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European Journal of Control, Volume 61
Volume 61, September 2021
- Xin Ning, Yao Zhang, Zheng Wang
, Dengxiu Yu, Hang Guo, HanTong Mei
:
BLS-based adaptive fault tolerant control for a class of space unmanned systems with time-varying state constraints and input nonlinearities. 1-12 - Rathinasamy Sakthivel
, Subramanian Manickavalli, Arumugam Parivallal
, Yong Ren:
Observer-based bipartite consensus for uncertain Markovian-jumping multi-agent systems with actuator saturation. 13-23 - Usama Bin Waseem, Fatima Tahir, Muhammad Rehan, Sohaira Ahmad
:
A novel delay-range-dependent observer-based control approach for one-sided Lipschitz systems under measurement delays. 24-39 - Daniele Masti
, Daniele Bernardini
, Alberto Bemporad:
A machine-learning approach to synthesize virtual sensors for parameter-varying systems. 40-49 - Nils Christian A. Wilhelmsen, Henrik Anfinsen, Ole Morten Aamo:
Minimum time observer designs for n+m linear hyperbolic systems with unilateral, bilateral or pointwise in-domain sensing. 50-67 - Mehmet Nur Alpaslan Parlakçi, Elbrous M. Jafarov:
A robust delay-dependent guaranteed cost PID multivariable output feedback controller design for time-varying delayed systems: An LMI optimization approach. 68-79 - Haopeng Zhang:
On the convergence of a cooperative bat searching algorithm. 80-90 - Nguyen Doan Phuoc, Nam Hoai Nguyen
:
An intelligent parameter determination approach in iterative learning control. 91-100 - Michal P. Karpowicz
:
Adaptive tuning of network traffic policing mechanisms for DDoS attack mitigation systems. 101-118 - Damiano Rotondo, Mariusz Buciakowski:
Guaranteed cost estimation and control for a class of nonlinear systems subject to actuator saturation. 119-132 - Farshad Merrikh-Bayat, Mehdi Afshar:
Formulation of nonlinear control problems with actuator saturation as linear programs. 133-141 - Manuel A. Almendra, Milan S. Derpich:
Joint source-channel coding via model predictive control. 142-150 - Ali Karbasi
, Alireza Farhadi:
A cyber-physical system for building automation and control based on a distributed MPC with an efficient method for communication. 151-170
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