Proportion optimization of wind and solar power capacity for regional power network

Pai Li, Gaofeng Fan, Weisheng Wang, Yuehui Huang, Lin Zhang
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引用次数: 7

Abstract

Renewable energy curtailment has become a severe problem in some regional power networks of China. To alleviate the curtailment, optimizing the integrated wind and solar power capacities becomes an urgent need. This paper proposes an improved method to optimize the wind and solar power capacity based on the time sequence simulation technology. An optimization model is proposed to maximize the environmental benefit for a regional power network with considering the constraints of system power balance, thermal unit peak load regulation ability, system spinning reserve, power and heating coupling of the co-generation unit and tie-line transmission capacity. To handle the transmission capacity constraint, the regional power network is aggregated for simplicity. The annual wind and solar power time sequences are incorporated as inputs for optimization. By giving a series of scenarios with different proportion of wind and solar energy, the optimal capacities are obtained by comparing the environmental benefit and the curtailment. Case studies are conducted with a provincial power network of China and testing results verify the effectiveness of the proposed method.
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区域电网风电、太阳能发电容量比例优化
可再生能源弃电已成为中国部分区域电网面临的严峻问题。为了缓解弃风,优化风能和太阳能的综合发电能力成为迫切需要。本文提出了一种改进的基于时序仿真技术的风电和太阳能发电容量优化方法。以区域电网环境效益最大化为目标,考虑了系统功率平衡、热电机组调峰能力、系统自旋备用、热电联产机组电热耦合和联络线输电能力约束,建立了区域电网环境效益最大化的优化模型。为了处理传输容量的约束,为了简单起见,将区域电网进行聚合。将风能和太阳能的年度时间序列作为优化的输入。通过给出一系列不同风能和太阳能比例的方案,通过比较环境效益和弃风弃风得出最优容量。以中国某省级电网为例进行了算例分析,测试结果验证了该方法的有效性。
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