Operation Method of Power Supply System for Eco-friendly Movable-weir Based on Natural Energy Sources

P. Kwon, Hu-Dong Lee, Dong-Hyun Tae, Ji-Hyun Park, Marito Ferreira, D. Rho
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引用次数: 2

Abstract

Recently, damage caused by drought is becoming worse and worse due to the global climate change. To overcome these problems, movable-weir to control the water level has been installed instead of a fixed-weir made from concrete. On the other hand, it is difficult to operate an existing moveable-weir because of the high cost of facility management and manpower consumption. In addition, because most moveable-weirs are installed in power systems, the operating cost and the cost of connection for power systems increase when they are located in remote areas. Therefore, this paper proposes an optimal design algorithm and the evaluation algorithm of the SOC (state of charge) of a lithium-ion battery to replace an existing power supply with eco-friendly movable-power with a power supply system using PV modules and lithium-ion batteries. In addition, this study modeled a 50kW power supply system of a movable-weir using PSCAD/EMTDC S/W. The simulation results confirmed that the proposed algorithm has stable operation characteristics in an independent operation mode and interconnection operation mode and that there is the possibility of commercialization with a benefits evaluation of the eco-friendly power supply system of a movable-weir.
基于自然能源的生态移动式堰供电系统运行方法
近年来,由于全球气候变化,干旱造成的破坏越来越严重。为了克服这些问题,已经安装了可移动的堰来控制水位,而不是由混凝土制成的固定堰。另一方面,由于设施管理和人力消耗成本高,现有的活动堰难以操作。此外,由于大多数活动堰安装在电力系统中,当它们位于偏远地区时,电力系统的运行成本和连接成本都会增加。因此,本文提出了一种锂离子电池SOC (state of charge)的优化设计算法和评估算法,以光伏组件和锂离子电池组成的供电系统取代现有的环保移动电源。此外,本研究还采用PSCAD/EMTDC S/W对50kW移动式堰供电系统进行了建模。仿真结果表明,该算法在独立运行模式和互联运行模式下均具有稳定的运行特性,具有商业化的可能性,并对生态友好型移动堰供电系统进行了效益评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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