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An Algorithm of 0-1 Knapsack Problem Based on Economic Model
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作者 Yingying Tian Jianhui Lv Liang Zheng 《Journal of Applied Mathematics and Physics》 2013年第4期31-35,共5页
In order to optimize the knapsack problem further, this paper proposes an innovative model based on dynamic expectation efficiency, and establishes a new optimization algorithm of 0-1 knapsack problem after analysis a... In order to optimize the knapsack problem further, this paper proposes an innovative model based on dynamic expectation efficiency, and establishes a new optimization algorithm of 0-1 knapsack problem after analysis and research. Through analyzing the study of 30 groups of 0-1 knapsack problem from discrete coefficient of the data, we can find that dynamic expectation model can solve the following two types of knapsack problem. Compared to artificial glowworm swam algorithm, the convergence speed of this algorithm is ten times as fast as that of artificial glowworm swam algorithm, and the storage space of this algorithm is one quarter that of artificial glowworm swam algorithm. To sum up, it can be widely used in practical problems. 展开更多
关键词 0-1 KNAPSACK ECONOMIC Model Optimization algorithm STORAGE SPACE
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An Improved Binary Wolf Pack Algorithm Based on Adaptive Step Length and Improved Update Strategy for 0-1 Knapsack Problems
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作者 Liting Guo Sanyang Liu 《国际计算机前沿大会会议论文集》 2017年第2期105-106,共2页
Binary wolf pack algorithm (BWPA) is a kind of intelligence algorithm which can solve combination optimization problems in discrete spaces.Based on BWPA, an improved binary wolf pack algorithm (AIBWPA) can be proposed... Binary wolf pack algorithm (BWPA) is a kind of intelligence algorithm which can solve combination optimization problems in discrete spaces.Based on BWPA, an improved binary wolf pack algorithm (AIBWPA) can be proposed by adopting adaptive step length and improved update strategy of wolf pack. AIBWPA is applied to 10 classic 0-1 knapsack problems and compared with BWPA, DPSO, which proves that AIBWPA has higher optimization accuracy and better computational robustness. AIBWPA makes the parameters simple, protects the population diversity and enhances the global convergence. 展开更多
关键词 BINARY WOLF PACK algorithm 0-1 knapsack problem ADAPTIVE step length Update strategy
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Weekly Fleet Assignment Model and Algorithm 被引量:1
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作者 朱星辉 朱金福 巩在武 《Journal of Southwest Jiaotong University(English Edition)》 2007年第3期231-235,共5页
A 0-1 integer programming model for weekly fleet assignment was put forward based on linear network and weekly flight scheduling in China. In this model, the objective function is to maximize the total profit of fleet... A 0-1 integer programming model for weekly fleet assignment was put forward based on linear network and weekly flight scheduling in China. In this model, the objective function is to maximize the total profit of fleet assignment, subject to the constraints of coverage, aircraft flow balance, fleet size, aircraft availability, aircraft usage, flight restriction, aircraft seat capacity, and stopover. Then the branch-and-bound algorithm based on special ordered set was applied to solve the model. At last, a real- wofld case study on an airline with 5 fleets, 48 aircrafts and 1 786 flight legs indicated that the profit increase was ¥ 1 591276 one week and the running time was no more than 4 rain, which shows that the model and algorithm are fairly good for domestic airline. 展开更多
关键词 Flight scheduling Fleet assignment problem 0-1 Integer programming model Branch-and-bound algorithm
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A NEW ALGORITHM FOR PURX O-1 LINEAR PROGRAMS WITH INEQUALITY CONSTRAINTS
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作者 CHEN Jianfei(Biochemical Engineering State Key Laboratory,Beijing 100080,China)XIA Shaowei(Department of Automation, Tsinghua University, Beijing 100084,China) 《Systems Science and Mathematical Sciences》 SCIE EI CSCD 1996年第1期50-54,共5页
ANEWALGORITHMFORPURXO-1LINEARPROGRAMSWITHINEQUALITYCONSTRAINTS¥CHENJianfei(BiochemicalEngineeringStateKeyLab... ANEWALGORITHMFORPURXO-1LINEARPROGRAMSWITHINEQUALITYCONSTRAINTS¥CHENJianfei(BiochemicalEngineeringStateKeyLaboratory,Beijing10... 展开更多
关键词 NEURAL network PURE 0-1 linear PROGRAM near-optimal solution SIMPLEX algorithm.
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A class of polynomially solvable 0-1 programming problems and an application
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作者 Wang Miao Xie JinXing Xiong HuaChun 《Science China Mathematics》 SCIE 2011年第3期623-632,共10页
It is well known that general 0-1 programming problems are NP-Complete and their optimal solutions cannot be found with polynomial-time algorithms unless P=NP. In this paper, we identify a specific class of 0-1 progra... It is well known that general 0-1 programming problems are NP-Complete and their optimal solutions cannot be found with polynomial-time algorithms unless P=NP. In this paper, we identify a specific class of 0-1 programming problems that is polynomially solvable, and propose two polynomial-time algorithms to find its optimal solutions. This class of 0-1 programming problems commits to a wide range of real-world industrial applications. We provide an instance of representative in the field of supply chain management. 展开更多
关键词 0-1 programming polynomial-time algorithms supply chain management
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城市轨道交通三维缓冲区构建方法 被引量:1
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作者 张文胜 解骞 +3 位作者 朱冀军 张炳哲 纪强 李见春 《交通运输工程学报》 EI CSCD 北大核心 2015年第2期100-108,共9页
为解决现有地理信息系统无法完成城市轨道交通三维缓冲区构建的难题,采用八叉树作为构建三维缓冲区的基础数据结构,用线性八叉树编码储存轨道交通实体的空间结构信息,将交通三维缓冲区分析转化为八叉树节点的空间分析。研究了八叉树节... 为解决现有地理信息系统无法完成城市轨道交通三维缓冲区构建的难题,采用八叉树作为构建三维缓冲区的基础数据结构,用线性八叉树编码储存轨道交通实体的空间结构信息,将交通三维缓冲区分析转化为八叉树节点的空间分析。研究了八叉树节点的空间关系,得出了一种线性八叉树邻域分析的新算法,即0-1互换算法。运用0-1互换算法找出轨道交通的边界节点,确定边界节点的边界方向,由边界节点构建交通三维缓冲区,形成了一套由线性八叉树构建城市轨道交通三维缓冲区的新方法。运用0-1互换算法对直线隧道、曲线隧道、直线高架桥、曲线高架桥等轨道交通实体模型进行边界节点提取,并与传统算法和经典肖氏算法进行了比较。选择连拱隧道、单拱隧道和高架桥3种结构,分别进行了三维缓冲区构建,统计了3种结构分割的八叉树节点数量,并与采用传统栅格结构进行三维缓冲区分析的栅格节点数量进行对比。分析结果表明:与传统算法和经典肖氏算法相比,0-1互换算法在对直线隧道、曲线隧道、直线高架桥、曲线高架桥4种轨道交通实体模型的边界节点提取中耗时最少,分别为5、7、10、18ms,将算法的时间复杂度由二次阶减少为一次阶;基于线性八叉树的交通三维缓冲区构建方法,对连拱隧道、单拱隧道与高架桥进行三维缓冲区构建时,其存储空间分别为栅格结构的7.26%、3.64%、3.72%。可见,基于线性八叉树结构的交通三维缓冲区构建方法能显著降低分析节点数量,提高交通三维缓冲区的构建效率。 展开更多
关键词 交通地理信息系统 城市轨道交通 三维缓冲区 线性八叉树 空间结构信息 0-1 互换算法
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Dynamic Weapon Target Assignment Based on Intuitionistic Fuzzy Entropy of Discrete Particle Swarm 被引量:18
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作者 Yi Wang Jin Li +1 位作者 Wenlong Huang Tong Wen 《China Communications》 SCIE CSCD 2017年第1期169-179,共11页
Aiming at the problems of convergence-slow and convergence-free of Discrete Particle Swarm Optimization Algorithm(DPSO) in solving large scale or complicated discrete problem, this article proposes Intuitionistic Fuzz... Aiming at the problems of convergence-slow and convergence-free of Discrete Particle Swarm Optimization Algorithm(DPSO) in solving large scale or complicated discrete problem, this article proposes Intuitionistic Fuzzy Entropy of Discrete Particle Swarm Optimization(IFDPSO) and makes it applied to Dynamic Weapon Target Assignment(WTA). First, the strategy of choosing intuitionistic fuzzy parameters of particle swarm is defined, making intuitionistic fuzzy entropy as a basic parameter for measure and velocity mutation. Second, through analyzing the defects of DPSO, an adjusting parameter for balancing two cognition, velocity mutation mechanism and position mutation strategy are designed, and then two sets of improved and derivative algorithms for IFDPSO are put forward, which ensures the IFDPSO possibly search as much as possible sub-optimal positions and its neighborhood and the algorithm ability of searching global optimal value in solving large scale 0-1 knapsack problem is intensified. Third, focusing on the problem of WTA, some parameters including dynamic parameter for shifting firepower and constraints are designed to solve the problems of weapon target assignment. In addition, WTA Optimization Model with time and resource constraints is finally set up, which also intensifies the algorithm ability of searching global and local best value in the solution of WTA problem. Finally, the superiority of IFDPSO is proved by several simulation experiments. Particularly, IFDPSO, IFDPSO1~IFDPSO3 are respectively effective in solving large scale, medium scale or strict constraint problems such as 0-1 knapsack problem and WTA problem. 展开更多
关键词 intuitionistic fuzzy entropy discrete particle swarm optimization algorithm 0-1 knapsack problem weapon target assignment
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