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The Case for Integration of Renewables in Rail Freight Yards in South Africa

机译:南非铁路货码中可再生能源集成的案例

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The mission of improving technology and environment using renewable energy-based microgrid applications are developing interest globally because of their reliability and efficiency in supplying power for grid-tied and off-grid modes. South African rail freight industry is still lagging behind with regard to renewable energy technologies within its rail freight yards. However, as part of the 4th industrial revolution, more renewable energy smart grids and energy costs saving technologies in rail freight yards should be prioritized in order to ensure contingency and to reduce energy expenses and greenhouse gas emissions. In view of the above, the aim of this paper is to investigate the possible and most efficient method of supplying electricity from renewable energy hybrid system to Salkor rail freight yard in Saldanha bay. The hybrid-microgrid designed using solar PV and wind turbine as distributed energy generation will act as the first method of electricity supply for the rail yard. Lithium-ion batteries will provide the energy storage system. The system will be grid-tied with the planned power-saving schedules using an energy management system. A feasibility was performed where an electrical generator was included as part of the hybrid microgrid system in order to examine the viability of the microgrid system. The calculations of energy balances and the determination of the feasibility of the configuration as well as the estimation of installation and operating costs of the microgrid system for a period of 20 years was done using HOMER Energy software.
机译:使用可再生能源的微电网应用改进技术和环境的使命是在全球范围内开发利益,因为它们的可靠性和效率提供了用于电网连接和离网模式的电力。南非铁路货运业仍然落后于其铁路运费中的可再生能源技术。但是,作为4的一部分 th 应优先考虑工业革命,更可再生能源智能电网和能源成本节省铁路货架中的技术,以确保应急和减少能源费用和温室气体排放。鉴于上述情况,本文的目的是探讨从可再生能源混合系统向萨尔达沙湾提供从可再生能源混合系统的电力提供电力的最有效的方法。使用太阳能光伏和风力涡轮机设计的混合微电池作为分布能量产生将充当铁路院子的第一种电力供应方法。锂离子电池将提供储能系统。系统将使用能量管理系统与计划的节电时间表进行网格。在包括作为混合微电网系统的一部分的情况下包括发电机的可行性,以检查微电网系统的可行性。使用HOMER能量软件完成了能量余额的计算和配​​置的可行性以及微电网系统的安装和运营成本的估计,是使用HOMER能量软件完成20年的时间。

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