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Consideration on primary control reserve provision by industrial microgrids in grid-coupled operation

机译:并网运行中工业微网对一次控制储备的考虑

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Battery storage systems are able to provide primary control reserve, which is demonstrated by various projects worldwide. The typical utilization profile within this application consists of several thousand cycles with very small depth of discharge. This paper presents an application of a battery storage system within an industrial microgrid that should provide primary control reserve in addition to the original energy management in grid-coupled operation. The goal of this battery multi-purpose application is maximum economic efficiency. For the combined operation a rule based algorithm is presented, which exploits the application specific degrees of freedom in primary control reserve provision under the German regulatory framework. For a correct billing, a clear separation between the primary control provision and other components of the storage power setpoint is necessary. This is ensured by separate measurement and setpoint processing. To compare the different application combinations and system designs a battery lifetime simulation is executed. The simulation results show a 20 % increase revenue to cost ratio compared to the single application.
机译:电池存储系统能够提供主要的控制储备,这在全球范围内的各个项目中得到了证明。此应用程序中的典型利用率曲线由几千个循环组成,放电深度非常小。本文介绍了电池存储系统在工业微电网中的应用,该系统除了提供并网运行中的原始能源管理外,还应提供主要的控制储备。该电池多用途应用的目标是最大的经济效率。对于组合操作,提出了一种基于规则的算法,该算法利用了德国监管框架下主要控制储备提供中特定于应用程序的自由度。为了进行正确的计费,必须在主控制装置和存储功率设定点的其他组件之间进行清晰的区分。这通过单独的测量和设定值处理来确保。为了比较不同的应用组合和系统设计,执行了电池寿命仿真。仿真结果表明,与单个应用程序相比,收入与成本之比提高了20%。

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