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Energy storage in the western interconnection: Current adoption, trends and modeling challenges

机译:西部互联网络中的储能:当前的采用,趋势和建模挑战

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Electric energy storage (EES) technologies have been identified as fundamental components for enhancing the reliability and resiliency of the bulk electric system (BES). Although, EES resources have demonstrated several reliability benefits via increasing the operational flexibility of the power grid, there is a lack of modeling inputs, tools and policy initiatives that restrict their current deployment. These limitations prevent electricity coordinators to fully evaluate EES impacts on system adequacy and reserves planning. In addition, EES developers, investors and utilities face problems in quantifying EES revenues, and in monetizing EES operational value for its multiple grid services. This inability results in lack of EES investments since it is challenging for many market participants to prove EES economic viability against other competing technologies. This paper summarizes the modeling, policy and technology barriers that hinder deployment of energy storage resources and it includes a discussion of possible solutions to address some of these barriers. Finally, a number of modeling and policy recommendations are provided for consideration as part of modeling of EES for stakeholders engaged in current stakeholder driven WECC planning processes.
机译:电能存储(EES)技术已被确定为增强大容量电力系统(BES)的可靠性和弹性的基本组件。尽管EES资源通过增加电网的操作灵活性已显示出一些可靠性优势,但缺乏建模输入,工具和政策计划,这些都限制了它们的当前部署。这些限制使电力协调员无法全面评估EES对系统充足性和储量规划的影响。此外,EES开发人员,投资者和公用事业公司在量化EES收入以及通过其多个网格服务的EES运营价值货币化方面还面临着问题。这种无能为力导致缺乏EES投资,因为对于许多市场参与者而言,要证明EES相对于其他竞争技术的经济可行性是具有挑战性的。本文总结了阻碍储能资源部署的建模,政策和技术障碍,并讨论了解决其中一些障碍的可能解决方案。最后,作为参与当前利益相关者驱动的WECC规划过程的利益相关者的EES建模的一部分,提供了许多建模和政策建议供参考。

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