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Different Zhang functions resulting in different ZNN models demonstrated via time-varying linear matrix-vector inequalities solving

机译:通过时变线性矩阵-向量不等式求解证明了不同的Zhang函数导致不同的ZNN模型

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摘要

Our previous work shows that Zhang neural network (ZNN) has the higher efficiency and better performance for solving online time-varying linear matrix-vector inequalities, as compared to the conventional gradient neural network. In this paper, introducing the concept of Zhang function, we further investigate the problem of time-varying linear matrix-vector inequalities solving. Specifically, by defining three different Zhang functions, three types of ZNN models are further elaborately constructed to solve time-varying linear matrix-vector inequalities. The first ZNN model is based on a vector-valued lower-bounded Zhang function and is termed ZNN-1 model. The second one is based on a vector-valued lower-unbounded Zhang function and is termed ZNN-2 model. The third one is based on a transformed lower-unbounded Zhang function and is termed ZNN-3 model. Compared with the ZNN-1 model for solving time-varying linear matrix-vector inequalities, it is surprisedly discovered that the ZNN-2 model incorporates the ZNN-1 model as its special case. Besides, we put research emphasis on the ZNN-3 model for solving time-varying linear matrix-vector inequalities (including its design process, theoretical analysis and simulation verification). When power-sum activation functions are exploited, the ZNN-3 model possesses the property of superior convergence and better accuracy. Computer-simulation results further verify and demonstrate the theoretical analysis and efficacy of the ZNN-3 model for solving time-varying linear matrix-vector inequalities.
机译:我们以前的工作表明,与传统的梯度神经网络相比,张神经网络(ZNN)在解决在线时变线性矩阵矢量不等式方面具有更高的效率和更好的性能。本文在介绍Zhang函数的概念后,进一步研究了时变线性矩阵向量不等式的求解问题。具体而言,通过定义三个不同的Zhang函数,可以进一步精心构造三种类型的ZNN模型,以解决随时间变化的线性矩阵矢量不等式。第一个ZNN模型基于向量值下界的Zhang函数,称为ZNN-1模型。第二个基于向量值的较低无界张函数,称为ZNN-2模型。第三个是基于变换后的无界Zhang函数的,被称为ZNN-3模型。与用于求解时变线性矩阵矢量不等式的ZNN-1模型相比,令人惊讶地发现ZNN-2模型将ZNN-1模型作为其特例。此外,我们将研究重点放在ZNN-3模型上,以解决时变线性矩阵-向量不等式(包括其设计过程,理论分析和仿真验证)。利用幂和激活函数,ZNN-3模型具有收敛性好,精度高的特点。计算机仿真结果进一步验证并证明了ZNN-3模型用于解决时变线性矩阵矢量不等式的理论分析和有效性。

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