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Design and performance analysis of PV grid-tied system with energy storage system

机译:储能系统光伏电网系系统的设计与性能分析

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With the increasing demand for solar energy as a renewable source has brought up new challenges in the field of energy. However, one of the main advantages of photovoltaic (PV) power generation technology is that it can be directly connected to the grid power generation system and meet the demand of increasing energy consumption. Large-scale PV grid-connected power generation system put forward new challenges on the stability and control of the power grid and the grid-tied photovoltaic system with an energy storage system. To overcome these problems, the PV grid-tied system consisted of 8 kW PV array with energy storage system is designed, and in this system, the battery components can be coupled with the power grid by AC or DC mode. In addition, the feasibility and flexibility of the maximum power point tracking (MPPT) charge controller are verified through the dynamic model built in the residential solar PV system. Through the feasibility verification of the model control mode and the strategy control, the grid-connected PV system combined with reserve battery storage can effectively improve the stability of the system and reduce the cost of power generation. To analyze the performance of the grid-tied system, some real-time simulations are performed with the help of the system advisor model (SAM) that ensures the satisfactory working of the designed PV grid-tied System.
机译:随着可再生源对太阳能日益增长的需求,在能源领域造成了新的挑战。然而,光伏(PV)发电技术的主要优点之一是它可以直接连接到电网发电系统并满足越来越多的能耗的需求。大型光伏电网连接发电系统对电网的稳定性和控制提出了新的挑战,具有储能系统的电网和电网捆的光伏系统。为了克服这些问题,PV网格绑定系统由8千瓦PV阵列组成,具有储能系统,在该系统中,电池组件可以通过AC或DC模式与电网连接。此外,通过住宅太阳能光伏系统内置的动态模型来验证最大功率点跟踪(MPPT)充电控制器的可行性和灵活性。通过模型控制模式的可行性验证和策略控制,网格连接的光伏系统与储备电池存储器相结合,可以有效地提高系统的稳定性并降低发电成本。为了分析网格绑定系统的性能,在系统顾问模型(SAM)的帮助下执行一些实时仿真,确保设计的PV网格系列的令人满意的工作。

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