电力系统未来运作状况增加不确定性的因素。在这种情况下,规划未来电力系统的投资需要仔细选择和评估未来的运行条件。本文重新审视了电力系统充分性的概念,并强调需要考虑一些因素,这些因素迄今为止往往不是输电扩展规划过程的一部分,特别是在系统运行条件和连续运行状态之间的转换的可信值范围方面。首先,给出了电力系统运行区域的定义。其次,我们提出了一个随机优化模型,用于测量给定未来运行条件下输电网络的充分性。需求和发电的不确定性使用大量情景进行建模。优化模型确定了电力系统规划人员需要特别注意的关键未来运行条件。该模型在39总线网络上进行了仿真,结果表明该模型能够识别出需要系统规划人员注意的关键运行条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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