基于改进WOA的分布式电源选址定容方法研究

Research on Distributed Power Source Site Selection and Capacity Determination Method Based on Improved WOA

  • 摘要: 随着“双碳”目标的提出,加快了分布式电源等低碳技术的创新。针对目前分布式电源在选址定容中存在的总成本高和计算时间长等问题,建立了以总成本最低(分布式电源投资、分布式电源运维、有功网损、购电、政府补贴和环境收益等)为优化目标的分布式电源选址定容模型。以潮流、节点电压、支路电流、分布式电源(Distributed generation,DG)安装容量、节点安装容量作为模型约束条件,通过三个方面(权重和收敛因子优化、种群信息引导策略优化、黄金正弦策略优化)优化的鲸鱼算法对模型进行求解。通过算例对所提方法的优越性进行验证。结果表明,所提方法与常规方法相比,规划位置容量更加合理,系统购电成本和有功网损成本最低,所提方法规划总成本为771.60万元/年,有助于节能减排,加快“双碳”目标实现。

     

    Abstract: With the proposal of the dual carbon target, innovation in low-carbon technologies such as distributed power generation has been accelerated. Aiming at the problems of high total cost and long computation time in the selection and capacity determination of distributed power sources, a distributed power source selection and capacity determination model is established with the optimization objective of minimizing total cost(distributed power investment, distributed power operation and maintenance, active network loss, power purchase, government subsidies, and environmental benefits, etc.). The model is solved using the whale algorithm optimized from three aspects(weight and convergence factor optimization, population information guidance strategy optimization, and golden sine strategy optimization) with constraints of power flow, node voltage, branch current, DG installation capacity, and node installation capacity. The superiority of the proposed method is verified through numerical examples. The results indicate that, compared with conventional methods, the proposed method is more reasonable in planning location capacity, with the lowest system purchase cost and active power loss cost. The total planning cost of the proposed method is 7.716 million yuan/year, which helps to save energy and reduce emissions, and accelerate the achievement of the dual carbon goals.

     

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