论文标题
一种用于设计固定时稳定系统具有预定义上限的方法
A methodology for designing fixed-time stable systems with a predefined upper-bound in their settling time
论文作者
论文摘要
相对于其初始条件(即具有固定时间稳定性)具有均匀收敛性的算法正在受到越来越多的关注,以解决在时间限制下解决控制和观察者设计问题。但是,当我们需要在其沉降时间上施加用户定义的上限,尤其是对于具有扰动的系统时,我们仍然缺乏一种针对高阶扰动系统设计这些算法的一般方法。在这里,我们通过引入一种方法来填补这一空白,以将一类渐近,有限和固定的时间稳定系统重新设计为非自治固定时稳定系统,并在其结算时间内具有用户定义的上限。我们的方法论通过添加随时间变化的增长来重新设计系统。但是,与现有的方法相反,随着时间的起源,随着时间变化的收益倾向于无穷大,我们提供了足够的条件来维持有限的收益。我们通过在结算时间和有限的收益中构建用户定义的上限来构建固定时间在线差异化的方法来说明我们的方法论。
Algorithms having uniform convergence with respect to their initial condition (i.e., with fixed-time stability) are receiving increasing attention for solving control and observer design problems under time constraints. However, we still lack a general methodology to design these algorithms for high-order perturbed systems when we additionally need to impose a user-defined upper-bound on their settling time, especially for systems with perturbations. Here, we fill this gap by introducing a methodology to redesign a class of asymptotically, finite- and fixed-time stable systems into non-autonomous fixed-time stable systems with a user-defined upper-bound on their settling time. Our methodology redesigns a system by adding time-varying gains. However, contrary to existing methods where the time-varying gains tend to infinity as the origin is reached, we provide sufficient conditions to maintain bounded gains. We illustrate our methodology by building fixed-time online differentiators with user-defined upper-bound on their settling time and bounded gains.