可持续发展的电力工业基础设施:气候变化和能源储存

W. Jewell
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引用次数: 4

摘要

虽然限制温室气体排放的监管结构尚不确定,但限制措施将很快生效。实施这些限制的基础设施需要从发电排放中去除大部分碳的技术,处理去除的碳的技术,监测碳排放的传感系统,以及实施限制的市场或监管结构。适应气候变化需要对现有输配电系统进行升级和容量增加,并增加新系统的容量。增加可再生能源的使用可以减少碳排放。如果有足够的储能系统,风能和太阳能等间歇性可再生能源将被允许进入更高的渗透率。能源存储的基础设施需求是高效且具有成本竞争力的电力存储技术,直流技术和交流电力系统之间的电力电子接口,以及控制和调度存储系统的监控系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electric Industry Infrastructure for Sustainability: Climate Change and Energy Storage
Although the regulatory structure for limiting emission of greenhouse gases is uncertain, limits will be in force soon. Infrastructure needs to implement those limits are technologies to remove most carbon from electric generation emissions, technologies to dispose of the carbon removed, sensing systems to monitor carbon emissions, and market or regulatory structures to implement the limits. Adaptation to climate change will require upgrades and capacity increases in existing transmission and distribution systems, and increased capacity in new systems. Increased use of renewable can reduce carbon emissions. Higher penetrations of intermittent renewable resources, wind and solar, will be allowed if storage is available to allow full dispatch of those generators. Infrastructure needs for energy storage are efficient and cost-competitive technologies to store electricity, power electronic interfaces between those dc technologies and the ac power system, and monitoring and control systems to control and dispatch the storage systems.
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