in this paper,a new method to solve the general constrained optimization problem is proposed,theproblem of finding the local optimal points of the nonlinear programming problem with equality and inequality constraints...in this paper,a new method to solve the general constrained optimization problem is proposed,theproblem of finding the local optimal points of the nonlinear programming problem with equality and inequality constraints is considered by solving the ODE d.e.Ordinary oprential Equation)with aPPropriatenumerical procedure.Moreover,the rate of conveyance to optimal points is quadratic.Some numerical resultis given to show the efficiency of the method proposed in this poper.展开更多
老化、温度变化和局部阴影等引起的电池电气特性不同,使光伏阵列P-U曲线出现多个功率峰值点。大容量光伏阵列组件数多,其多峰值问题比小容量光伏阵列更常见和复杂。该文首先根据局部阴影条件下光伏阵列分段函数型输出特性,建立其S函数...老化、温度变化和局部阴影等引起的电池电气特性不同,使光伏阵列P-U曲线出现多个功率峰值点。大容量光伏阵列组件数多,其多峰值问题比小容量光伏阵列更常见和复杂。该文首先根据局部阴影条件下光伏阵列分段函数型输出特性,建立其S函数模型。然后提出免疫细菌觅食算法,实现大容量光伏阵列全局最大功率点跟踪(global maximum power point tracking,GMPPT),利用细菌觅食算法的随机选取方向特性和免疫选择算子,实现时变环境下全局最大功率点的动态跟踪,将所有跟踪到的全局最大功率点保存到全局最大功率点记忆池,再利用全局最大功率点记忆池初始化群体和产生迁移个体新位置,加快重复出现全局最大功率点的跟踪速度。仿真结果表明,免疫细菌觅食算法在动态和重复出现局部阴影条件下都有良好的GMPPT跟踪定位能力。展开更多
文摘in this paper,a new method to solve the general constrained optimization problem is proposed,theproblem of finding the local optimal points of the nonlinear programming problem with equality and inequality constraints is considered by solving the ODE d.e.Ordinary oprential Equation)with aPPropriatenumerical procedure.Moreover,the rate of conveyance to optimal points is quadratic.Some numerical resultis given to show the efficiency of the method proposed in this poper.
文摘老化、温度变化和局部阴影等引起的电池电气特性不同,使光伏阵列P-U曲线出现多个功率峰值点。大容量光伏阵列组件数多,其多峰值问题比小容量光伏阵列更常见和复杂。该文首先根据局部阴影条件下光伏阵列分段函数型输出特性,建立其S函数模型。然后提出免疫细菌觅食算法,实现大容量光伏阵列全局最大功率点跟踪(global maximum power point tracking,GMPPT),利用细菌觅食算法的随机选取方向特性和免疫选择算子,实现时变环境下全局最大功率点的动态跟踪,将所有跟踪到的全局最大功率点保存到全局最大功率点记忆池,再利用全局最大功率点记忆池初始化群体和产生迁移个体新位置,加快重复出现全局最大功率点的跟踪速度。仿真结果表明,免疫细菌觅食算法在动态和重复出现局部阴影条件下都有良好的GMPPT跟踪定位能力。