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Optimizing Storage Siting, Sizing, and Technology Portfolios in Transmission-Constrained Networks

机译:在传输受限的网络中优化存储选址,规模调整和技术组合

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In this paper, we propose a DC optimal power flow (OPF) framework for storage portfolio optimization in transmission-constrained power networks. In particular, this model is designed to investigate two problems: 1) optimizing storage operation and allocation over a network given a fixed technology portfolio and 2) optimizing the storage portfolio (i.e., the size, technology, and network allocation of these resources). We demonstrate this framework using case studies based on the IEEE 14-bus test system with four different storage technologies. Our results show that although certain technologies are generally classified as being suitable for either power or energy services, many technologies can add value to the system by performing both fast-time scale regulation (power) and load-shifting (energy) services. These results suggest that limiting the type of service that a certain technology is compensated for may result in inefficiencies at the system level and under-valuation of storage.
机译:在本文中,我们提出了一种直流最优潮流(OPF)框架,用于在传输受限的电网中优化存储组合。特别是,此模型旨在研究两个问题:1)在给定固定技术组合的情况下优化网络上的存储操作和分配; 2)优化存储组合(即这些资源的大小,技术和网络分配)。我们使用基于IEEE 14总线测试系统的案例研究和四种不同的存储技术来演示此框架。我们的结果表明,尽管通常将某些技术归类为适合于电力或能源服务,但是许多技术可以通过执行快速时间尺度调节(电力)和负载转移(能源)服务来为系统增加价值。这些结果表明,限制某种技术所补偿的服务类型可能会导致系统级效率低下和存储价值低估。

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