首页> 外文会议>International Conference on Renewable Power Generation >A NOVEL LINEAR BATTERY ENERGY STORAGE SYSTEM (BESS) LIFE LOSS CALCULATION MODEL FOR BESS-INTEGRATED WIND FARM IN SCHEDULED POWER TRACKING
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A NOVEL LINEAR BATTERY ENERGY STORAGE SYSTEM (BESS) LIFE LOSS CALCULATION MODEL FOR BESS-INTEGRATED WIND FARM IN SCHEDULED POWER TRACKING

机译:预定电源跟踪中BESS-集成风电场的新型线性电池储能系统(BESS)救生计算模型

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Recently, rapid development of battery technology makes it feasible to integrate renewable generations with battery energy storage system (BESS). The consideration of BESS life loss for different BESS application scenarios is economic imperative. In this paper, a novel linear BESS life loss calculation model for BESS-integrated wind farm in scheduled power tracking is proposed. Firstly, based on the life cycle times-depth of discharge (DOD) relation-curve, the BESS life loss coefficient for unit throughput energy with different state of charge (SOC) can be determined from the life cycle times-DOD relation-curve fitting function directly. Secondly, as unidirectional variation of SOC in a single time step, the BESS life loss can be calculated through integration of the life loss coefficient-SOC relation function. A linear BESS life loss calculation model is established through self-optimal piecewise linearization of the primitive function of the life loss coefficient-SOC relation function. Thirdly, the proposed life loss calculation model is incorporated in the BESS-integrated wind farm scheduled power tracking optimization. Case studies demonstrate that with the proposed method, the BESS life loss item can be incorporated in the optimization model effectively, and the scheduled power tracking cost of the BESS-integrated wind farm can be determined and optimized more comprehensively.
机译:最近,电池技术的快速发展使得与电池储能系统(BESS)集成可再生代。对不同BESS应用场景的肥硕寿命损失的考虑是经济的势在必行。本文提出了一种用于平衡电源跟踪中泊尔集成风电场的新型线性寿命损失计算模型。首先,基于排出的生命周期时间(DOD)关系曲线,可以从寿命周期 - 国防部关系曲线配件确定具有不同充电状态(SOC)的单位吞吐量能量的BESS寿命损失系数直接函数。其次,在单个时间步骤中,作为SoC的单向变化,可以通过集成寿命损失系数-SOC关系功能来计算抵抗寿命损失。通过寿命损失系数 - SOC关系功能的原始函数的自最优分段线性化建立线性寿命损失计算模型。第三,所提出的救命计算模型被纳入了BESS-集成的风电场预定电力跟踪优化。案例研究表明,利用所提出的方法,可以有效地结合在优化模型中的BESS寿命损失项目,并且可以更全面地确定和优化BESS集成风电场的调度功率跟踪成本。

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