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Distributed solar battery systems providing primary control reserve

机译:提供主要控制储备的分布式太阳能电池系统

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An increasing number of energy storages will be installed in buildings with photovoltaic systems. However, batteries with only local operation tasks do not exhaust their technical potential. Using the available battery capacity in terms of power and energy to provide ancillary system services is therefore economically reasonable. Providing primary control reserve power in combination with increasing local self-sufficiency has been identified as a promising option for decentralised PV battery systems. Thereby, part of the battery capacity is used to provide grid services and the remaining part for the management and optimisation of local system operation. Provision of self-sufficiency increase is limited, when the battery's state of charge is within certain limits. In this study, it is shown that the simultaneous use of the battery to locally increase self-sufficiency reduces the need for external power sources to correct the storage level. The operational concept, the technical solutions, and a sensitivity analysis are presented. Furthermore, billing and measuring issues as well as the current regulatory framework conditions in Germany are discussed.
机译:越来越多的储能装置将安装在带有光伏系统的建筑物中。但是,仅执行本地操作任务的电池不会耗尽其技术潜力。因此,使用可用的电池容量来提供功率和能量来提供辅助系统服务在经济上是合理的。与分散式光伏电池系统相比,提供初级控制备用电源以及增加本地自给能力已被认为是一种有前途的选择。因此,部分电池容量用于提供电网服务,其余部分用于管理和优化本地系统操作。当电池的充电状态在一定范围内时,提供的自给自足功能将受到限制。在这项研究中,表明同时使用电池以局部提高自给自足性降低了对外部电源校正存储水平的需求。介绍了操作概念,技术解决方案和灵敏度分析。此外,还讨论了计费和衡量问题以及德国当前的监管框架条件。

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