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Practical Application Study for Precision Improvement Plan for Energy Storage Devices Based on Iterative Methods

机译:基于迭代方法的能量存储装置精密改进计划的实用应用研究

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摘要

In the aspect of power grid, attention is being given to conditions of environmental variation along with the need for precise prediction strategies based on control elements in recently designed large-scale distributed generation systems. With respect to distributed generators, an operational prediction system is used to respond to the negative impacts that could be generated. As an active response plan, efforts are being made by system operators to cover fluctuations with utilization of battery-based storage devices. Solar or ocean energy that shares electrical structure with an energy storage system has recently being seen as a combined solution. Although this structure is supported by a state analysis plan, such methods must be performed within the range where the response is possible under consideration of the power requirements of the electronic devices. This paper focuses on an iterative based solution for enhancing response of storage that included in DC generation system, to check its availability in terms of possible calculation load. A previous storage management plan was utilized and tested using a commercially available transient electromagnetic simulation tool that focused on possible delays. Case studies were performed sequentially on the time delays based on utilizable inverter topologies.
机译:在电网的方面,对环境变化的条件涉及环境变化的条件,以及基于最近设计的大型分布生成系统中的控制元件的精确预测策略。关于分布式发电机,操作预测系统用于响应可以生成的负面影响。作为主动响应计划,系统运营商正在努力涵盖利用基于电池的存储设备的波动。利用储能系统共享电气结构的太阳能或海洋能源被视为组合的解决方案。尽管通过状态分析计划支持该结构,但是必须在考虑电子设备的功率要求的响应的范围内执行这些方法。本文侧重于基于迭代的解决方案,以增强DC生成系统中包含的存储响应,以便在可能的计算负载方面检查其可用性。使用以商业上可用的瞬态电磁仿真工具使用并测试以前的存储管理计划,该工具集中于可能的延迟。基于可利用的逆变器拓扑的时间延迟顺序地进行案例研究。

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