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The Second-Order Differential Equation System with the Controlled Process for Variational Inequality with Constraints

机译:具有受控过程的二阶微分方程系统,具有约束的变分不等式

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In this paper, the variational inequality with constraints can be viewed as an optimization problem. Using Lagrange function and projection operator, the equivalent operator equations for the variational inequality with constraints under the certain conditions are obtained. Then, the second-order differential equation system with the controlled process is established for solving the variational inequality with constraints. We prove that any accumulation point of the trajectory of the second-order differential equation system is a solution to the variational inequality with constraints. In the end, one example with three kinds of different cases by using this differential equation system is solved. The numerical results are reported to verify the effectiveness of the second-order differential equation system with the controlled process for solving the variational inequality with constraints.
机译:在本文中,可以将与约束的变分不等式视为优化问题。 使用Lagrange功能和投影运算符,获得了在特定条件下具有约束的变化不等式的等效操作方程。 然后,建立具有受控过程的二阶微分方程系统,用于解决与约束的变分不等式。 我们证明了二阶微分方程系统的轨迹的任何累积点是对具有约束的变分不等式的解决方案。 最后,解决了通过使用该微分方程系统三种不同案例的一个例子。 据报道,数值结果验证了二阶微分方程系统的有效性与控制过程,用于解决与约束的变分不等式。

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