2015
DOI: 10.1016/j.isatra.2015.04.005
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Adaptive sampling rate control for networked systems based on statistical characteristics of packet disordering

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Cited by 9 publications
(8 citation statements)
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“…This work ranges from relatively simple first-order hold interpolators to be used in intelligent actuators (e.g., [22]) through to advanced techniques based upon H ∞ filtering of the data stream, application of adaptive sampling controls, and the use of buffering schemes within a robust control framework (e.g., [23,24]). In [23], the use of playback buffers in conjunction with information redundancy is suggested to overcome packet losses, packet disordering and variable latency of UDP/IP communication links in a closed loop.…”
Section: Packet Loss Compensationmentioning
confidence: 99%
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“…This work ranges from relatively simple first-order hold interpolators to be used in intelligent actuators (e.g., [22]) through to advanced techniques based upon H ∞ filtering of the data stream, application of adaptive sampling controls, and the use of buffering schemes within a robust control framework (e.g., [23,24]). In [23], the use of playback buffers in conjunction with information redundancy is suggested to overcome packet losses, packet disordering and variable latency of UDP/IP communication links in a closed loop.…”
Section: Packet Loss Compensationmentioning
confidence: 99%
“…A frequency-domain robust control method is proposed to overcome the additional link delays and provide additional resilience to occasions in which buffer sizes are violated at run-time. In [24], Li et al consider an adaptive sampling rate control scheme for a DCS subject to stochastic packet disordering, transmission delays and packet losses of the type induced by the UDP/IP protocol. They propose an augmented closed-loop DCS and develop an adaptive tracking controller to stabilize the resulting stochastic system.…”
Section: Packet Loss Compensationmentioning
confidence: 99%
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