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Energy storage system design for large-scale solar PV in Malaysia: technical and environmental assessments

机译:马来西亚大型太阳能光伏储能系统设计:技术和环境评估

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摘要

The Paris agreement, signed in 2015, is a commitment by the nations to set targets to reduce greenhouse gases emissions. In line with that, Malaysia is committed to lower its greenhouse gases emissions by 45% by 2030. This target is supported by the massive projects of Large-Scale Solar PV, of which 1 GW will be operating by 2020. However, the peak generation of this huge capacity, which occurs at noon, will not meet the peak electricity demand which occurs in the morning and in the evening, and this issue, in such scale, has not been addressed yet. Besides the direct use of solar generated electricity, storing electricity at the peak generation time and delivering it at the desired time may be the best usage of such intermittent energy. This project aims to design the optimal large-scale storage system for the Malaysian scenario. A comprehensive power system is simulated through HOMER Pro, including various storage technologies in different locations, selected according to the planned Large-Scale Solar capacity, the solar irradiation and the electricity demand. The power system has been sized according to two approaches. In the first approach, the storage is sized to satisfy the night peak demand, which occurs between 8pm and 10pm. In the second approach, the daily average demand is determined, and the storage is sized to satisfy all the demand above this average. The proposed power system is feasible only in five locations under the first approach, and not feasible in all the locations under the second approach. Based on HOMER Pro simulation outcomes, the best energy storage type is the 1 MWh Zinc Bromide flow battery.
机译:巴黎协定于2015年签署,是各国对设定目标以减少温室气体排放的承诺。为此,马来西亚承诺到2030年将温室气体排放量减少45%。这一目标得到大规模太阳能光伏项目的支持,其中到2020年将运行1吉瓦。这种巨大的容量(发生在中午)将无法满足早晨和晚上出现的峰值用电需求,而且这种规模的问题尚未得到解决。除了直接使用太阳能发电以外,在峰值发电时间存储电能并在所需时间交付电能可能是这种间歇性能源的最佳用途。该项目旨在为马来西亚方案设计最佳的大型存储系统。通过HOMER Pro模拟了一个综合的电源系统,包括根据计划的大规模太阳能容量,太阳辐射和电力需求选择的不同位置的各种存储技术。已根据两种方法确定了电源系统的大小。在第一种方法中,存储的大小可以满足晚上8点至晚上10点之间的夜间高峰需求。在第二种方法中,确定每日平均需求,并确定存储大小以满足高于该平均需求的所有需求。提议的电力系统在第一种方法下仅在五个位置中可行,而在第二种方法下在所有位置均不可行。根据HOMER Pro模拟结果,最好的储能类型是1 MWh溴化锌液流电池。

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