不同平面系统的主动传感控制

IF 2.4 Q2 AUTOMATION & CONTROL SYSTEMS IEEE Control Systems Letters Pub Date : 2024-06-14 DOI:10.1109/LCSYS.2024.3414968
Olga Napolitano;Annamaria Pinizzotto;Matteo Verdecchia;Alessio Pettinari;Daniela Selvi;Lucia Pallottino;Paolo Salaris
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引用次数: 0

摘要

这封信提出了一种最佳的主动感知策略,使用可构性格拉米(CG)作为量化沿计划轨迹获取的丰富信息的指标。一个关键问题是 CG 对过渡矩阵的依赖性,大多数机器人系统都无法获得过渡矩阵的闭式表达,而其数值计算通常成本高昂。我们利用微分平坦性将非线性系统转换为布鲁诺夫斯基形式,过渡矩阵在此形式下简化为一个乔丹块的指数。由此产生的 CG 是通过平面输出获得的关于平面输出本身及其导数的信息的度量。然后利用坐标的反平面度变化回到原始状态变量,这是计算反馈控制法则所需要的。平面输出通过 B-样条曲线参数化,控制点由主动最大化 CG 确定。我们在一个独轮车和一个平面无人机上模拟了我们的方法,这两个无人机需要在测量它们与两个固定标记的距离的同时估计它们的配置。模拟结果表明,我们的方法在减少计算时间和估计不确定性方面都很有效。
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Active Sensing Control for Differentially Flat Systems
This letter proposes an optimal active perception strategy using the Constructibility Gramian (CG) as a metric to quantify the richness of the information acquired along the planned trajectory. A critical issue is the dependence of the CG on the transition matrix, whose closed-form expression is not available for most robotic systems while its numerical computation is usually costly. We leverage differential flatness to transform the nonlinear system in the Brunovsky form, for which the transition matrix reduces to the exponential of a Jordan block. The resulting CG is a measure of the acquired information through the flat outputs about the flat outputs themselves and their derivatives. The inverse flatness change of coordinates is then used to come back to the original state variables, needed for computing the feedback control law. The flat outputs are parameterized through B-Splines with control points determined by actively maximizing CG. We simulate our approach on a unicycle vehicle and a planar UAV that need to estimate their configuration while measuring their distance w.r.t. two fixed markers. Simulations show the effectiveness of our methodology in reducing both the computational time and the estimation uncertainty.
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来源期刊
IEEE Control Systems Letters
IEEE Control Systems Letters Mathematics-Control and Optimization
CiteScore
4.40
自引率
13.30%
发文量
471
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