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Hybridisation of battery/flywheel energy storage system to improve ageing of lead-acid batteries in PV-powered applications

机译:电池/飞轮储能系统的杂交,以改善PV供电应用中的铅酸电池老化

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In this paper, the complementary characteristic of battery and flywheel in a PV/battery/flywheel hybrid energy storage system is explored for a solar PV-powered application. The impact of hybridising flywheel storage technologies with battery on the ageing of battery and its economic effectiveness when used with a PV system is presented. The ageing of a lead acid battery is modelled using Schiffer weighted Ah-throughput model while the economic analysis is modelled using total cost of ownership approach. Two scenarios (i.e. PV/Battery and PV/Battery/flywheel) are created to appreciate the complementary characteristics of a hybrid storage system in a PV-powered application. Sensitivity analysis was also carried out to understand the effect of a change in degradation and corrosion limit as well as charging and discharging current on the ageing of a lead acid battery. Some of the key results reveal that a hybrid of Battery/Flywheel presents a lower capital and total cost of ownership compared to battery only when used in a PV powered-combined fishery and poultry farm. The results also show that the life of a lead acid battery can be extended when combined with a flywheel compared to a battery only storage system.
机译:本文探讨了光伏/飞轮混合储能系统中电池和飞轮的互补特性,用于太阳能光伏供电。介绍了杂交飞轮储存技术对电池老化的影响及其与光伏系统使用时的经济效益。使用Schiffer加权AH-吞吐量模型建模铅酸电池的老化,同时使用总体拥有方法的总成本进行建模。创建了两种情况(即PV /电池和PV /电池/飞轮),以欣赏PV供电应用中的混合动力储存系统的互补特性。还进行了敏感性分析,以了解降解和腐蚀极限的变化的影响以及对铅酸电池老化的充电和放电电流。一些关键结果表明,只有在光伏动力合理的渔业和家禽养殖场使用时,电池/飞轮的混合率均呈现较低的资本和总体拥有成本。结果还表明,与仅电池的存储系统相比,可以将铅酸电池的寿命与飞轮结合使用。

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