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Modular hybrid battery storage system for peak-shaving and self-consumption optimization in industrial applications

机译:用于工业应用中的峰值剃刮和自耗优化的模块化混合动力电池储存系统

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The paper presents results developing an innovative power supply system on the basis of a modular, flexibly customizable and cost-effective lithium-ion battery and power converter unit for peak-shaving and load levelling applications in the industrial sector including advanced self-consumption optimization strategies for renewable energies. First, the paper describes a monitoring campaign with high resolution measurements on machine, plant and factory level. Second, technical and economic simulation models for the components (battery, power conversion system and energy management) and the integrated system (including total investment costs, conversion losses, state of charge estimation) are presented. The innovative features of the system are described, including a multi-criteria optimizing energy management based on an adaptive dynamic programming algorithm, battery condition monitoring and a hybrid battery storage approach. Third, results of the optimizing design process are presented. The optimal type and power rating of converters and switches and the optimal system topology are determined and discussed for an application example. Simulation results for three DC-DC and five DC-AC converter topologies and two different energy management concepts are discussed and compared.
机译:本文提出了基于模块化,可灵活的可定制和经济高效的锂离子电池和功率转换器单元开发创新电源系统的结果,用于工业领域的峰剃须和负载调平应用,包括先进的自耗优化策略用于可再生能量。首先,本文介绍了对机器,工厂和工厂水平高分辨率测量的监控运动。第二,提出了组件(电池,电源转换系统和能源管理)和集成系统(包括总投资成本,转换损失,充电状态)的技术和经济仿真模型。描述了系统的创新特征,包括基于自适应动态编程算法,电池状态监测和混合电池存储方法的多标准优化能量管理。第三,提出了优化设计过程的结果。确定和讨论转换器和开关的最佳类型和功率等级和最佳系统拓扑以用于应用示例。探讨了三种DC-DC和五个DC-AC转换器拓扑的仿真结果,并进行了两种不同的能源管理概念。

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