对具有弱耦合特性的非线性半光滑方程组提出了牛顿型分解算法,理论上证明了新算法的收敛性.新算法享有分解法节省计算量的优点,且推广了光滑方程于半光滑方程系统.根据电力系统有功与电压、无功和相角固有的弱耦合性质,运用新算法于电...对具有弱耦合特性的非线性半光滑方程组提出了牛顿型分解算法,理论上证明了新算法的收敛性.新算法享有分解法节省计算量的优点,且推广了光滑方程于半光滑方程系统.根据电力系统有功与电压、无功和相角固有的弱耦合性质,运用新算法于电力系统的最优潮流(Optimal Power Flow-OPF)的求解,计算结果显示了算法的有效性.展开更多
本文讨论一般的凸光顺问题minF(y):=integral from n=a to b|D^k y|~2 dt+sum from i=1 to N w^i|y(t^i)-z^i|~2.其中,k≥3而且y在闭凸集K■L_2~k[a,b]上.我们把该问题转化为半光滑方程组并给出一个求解该方程组的半光滑牛顿算法.最后...本文讨论一般的凸光顺问题minF(y):=integral from n=a to b|D^k y|~2 dt+sum from i=1 to N w^i|y(t^i)-z^i|~2.其中,k≥3而且y在闭凸集K■L_2~k[a,b]上.我们把该问题转化为半光滑方程组并给出一个求解该方程组的半光滑牛顿算法.最后证明算法的超线性收敛性并给出数值算例.展开更多
In this paper,we present a smoothing Newton-like method for solving nonlinear systems of equalities and inequalities.By using the so-called max function,we transfer the inequalities into a system of semismooth equalit...In this paper,we present a smoothing Newton-like method for solving nonlinear systems of equalities and inequalities.By using the so-called max function,we transfer the inequalities into a system of semismooth equalities.Then a smoothing Newton-like method is proposed for solving the reformulated system,which only needs to solve one system of linear equations and to perform one line search at each iteration. The global and local quadratic convergence are studied under appropriate assumptions. Numerical examples show that the new approach is effective.展开更多
A new NCP-function for the box constrained variational inequality VI([a, b], F) is proposed and its properties are investigated. Using this NCP-function the box constrained variational inequality is reformulated as a ...A new NCP-function for the box constrained variational inequality VI([a, b], F) is proposed and its properties are investigated. Using this NCP-function the box constrained variational inequality is reformulated as a system of semismooth equa- tions whose merit function is differentiable every where. For the P0-function F, any stationary point of the merit function solves the VI([a, b], F). The related Newton-type method is proposed. For continuously differentiable and monotone function F, the generalized Newton equation involved in the method is always a uniquely solvable system of linear equations and affords a direction of sufficient decrease for the merit function. Under the condition of BD-regular solution, the algorithm is globally convergent and has a superlinear or possibly quadratic rate of convergence. The numerical results suggest that the algorithm is robust and efficient.展开更多
The approach of available transfer capability (denoted as ATC) incorporating wind generation has been paid very high attention since the development of wind generation. Based on the maximum function, this paper pres...The approach of available transfer capability (denoted as ATC) incorporating wind generation has been paid very high attention since the development of wind generation. Based on the maximum function, this paper presents an ATC model. The characteristic of the new model is twofold. First, it considers wind turbines connected to power system and static security of power system simultaneously. Second, it is a system of semismooth equations and can be solved easily. By using the smoothing strategy, a smoothing Newton method is adopted for solving the proposed new ATC model. Numerical simulation results of the IEEE 30-bus and 118-bus system show that the new model and algorithm are feasible and effective. The impact of wind turbines connected to power system on ATC is also analyzed.展开更多
文摘对具有弱耦合特性的非线性半光滑方程组提出了牛顿型分解算法,理论上证明了新算法的收敛性.新算法享有分解法节省计算量的优点,且推广了光滑方程于半光滑方程系统.根据电力系统有功与电压、无功和相角固有的弱耦合性质,运用新算法于电力系统的最优潮流(Optimal Power Flow-OPF)的求解,计算结果显示了算法的有效性.
文摘本文讨论一般的凸光顺问题minF(y):=integral from n=a to b|D^k y|~2 dt+sum from i=1 to N w^i|y(t^i)-z^i|~2.其中,k≥3而且y在闭凸集K■L_2~k[a,b]上.我们把该问题转化为半光滑方程组并给出一个求解该方程组的半光滑牛顿算法.最后证明算法的超线性收敛性并给出数值算例.
基金supported by Guangdong Provincial Zhujiang Scholar Award Project,National Science Foundation of China(10671163,10871031)the National Basic Research Program under the Grant 2005CB321703Scientific Research Fund of Hunan Provincial Education Department(06A069,06C824)
文摘In this paper,we present a smoothing Newton-like method for solving nonlinear systems of equalities and inequalities.By using the so-called max function,we transfer the inequalities into a system of semismooth equalities.Then a smoothing Newton-like method is proposed for solving the reformulated system,which only needs to solve one system of linear equations and to perform one line search at each iteration. The global and local quadratic convergence are studied under appropriate assumptions. Numerical examples show that the new approach is effective.
文摘A new NCP-function for the box constrained variational inequality VI([a, b], F) is proposed and its properties are investigated. Using this NCP-function the box constrained variational inequality is reformulated as a system of semismooth equa- tions whose merit function is differentiable every where. For the P0-function F, any stationary point of the merit function solves the VI([a, b], F). The related Newton-type method is proposed. For continuously differentiable and monotone function F, the generalized Newton equation involved in the method is always a uniquely solvable system of linear equations and affords a direction of sufficient decrease for the merit function. Under the condition of BD-regular solution, the algorithm is globally convergent and has a superlinear or possibly quadratic rate of convergence. The numerical results suggest that the algorithm is robust and efficient.
基金This research is supported by the National Natural Science Foundation of China under Grant Nos. 10871031, 10926189, the Natural Science United Foundation of Hunan-Hengyang under Grant No. 10JJS008, and the Educational Department of Hunan under Grant No. 10A015
文摘The approach of available transfer capability (denoted as ATC) incorporating wind generation has been paid very high attention since the development of wind generation. Based on the maximum function, this paper presents an ATC model. The characteristic of the new model is twofold. First, it considers wind turbines connected to power system and static security of power system simultaneously. Second, it is a system of semismooth equations and can be solved easily. By using the smoothing strategy, a smoothing Newton method is adopted for solving the proposed new ATC model. Numerical simulation results of the IEEE 30-bus and 118-bus system show that the new model and algorithm are feasible and effective. The impact of wind turbines connected to power system on ATC is also analyzed.