Total Systems Cost: A Better Metric for Valuing Electricity in Supply Network Planning and Decision-Making

Stephanie Byrom, A. Boston, G. Bongers, P. Dargusch, A. Garnett, N. Bongers
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引用次数: 5

Abstract

Comparing the cost and value of electricity generation technologies is becoming more complex as electricity grids become more diverse. The changing generation mix, along with the need to maintain a competent grid, is resulting in previously acceptable cost comparison metrics being used outside of their limited range of applicability. In particular Levelised Cost of Energy (LCOE), if used to evaluate options for a future, low carbon grid, could result in erroneous and misleading conclusions. Electricity generation facilities do not only provide energy, they also provide an array of additional services which are fundamental to maintaining a permanent and reliable electricity supply across the system, including reserve capacity, and voltage and frequency control. Indeed, some technology options pro- vide these services without generating any energy. These services, corresponding costs and operational implications need to be included in the evaluation of technologies in order to ensure the grids emerge transformed, resilient and genuinely sustainable. Total system cost and its derivative metrics are the most appropriate economic metrics for analysis and decision making in a future for low carbon grid.
总系统成本:在供电网络规划和决策中评估电力的一个更好的度量
随着电网变得更加多样化,比较发电技术的成本和价值变得越来越复杂。不断变化的发电组合,以及维持合格电网的需要,导致以前可接受的成本比较指标在其有限的适用性范围之外被使用。特别是,如果使用平准化能源成本(LCOE)来评估未来低碳电网的选择,可能会导致错误和误导性的结论。发电设施不仅提供能源,而且还提供一系列额外的服务,这些服务是维持整个系统永久可靠电力供应的基础,包括储备容量、电压和频率控制。事实上,一些技术方案在不产生任何能源的情况下提供这些服务。这些服务、相应的成本和运营影响需要纳入技术评估,以确保电网转型、有弹性和真正可持续。系统总成本及其衍生指标是未来低碳电网分析和决策最合适的经济指标。
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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