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In this study, the problem of remote output feedback stabilization for fractional-order (FO) systems with input time-varying delay via communication networks is investigated. The order of the FO system denoted by α considered in this paper is in the range of 0 to 2. Additionally, the network induced time-varying delay is considered as being generated by a known FO dynamic system. We design static...
In this study, the problem of remote stabilization for fractional-order (FO) systems with input time-varying delay via communication networks is investigated. The order of the FO system denoted by α considered in this paper is in the range of 0 to 2. Additionally, the network induced time-varying delay is considered as being generated by a known FO dynamic system. We design state feedback and output...
In networked control systems (NCS), the spiky nature of the random delays makes us wonder about the benefits we can expect if the spikiness, or what we call delay dynamics can be considered in the NCS controller design. It turns out that the spikiness of the network induced random delays can be better characterized by the so-called α-stable processes, or processes with fractional lower-order statistics...
In this study, the problem of remote stabilization for fractional-order (FO) systems with input time-varying delay via communication networks is investigated. The order of the FO system denoted by α considered in this paper is in the range of 0 to 2. Additionally, the network induced time-varying delay is considered as being generated by a known FO dynamic system. We show how the delay dynamics can...
In networked control systems (NCS), the spiky nature of the random delays makes us wonder about the benefits we can expect if the ldquospikinessrdquo, or what we call ldquodelay dynamicsrdquo are considered in the NCS controller design. It turns out that the ldquospikinessrdquo of the network induced random delays can be better characterized by the so-called alpha-stable processes, or processes with...
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