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ON TRIGGERING CONTROL OF SINGLE-INPUT LINEAR SYSTEMS UNDER PULSE-WIDTH MODULATED DOS SIGNALS

机译:脉宽调制DOS信号下单输入线性系统的触发控制研究

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This paper studies the stability of remotely controlled and observed single-input controllable linear systems under power-constrained pulse-width modulated denial-of-service (DoS) signals. The effect of a DoS jamming signal is to corrupt the communication channels, thus preventing the data from being received at its destination. In this work, we first assume that the DoS signal is partially known, i.e., a uniform lower bound for the off time intervals and the on-to-off transiting time instants are known. We then propose a first type of resilient control and triggering strategies which is provably capable of beating partially known jamming signals. Building on this, we then present our joint control and identification algorithms, JAMCOID for Periodic Signals and JAMCOID, which are provably able to guarantee the system stability under unknown jamming signals. More precisely, the JAMCOID for Periodic Signals algorithm is able to partly identify a periodic DoS signal with known uniform lower bound for the off time intervals, whereas the JAMCOID algorithm is capable of dealing with power-constrained, but otherwise unknown, DoS signals while ensuring stability. The practicality of the proposed techniques is evaluated on a simulation example under partially known and unknown jamming scenarios.
机译:本文研究了在功率受限的脉冲宽度调制拒绝服务(DoS)信号下,远程控制和观察到的单输入可控制线性系统的稳定性。 DoS干扰信号的作用是破坏通信通道,从而阻止数据在其目的地被接收。在这项工作中,我们首先假设DoS信号是部分已知的,即,关闭时间间隔的统一下界和开关通行时间瞬间是已知的。然后,我们提出了一种第一类弹性控制和触发策略,该策略可证明能够击败部分已知的干扰信号。在此基础上,我们然后介绍了联合控制和识别算法,即周期性信号的JAMCOID和JAMCOID,可证明它们能够保证在未知干扰信号下的系统稳定性。更准确地说,JAMCOID for Periodic Signals算法能够部分识别具有已知关闭时间间隔下限的统一DoS信号的周期性DoS信号,而JAMCOID算法能够处理功率受限但未知的DoS信号,同时确保稳定性。在部分已知和未知干扰情况下的仿真示例上评估了所提出技术的实用性。

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