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首页> 外文期刊>IEEE Transactions on Industrial Electronics >Future Different-Layer Linear Equation and Bounded Inequality Solved by Combining Adams–Bashforth Methods With CZNN Model
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Future Different-Layer Linear Equation and Bounded Inequality Solved by Combining Adams–Bashforth Methods With CZNN Model

机译:通过CZNN模型将Adams-Bashforth方法与CZAMS-Bashforth方法组合解决了未来的不同层线性方程和界不等式

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摘要

In this article, future different-layer linear equation and bounded inequality (DLLEBI) is investigated as a new and challenging problem. The continuous bounded inequality is converted into equality by introducing a time-variant nonnegative vector. A continuous zeroing neural network (CZNN) model is proposed for solving the corresponding continuous DLLEBI by utilizing the ZNN method. Adams-Bashforth (AB) methods are combined with the CZNN model to improve the computational precision. Hence, AB discrete ZNN (AB-DZNN) models are proposed to solve future DLLEBI. Specifically, a four-step AB-DZNN model with high precision is proposed. Three-, two-, and one-step AB-DZNN models are also developed for comparative analyses. Theoretical analyses and numerical results substantiate the validity and superiority of the proposed four-step AB-DZNN model for solving future DLLEBI. In addition, motion control problems of three-link, mobile, and physical Kinova JACO2 robot arms are formulated as three specific future DLLEBI problems. These problems can be solved by the four proposed AB-DZNN models. Comparative numerical results provide further evidence that the proposed four-step AB-DZNN model has the most superior computational performance among the four AB-DZNN models.
机译:在本文中,未来的不同层线性方程和有界不等式(DLLEBI)被调查为一个新的和具有挑战性的问题。通过引入时变非负面载体,连续界限不等式转换为平等。提出了一种连续归零神经网络(CZNN)模型,用于通过利用ZnN方法来求解相应的连续DLLEBI。 Adams-Bashforth(AB)方法与CZNN模型相结合以提高计算精度。因此,提出了AB离散ZnN(AB-DZNN)模型来解决未​​来的DLLEBI。具体地,提出了一种具有高精度的四步AB-DZNN模型。还开发了三个,两步和一步AB-DZNN模型以进行比较分析。理论分析和数值结果证实了所提出的四步AB-DZNN模型的有效性和优越性,以解决未来的DLLEBI。此外,三连杆,移动和物理Kinova Jaco2机器人臂的运动控制问题被制定为三个特定的未来Dllebi问题。这些问题可以通过四个提议的AB-DZNN模型来解决。比较数值结果提供了进一步的证据表明,所提出的四步AB-DZNN模型具有四个AB-DZNN模型中最卓越的计算性能。

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