发明名称 Pressurized water distribution network management
摘要 A computerized method for scalable management optimization of pressurized water distribution networks, comprises receiving a network model representing a pressurized water distribution physical network having water flow variables. The network model is simulated by solving non-linear mathematical equations representing the behavior of the water flow variables. One or more result sets are fed to the non-linear mathematical equations. The non-linear mathematical equations are linearized. Network model optimization requirements are received from a user. The linearized mathematical equations are optimized according to the received network model optimization requirements. A local search starting from the at least one optimized solution is performed using the non-linearized mathematical equations, thereby generating a solution.
申请公布号 US9576081(B2) 申请公布日期 2017.02.21
申请号 US201313905151 申请日期 2013.05.30
申请人 International Business Machines Corporation 发明人 Sambur Michael;Tsitkin Alexey;Wasserkrug Segev;Zadorojniy Alexander
分类号 G06F17/50;E03B1/02 主分类号 G06F17/50
代理机构 代理人
主权项 1. A computerized method for management optimization of pressurized liquid distribution networks performed by a processor, comprising: receiving via a input interface in communication with said processor, a network model representing a real physical pressurized liquid distribution network comprising a plurality of network elements including pipes, tanks, valves, and pumps, said network model having a plurality of liquid flow variables and a plurality of variables describing physical properties of each of said network elements; performing as part of a global optimization phase: simulating, by said processor, said network model by solving a plurality of non-linear mathematical equations representing the behavior of said plurality of liquid flow variables, thereby generating at least one result set comprising at least one result value for each of said plurality of liquid flow variables; feeding said at least one result set to said plurality of non-linear mathematical equations; linearizing, by said processor, said plurality of non-linear mathematical equations; receiving, via said input interface, a plurality of network model optimization requirements from a user; optimizing, by said processor, linearized said plurality of mathematical equations according to received said plurality of network model optimization requirements, thereby generating at least one global optimized solution for linearized said plurality of mathematical equations; performing as part of a local search phase: performing, by said processor, a local search starting from said at least one global optimized solution using a simulator simulating said network model by solving said plurality of non-linear mathematical equations representing the behavior of said plurality of liquid flow variables, thereby generating at least one locally improved solution; wherein said at least one locally improved solution includes desired states of said network elements of said real physical pressurized liquid distribution network.
地址 Armonk NY US