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RLSexample
- Particle swarm optimization has been used to solve many optimization problems since it was proposed by Kennedy and Eberhart in 1995 [4]. After that, they published one book [9] and several papers on this topic [5][7][13][15], one of which did a s
psoalgorithms
- 求解0-1二次规划的粒子群算法 先将离散的0-1变量约束转化成了不光滑方程的约束,再用磨光函数方法对其光滑化。最终,把原来的数学模型转化为可微的非线性规划问题。最后,粒子群优化算法求解-0-1 first discrete particle swarm algorithm for solving 0-1 quadratic programming variable constraint transformed into smooth equations and constraints, it
dsada
- 针对火电厂循环水加酸控制系统存在控制系统对象难以建立、非线性和时变的特性,采用了改进的粒子群优化 算法优化PID参数,使得控制器可在不同环境温度下采用不同的PID参数.实际运行结果表明,该系统能够克服环境温 度带来的干扰,使循环水pH值被控制在给定值范围内.-Water plus acid control system for thermal power plant control system exists object is difficult to establish, nonli
A-PSO-method-with-nonlinear-time-varying-evolutio
- Abstract A particle swarm optimization method with nonlinear time-varying evolution (PSO-NTVE) is employed in designing an optimal PID controller for asymptotic stabilization of a pendubot system. In the PSO-NTVE method, parameters are determ
06675643
- 提高电源的动态响应 非线性和复杂的系统是一个转换器 电力电子的有趣的挑战。摘要介绍了 设计和实现数字PID控制器使用 混沌粒子群优化(复)提振 转换器,提出了自动调优转换器的方法 最优启动响应。当系统启动时,处理器 单元分析了开环启动响应转炉和 在一些迭代使用复准备最佳反应 算法。使用逻辑映射混沌映射序列 增加它的收敛速度和精度。模拟 和实现结果显示提出的效率 方法-Improving dynamic response of DC-DC converters whi
chapter3
- 遗传算法、粒子群算法优化BP神经网络-非线性函数拟合-Genetic algorithm and particle swarm optimization for BP neural network nonlinear function fitting