配电网与综合能源系统(Integrated Energy System,IES)的互联运行是未来配电网重要的发展方向,这将对二者供能的可靠性产生深刻影响。为更加准确地评估配电网可靠性,提出一种计及IES接入影响的配电网可靠性评估方法。文中对IES-配电网...配电网与综合能源系统(Integrated Energy System,IES)的互联运行是未来配电网重要的发展方向,这将对二者供能的可靠性产生深刻影响。为更加准确地评估配电网可靠性,提出一种计及IES接入影响的配电网可靠性评估方法。文中对IES-配电网联合系统建模,分别建立IES和配电网的最优负荷削减模型;然后,采用目标级联法(Analysis Target Cascading,ATC)分布式求解联合系统的最优负荷削减问题,基于马尔科夫链蒙特卡洛,计算IES-配电网联合系统的可靠性指标,在多种运行场景下对改进的IEEE RBTS-BUS6系统进行可靠性评估。算例结果表明,在合理的运行策略下,IES接入后可以大幅改善配电网可靠性,且热电联产机组对配电网可靠性的重要度最高。展开更多
Load distribution is a key technology in hot strip rolling process, which directly influences strip product quality. A multi-objective load distribution model, which takes into account the rolling force margin balance...Load distribution is a key technology in hot strip rolling process, which directly influences strip product quality. A multi-objective load distribution model, which takes into account the rolling force margin balance, roll wear ratio and strip shape control, is presented. To avoid the selection of weight coefficients encountered in single objective optimization, a multi-objective differential evolutionary algorithm, called MaximinDE, is proposed to solve this model. The experimental results based on practical production data indicate that MaximinDE can obtain a good pareto-optimal solution set, which consists of a series of alternative solutions to load distribution. Decision-makers can select a trade-off solution from the pareto-optimal solution set based on their experience or the importance of ob- iectives. In comparison with the empirical load distribution solution, the trade-off solution can achieve a better per- formance, which demonstrates the effectiveness of the multi-objective load distribution optimization. Moreover, the conflicting relationship among different objectives can be also found, which is another advantage of multi-objective load distribution optimization.展开更多
基金Item Sponsored by National Natural Science Foundation of China(50974039)
文摘Load distribution is a key technology in hot strip rolling process, which directly influences strip product quality. A multi-objective load distribution model, which takes into account the rolling force margin balance, roll wear ratio and strip shape control, is presented. To avoid the selection of weight coefficients encountered in single objective optimization, a multi-objective differential evolutionary algorithm, called MaximinDE, is proposed to solve this model. The experimental results based on practical production data indicate that MaximinDE can obtain a good pareto-optimal solution set, which consists of a series of alternative solutions to load distribution. Decision-makers can select a trade-off solution from the pareto-optimal solution set based on their experience or the importance of ob- iectives. In comparison with the empirical load distribution solution, the trade-off solution can achieve a better per- formance, which demonstrates the effectiveness of the multi-objective load distribution optimization. Moreover, the conflicting relationship among different objectives can be also found, which is another advantage of multi-objective load distribution optimization.