Reliability of Baseload Electricity Generation from Fossil and Renewable Energy Sources

Aleksa Bisercic, U. Bugaric
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引用次数: 4

Abstract

With expanding environmental and climate change regulatory frameworks, the fossil-based baseload generation is forced to decline, thus making room for more and more generation based on renewable and other carbon-free energy sources. This paper deals with a number of controversial issues and open questions concerning the growing penetration of renewable energy sources into power generation systems, often without due care of the impacts of variable as compared to conventional generation on the reliability of electricity supply. Particular attention is paid to baseload generation, power market design, system operation under extreme weather conditions, energy storage, back-up, and reserve power, as well as to the role of mechanical inertia and reliability of on-site fuel supply, demonstrated on an example of coal excavation and delivery to a power plant.
化石能源和可再生能源基荷发电的可靠性
随着环境和气候变化监管框架的扩大,基于化石燃料的基本负荷发电被迫下降,从而为基于可再生能源和其他无碳能源的越来越多的发电腾出空间。本文讨论了关于可再生能源日益渗透到发电系统中的一些有争议的问题和悬而未决的问题,这些问题往往没有适当考虑到与传统发电相比,可变能源对电力供应可靠性的影响。特别关注基本负荷发电、电力市场设计、极端天气条件下的系统运行、能源储存、备用和备用电力,以及机械惯性的作用和现场燃料供应的可靠性,并以煤的挖掘和输送到电厂为例进行了说明。
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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