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Control and size energy storage systems for managing energy imbalance of variable generation resources

机译:控制和确定储能系统的大小,以管理可变发电资源的能量不平衡

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This paper presents control algorithms and sizing strategies for using energy storage to manage energy imbalance for variable generation resources. The control objective is to minimize the hourly generation imbalance between the actual and the scheduled generation of wind farms. Three control algorithms are compared: 1) tracking minute-by-minute power imbalance; 2) postcompensation; and 3) precompensation. Measured data from a wind farm are used in the study. The results show that tracking minute-by-minute power imbalance achieves the best performance by keeping hourly energy imbalance zero. However, the energy storage system (ESS) will be significantly oversized. Postcompensation reduces the power rating of the ESS but the hourly energy imbalance may not be reduced to zero when a large and long-lasting power imbalance occurs. A linear regression forecasting algorithm is developed for a two-stage precompensation algorithm to precharge or predischarge the ESS based on the predicted energy imbalance. An equivalent charge cycle estimation method is proposed to evaluate the effect of providing the energy balancing service on battery life. The performance comparison shows that the precompensation method reduces the size of the ESS by 30% with satisfactory performance.
机译:本文提出了利用能量存储来管理可变发电资源的能量不平衡的控制算法和尺寸调整策略。控制目标是使风力发电场的实际发电量与计划发电量之间的小时发电不平衡最小化。比较了三种控制算法:1)跟踪每分钟的功率不平衡; 2)后补偿; 3)预补偿。在研究中使用了来自风电场的测量数据。结果表明,通过保持小时能量不平衡为零,跟踪每分钟的功率不平衡可获得最佳性能。但是,储能系统(ESS)的尺寸将大大增加。后补偿会降低ESS的额定功率,但当出现大而持久的功率不平衡时,每小时的能量不平衡可能不会减少到零。针对两阶段的预补偿算法开发了线性回归预测算法,以便根据预测的能量不平衡对ESS进行预充电或预放电。提出了一种等效的充电周期估计方法,以评估提供能量平衡服务对电池寿命的影响。性能比较表明,预补偿方法将ESS的尺寸减小了30%,性能令人满意。

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