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首页> 外文期刊>IEEE Transactions on Automatic Control >Distributed Average Tracking of Physical Second-Order Agents With Heterogeneous Unknown Nonlinear Dynamics Without Constraint on Input Signals
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Distributed Average Tracking of Physical Second-Order Agents With Heterogeneous Unknown Nonlinear Dynamics Without Constraint on Input Signals

机译:不受输入信号约束的异构二阶非线性动力学物理二阶智能体的分布式平均跟踪

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This paper addresses distributed average tracking of physical second-order agents with heterogeneous unknown nonlinear dynamics, where there is no constraint on input signals and there is no need for correct initialization. The unknown non-linear terms in agents' dynamics are heterogeneous, satisfying a Lipschitz-like condition that will be defined later and is more general than the Lipschitz condition. In the proposed algorithm, a control input and a filter are designed for each agent. Each agent's filter has two outputs and the idea is that the first output estimates the average of the input signals, and the second output estimates the average of the input velocities asymptotically. In parallel, each agent's position and velocity are driven to track, respectively, the first and the second outputs. Having an unknown term in agents' dynamics necessitates designing the filters for agents. Since the nonlinear terms in agents' dynamics can be unbounded and the input signals are arbitrary, novel time-varying gains are employed in agents' filters and control inputs to overcome these unboundedness effects. Finally, the results are improved to achieve the distributed average tracking for a group of double-integrator agents, where there is no constraint on input signals and the filter is not required anymore. Numerical simulations are also presented to illustrate the theoretical results.
机译:本文解决了具有未知异构非线性动力学的物理二阶智能体的分布式平均跟踪,其中对输入信号没有约束,也不需要正确的初始化。代理动力学中未知的非线性项是异质的,满足类似Lipschitz的条件,该条件将在以后定义,并且比Lipschitz条件更笼统。在提出的算法中,为每个代理设计了一个控制输入和一个滤波器。每个代理的滤波器都有两个输出,其思想是第一个输出估计输入信号的平均值,第二个输出渐近估计输入速度的平均值。并行地,驱动每个代理的位置和速度以分别跟踪第一和第二输出。代理商动态中的术语不明,因此必须为代理商设计过滤器。由于代理动力学中的非线性项可以是无界的并且输入信号是任意的,因此在代理的滤波器和控制输入中采用了新颖的时变增益来克服这些无边界的影响。最后,改进结果以实现一组双重积分代理的分布式平均跟踪,其中对输入信号没有约束,并且不再需要滤波器。数值模拟也可以用来说明理论结果。

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