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A sub-optimal algorithm to synthesize control laws for a network of dynamic agents

机译:合成动态代理网络控制律的次优算法

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摘要

We study the synthesis problem of a linear quadratic regulator (LQR) controller when the matrix describing the control law is constrained to lie in a particular vector space. Our motivation is the use of such control laws to stabilize networks of autonomous agents in decentralized fashion, with the information flow being dictated by the constraints of a pre-specified topology. In this paper, we consider the finite-horizon version of the problem and provide both a computationally intensive optimal solution and a sub-optimal solution that is computationally more tractable. Then we apply the technique to the decentralized vehicle formation control problem. It is numerically illustrated that while the loss in performance due to the use of the sub-optimal solution is not huge, the topology can have a large effect on performance.
机译:当描述控制律的矩阵被约束为位于特定向量空间中时,我们研究线性二次调节器(LQR)控制器的综合问题。我们的动机是使用这种控制法则以分散的方式稳定自治代理的网络,而信息流则受预先指定的拓扑结构的约束。在本文中,我们考虑了问题的有限水平版本,并提供了计算密集型的最优解和计算上更易于处理的次优解。然后,我们将该技术应用于分散式车辆编队控制问题。从数值上可以看出,尽管由于使用次优解决方案而导致的性能损失不是很大,但拓扑可以对性能产生很大的影响。

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