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求解非光滑燃料费用函数的基于进化规划的机组最优潮流(英文)
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作者 R.Gnanadass narayana prasad padhy +1 位作者 T.G.Palanivelu K.Manivannan 《电力系统自动化》 EI CSCD 北大核心 2004年第5期38-44,共7页
提出求解具有非光滑燃料费用函数的存在爬坡率限制的最优潮流方法。针对两次、阶梯形、联合循环机组的非光滑燃料费用函数,介绍一个基于进化规划的算法。在该算法中,为避免早熟,交叉操作随后代的数目非线性变化。介绍了所提出的进化算... 提出求解具有非光滑燃料费用函数的存在爬坡率限制的最优潮流方法。针对两次、阶梯形、联合循环机组的非光滑燃料费用函数,介绍一个基于进化规划的算法。在该算法中,为避免早熟,交叉操作随后代的数目非线性变化。介绍了所提出的进化算法应用于有线路约束的IEEE 30节点系统和印度62节点系统的情况。以MVA为单位的线路潮流直接采用牛顿-拉夫逊法计算。算例证明所提出的进化算法简单,对求解具有非光滑燃料费用函数的存在很多约束的最优潮流问题有效。 展开更多
关键词 进化规划 最优潮流 非光滑燃料费用函数 爬坡率限制
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Priority-based Residential Demand Response for Alleviating Crowding in Distribution Systems
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作者 Venkateswarlu Gundu Sishaj P.Simon +2 位作者 Vemalaiah Kasi narayana prasad padhy Dheeraj Kumar Khatod 《Journal of Modern Power Systems and Clean Energy》 SCIE EI CSCD 2023年第2期502-510,共9页
The dynamic pricing environment offers flexibility to the consumers to reschedule their switching appliances.Though the dynamic pricing environment results in several benefits to the utilities and consumers,it also po... The dynamic pricing environment offers flexibility to the consumers to reschedule their switching appliances.Though the dynamic pricing environment results in several benefits to the utilities and consumers,it also poses some challenges.The crowding among residential customers is one of such challenges.The scheduling of loads at low-cost intervals causes crowding among residential customers,which leads to a fall in voltage of the distribution system below its prescribed limits.In order to prevent crowding phenomena,this paper proposes a priority-based demand response program for local energy communities.In the program,past contributions made by residential houses and demand are considered as essential parameters while calculating the priority factor.The non-linear programming(NLP)model proposed in this study seeks to reschedule loads at low-cost intervals to alleviate crowding phenomena.Since the NLP model does not guarantee global optima due to its non-convex nature,a second-order cone programming model is proposed,which captures power flow characteristics and guarantees global optimum.The proposed formulation is solved using General Algebraic Modeling System(GAMS)software and is tested on a 12.66 kV IEEE 33-bus distribution system,which demonstrates its applicability and efficacy. 展开更多
关键词 Crowding strategy demand response distribution system General Algebraic Modeling System(GAMS) local energy community second-order cone programming
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