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Grid-Connected Solar PV Plant Surplus Energy Utilization Using Battery Energy Storage System

机译:使用电池储能系统的并网太阳能光伏电站剩余能源利用

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This paper aims to develop a charge & discharge controller for 700kWh/540kW Battery Energy Storage System (BESS) with and its integration with Grid-connected 3MWp Solar PV Plant. The BESS plays its very important role to store surplus solar PV power and to perform functions such as load shifting for the economic benefits of electricity consumers. The BESS Charge Discharge Control Strategy serves the purpose to allow battery charging operation when surplus PV power presents after supplying to the load demand and consistently charging during off-peak hours with lower electricity cost compared of peak hours. Similarly, the control system operates discharging operation when PV power does not meet the load demand while being within the peak hours defined by the electricity provider. The integration of functions of load Shifting of the BESS, together with the Solar PV plant will be able to reduce the campus load consumption from the power grid significantly while being cost-effective. The obtained results based on the proposed control strategy demonstrate that minimum energy cost can be saved from this BESS is $ 14.25/day regardless any weather conditions, $ 81.12/day during high variability day, and $ 53.41/day during clear sky day; with the constraints of not considering maximum demand cost and fit-in tariff.
机译:本文旨在开发一种用于700kWh / 540kW电池储能系统(BESS)的充电和放电控制器,并将其与并网的3MWp太阳能光伏电站集成。 BESS扮演着非常重要的角色,可以存储多余的太阳能光伏发电,并履行诸如转移负荷之类的功能,以实现用电者的经济利益。 BESS充电放电控制策略的目的是在满足负载需求后出现多余的PV电源时,允许电池充电操作,并在非高峰时段持续充电,与高峰时段相比,电费更低。类似地,当PV电力在电力供应商定义的高峰时段内不满足负荷需求时,控制系统将进行放电操作。 BESS负荷转移功能的集成以及太阳能光伏电站将能够显着减少电网的校园负荷消耗,同时又具有成本效益。根据所提出的控制策略获得的结果表明,无论天气如何,通过此BESS可以节省的最低能源成本为14.25美元/天,高可变日为81.12美元/天,晴朗天为53.41 /天。限制条件是不考虑最高需求成本和固定关税。

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