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Grid-Connected Hybrid Wind-Solar Farm Hourly Dispatching with Battery and Supercapacitor Energy Storage

机译:电池和超级电容器储能的并网混合风能太阳能农场每小时调度

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The hybrid utilization of photovoltaic and wind turbine, known as the wind-solar hybrid power system (WSHPS), is one of the most promising renewable energy technologies for satisfying the power load demand, since they have complementary energy generation profiles and reduced capacity for energy storage. This paper demonstrates a successful dispatching scheme of the WSHPS for a one-hour dispatching period for an entire day using battery and supercapacitor hybrid energy storage system (HESS). Frequency management technique is utilized to increase the longevity of the batteries through comprehensively utilizing the high power density property of supercapacitors and the high energy density property of batteries in the HESS scheme. Several control algorithms based on the battery state of charge are developed to achieve accurate estimation of the grid reference power for each one-hour dispatching period that helps to minimize the energy storage cost, in addition to ensuring the energy storage system with sufficient capacity to be available for next-day operation. This study also presents an economic comparison to investigate the impact of using different kinds of energy storage systems for hourly dispatching the power of the WSHPS. The simulation results show that HESS outperforms battery-only or supercapacitor-only operation.
机译:光伏和风力涡轮机的混合利用被称为风光混合动力系统(WSHPS),是满足电力负荷需求的最有前途的可再生能源技术之一,因为它们具有互补的发电方式并降低了发电能力贮存。本文演示了一个成功的WSHPS调度方案,该方案使用电池和超级电容器混合储能系统(HESS),在一整天的一小时调度期内。频率管理技术通过在HESS方案中综合利用超级电容器的高功率密度特性和电池的高能量密度特性来提高电池的使用寿命。开发了几种基于电池充电状态的控制算法,以实现每个一小时调度期的电网参考功率的准确估计,这有助于最大程度地降低能量存储成本,并确保能量存储系统具有足够的容量以供使用。可用于第二天的操作。这项研究还提出了一项经济比较,以调查使用不同类型的储能系统每小时分配WSHPS电力的影响。仿真结果表明,HESS优于仅使用电池或仅使用超级电容器的操作。

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