全讯网433234-全讯网886868.com_百家乐筹码币套装_全讯网菠菜进行曲 (中国)·官方网站

Feasible Region Analysis and Hierarchical Optimization Algorithm for AC Power Flow?

作者:電氣與電子信息學院來源:西華大學發布時間:2023-03-15瀏覽次數:237

報告題目:Feasible Region Analysis and Hierarchical Optimization Algorithm for AC Power Flow

報告人:Prof. Changhong Zhao

報告時間:2023年3月15日(周三)10:00

報告地點:騰訊會議634-327-850

主辦單位:重慶大學、輸配電裝備及系統安全與新技術國家重點實驗室、重慶大學溧陽智慧城市研究院

協辦單位:四川大學、電子科技大學、西南交通大學、成都理工大學、成都中醫藥大學、四川師范大學、西華大學、西南科技大學、西南大學、重慶郵電大學、重慶科技學院


Personal Profile:

Dr. Changhong Zhao is an Assistant Professor with the Department. Of Information Engineering at the Chinese University of Hong Kong (CUHK). He received BE in Automation from Tsinghua University and PhD in Electrical Engineering from Caltech. He spent years on research and development at the US National Renewable Energy Laboratory (NREL). He received the Demetriades Prize for best thesis in renewable energy, the Charles Wilts Prize for outstanding research in EE at Caltech, the Early Career Award from Hong Kong Research Grants Council, and the IEEE Power and Energy Society Prize Paper Award.


Abstract:

The growth of distributed and renewable energy sources in power system is calling for more scalable and responsive operation schemes than before, particularly new methods to analyze and optimize power flows in distribution networks. I will introduce two pieces of work on this topic. In the first work, we develop an optimization framework to approximate the feasible region of renewable power injections under a nonlinear AC power flow model. We first formulate a power injection feasibility problem, which is then relaxed to a convex second-order cone program (SOCP). We utilize the strong duality of SOCP to characterize the SOCP-relaxed feasible region as a convex polytope. Finally, we apply a heuristic method to remove power injections that make the SOCP relaxation inexact and obtain a more accurate approximation of the feasible renewable power injection region. The second work is a hierarchical distributed algorithm to solve a large-scale optimal power flow (OPF)problem. The proposed algorithm exploits the tree structure of a distribution network to significantly reduce the computational burden of the primal-dual gradient method to solve OPF. To reduce the risk of voltage violation caused by the modeling inaccuracy due to power flow linearization, we propose an improved gradient evaluation method that is more accurate with mild impact on computational efficiency.


責編:

編審:

維護:西華大學·網管中心 蜀ICP備05006459號-1

川公網安備 51010602000503號

百家乐官网的各种打法| 百家乐注码技术打法| 做生意门朝哪个方向好| 百家乐官网的玩法和技巧| 百家乐官网视频交友| 一路发娱乐城| 真钱百家乐| 百家乐官网游戏打水方法| 迪威百家乐官网娱乐网| 永利百家乐官网赌场娱乐网规则| 百家乐官网平玩法几副牌| 澳门百家乐官网www.bjbj100.com| 百家乐网上赌局| 百家乐官网美女视频| 云鼎百家乐现金网| 哪里有百家乐代理| 怎么看百家乐的路| 永发娱乐城| 百家乐官网现金网开户平台| 星级百家乐技巧| 美国百家乐官网怎么玩| 钱柜百家乐官网娱乐城| 太阳城百家乐客户端| 百家乐里和的作用| 锦屏县| 网上玩百家乐官网犯法| 太阳城公司| 百家乐官网三路法| 大发888娱乐充值| 百家乐官网网站制作| 博彩百家乐字谜总汇二丹东| V博百家乐官网的玩法技巧和规则| 大发888娱乐场1888| 百家乐官网国际娱乐平台| 赌博拘留几天| 百家乐ag厅投注限额| 百家乐官网7scs娱乐平台| 现金网排名| 大发888游戏平台hplsj| 百家乐看大小路| 百家乐视频游戏帐号|