首页> 外文期刊>Numerical Algebra, Control and Optimization >IDENTIFICATION OF HESSIAN MATRIX IN DISTRIBUTED GRADIENT-BASED MULTI-AGENT COORDINATION CONTROL SYSTEMS
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IDENTIFICATION OF HESSIAN MATRIX IN DISTRIBUTED GRADIENT-BASED MULTI-AGENT COORDINATION CONTROL SYSTEMS

机译:基于分布式梯度的多代理协调控制系统的Hessian矩阵的识别

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摘要

Multi-agent coordination control usually involves a potential function that encodes information of a global control task, while the control input for individual agents is often designed by a gradient-based control law. The property of Hessian matrix associated with a potential function plays an important role in the stability analysis of equilibrium points in gradient-based coordination control systems. Therefore, the identification of Hessian matrix in gradient-based multi-agent coordination systems becomes a key step in multi-agent equilibrium analysis. However, very often the identification of Hessian matrix via the entry-wise calculation is a very tedious task and can easily introduce calculation errors. In this paper we present some general and fast approaches for the identification of Hessian matrix based on matrix differentials and calculus rules, which can easily derive a compact form of Hessian matrix for multi-agent coordination systems. We also present several examples on Hessian identification for certain typical potential functions involving edgetension distance functions and triangular-area functions, and illustrate their applications in the context of distributed coordination and formation control.
机译:多代理协调控制通常涉及编码全局控制任务信息的潜在功能,而单个代理的控制输入通常由基于梯度的控制法设计。与潜在函数相关的Hessian矩阵的性质在基于梯度的协调控制系统中的均衡点的稳定性分析中起着重要作用。因此,在基于梯度的多蛋白协调系统中识别Hessian矩阵成为多代理均衡分析的关键步骤。然而,经常通过进入明智的计算识别Hessian矩阵是一个非常繁琐的任务,并且可以容易地引入计算错误。在本文中,我们基于矩阵差分和微积分规则展示了一些通用和快速方法,可以识别Hessian矩阵,这可以容易地推导出用于多种子体协调系统的紧凑形式的Hessian矩阵。我们还为涉及EdgeteNgy距离函数和三角形区域功能的某些典型潜在功能的若干典型潜在功能提供了几个例子,并在分布式协调和形成控制的上下文中说明了它们的应用。

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