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Efficient Solution to Electromagnetic Scattering Problems of Bodies of Revolution by Compressive Sensing 被引量:1
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作者 孔勐 陈明生 +2 位作者 张量 曹欣远 吴先良 《Chinese Physics Letters》 SCIE CAS CSCD 2016年第1期136-139,共4页
Under the theory structure of compressive sensing (CS), an underdetermined equation is deduced for describing the discrete solution of the electromagnetic integral equation of body of revolution (BOR), which will ... Under the theory structure of compressive sensing (CS), an underdetermined equation is deduced for describing the discrete solution of the electromagnetic integral equation of body of revolution (BOR), which will result in a small-scale impedance matrix. In the new linear equation system, the small-scale impedance matrix can be regarded as the measurement matrix in CS, while the excited vector is the measurement of unknown currents. Instead of solving dense full rank matrix equations by the iterative method, with suitable sparse representation, for unknown currents on the surface of BOR, the entire current can be accurately obtained by reconstructed algorithms in CS for small-scale undetermined equations. Numerical results show that the proposed method can greatly improve the computgtional efficiency and can decrease memory consumed. 展开更多
关键词 of in IS on by BOR Efficient Solution to Electromagnetic Scattering problems of Bodies of Revolution by Compressive Sensing
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Application of k-person and k-task maximal efficiency assignment algorithm to water piping repair
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作者 Su-juan ZHENG Xiu-ming YU Li-qing CAO 《Water Science and Engineering》 EI CAS 2009年第2期98-104,共7页
Solving the absent assignment problem of the shortest time limit in a weighted bipartite graph with the minimal weighted k-matching algorithm is unsuitable for situations in which large numbers of problems need to be ... Solving the absent assignment problem of the shortest time limit in a weighted bipartite graph with the minimal weighted k-matching algorithm is unsuitable for situations in which large numbers of problems need to be addressed by large numbers of parties. This paper simplifies the algorithm of searching for the even alternating path that contains a maximal element using the minimal weighted k-matching theorem and intercept graph. A program for solving the maximal efficiency assignment problem was compiled. As a case study, the program was used to solve the assignment problem of water piping repair in the case of a large number of companies and broken pipes, and the validity of the program was verified. 展开更多
关键词 graph theory maximal efficiency assignment problem minimal weighted k-matching algorithm intercept graph even alternating path water piping repair
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Pareto Efficiency of Finite Horizon Switched Linear Quadratic Differential Games 被引量:3
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作者 HUANG Yabing ZHAO Jun 《Journal of Systems Science & Complexity》 SCIE EI CSCD 2018年第1期173-187,共15页
A switched linear quadratic(LQ) differential game over finite-horizon is investigated in this paper. The switching signal is regarded as a non-conventional player, afterwards the definition of Pareto efficiency is e... A switched linear quadratic(LQ) differential game over finite-horizon is investigated in this paper. The switching signal is regarded as a non-conventional player, afterwards the definition of Pareto efficiency is extended to dynamics switching situations to characterize the solutions of this multi-objective problem. Furthermore, the switched differential game is equivalently transformed into a family of parameterized single-objective optimal problems by introducing preference information and auxiliary variables. This transformation reduces the computing complexity such that the Pareto frontier of the switched LQ differential game can be constructed by dynamic programming. Finally, a numerical example is provided to illustrate the effectiveness. 展开更多
关键词 Dynamic optimization linear quadratic problems Pareto efficiency switched differential game
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AN EFFICIENT P-D ALGORITHM FOR SHORTEST PATH PROBLEM
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作者 杨承恩 梁枢里 《Acta Mathematicae Applicatae Sinica》 SCIE CSCD 1997年第2期221-224,共6页
关键词 DRP ISI AN EFFICIENT P-D ALGORITHM FOR SHORTEST PATH problem
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