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Wake management based life enhancement of battery energy storage system for hybrid wind farms

机译:基于唤醒管理的杂交风电场电池储能系统的寿命增强

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One way of setting up hybrid wind farms is through augmentation of turbines with battery energy storage systems (BESS). Due to variation in wind speed in such wind farms, the cost of BESS increases and reduction in battery life takes place. This paper proposes a wake management technique to reduce the operational cost of a hybrid wind farm equipped with BESS. The battery charging and discharging powers are ascertained considering error in the wind speed prediction. This investigation considers three different conditions for a wind farm, namely, (i) without wake (ii) without wake management and (iii) with wake management. An ageing model is utilized for the lead-acid battery while accounting for temperature and depth of discharge changes to assess the battery operational cost and lifecycle count. Simulation analysis for a two-turbine layout with the upstream turbine yawed from 0 degrees to 5 degrees, presents a 44.37% savings in operational cost and 79.74% increase in battery life evaluated for a dataset obtained from Challicum hills in Australia. Additionally, the battery operational cost is minimized at a yaw angle of 15 degrees. Uncertainty analysis is done to study the effect of prediction technique on the lifecycle count. The proposed methodology is extended to a 5-turbine layout where along with lifecycle count and operational cost, the horizontal shear on the turbine blades is also analyzed.
机译:建立混合风电场的一种方法是通过增强电池储能系统(贝塞)的涡轮机。由于这种风电场的风速变化,沸腾的成本增加了,电池寿命的降低。本文提出了一种唤醒管理技术,以减少配备贝尔斯的混合动力电池的运营成本。考虑风速预测中的误差,确定电池充电和放电功率。该调查考虑了风电场的三个不同条件,即(i)没有唤醒管理的唤醒(ii)和(iii),并唤醒管理。用于铅酸电池的老化模型,同时占用温度和放电深度的变化,以评估电池运营成本和生命周期数。使用0度到5度的上游涡轮机的双轮机布局的仿真分析,可节省44.37%的运营成本,电池寿命增加79.74%,为澳大利亚挑战群岛的数据集评估。另外,电池运行成本以15度的横摆角最小化。采取不确定性分析来研究预测技术对生命周期数的影响。所提出的方法延伸到5涡轮机布局,其中包括生命周期计数和操作成本,还分析了涡轮叶片上的水平剪切。

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