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Actuator and sensor delays are among the most common dynamic phenomena in engineering practice, and when disregarded, they render controlled systems unstable. Over the past sixty years, predictor feedback has been a key tool for compensating such delays, but conventional predictor feedback algorithms assume that the delays and other parameters of a given system are known. When incorrect parameter values are used in the predictor, the resulting controller may be as destabilizing as without the delay compensation. This book develops adaptive predictor feedback algorithms equipped with online estimators of unknown delays and other parameters.
Adaptive control systems --- Time delay systems --- Linear control systems --- Linear time invariant systems --- Differential equations, Linear. --- Engineering mathematics. --- Engineering --- Engineering analysis --- Mathematical analysis --- Linear differential equations --- Linear systems --- Systems, Linear time invariant --- Discrete-time systems --- Automatic control --- Time delay control --- Time delay control systems --- Time delay controllers --- Time-delayed systems --- Feedback control systems --- Process control --- Self-adaptive control systems --- Artificial intelligence --- Self-organizing systems --- Mathematical models. --- Mathematics --- 3D printing. --- Multi-input systems. --- ODE delay notation. --- adaptive control of uncertain systems. --- aerospace engineering. --- backstepping transformation. --- biomedical engineering. --- chemical engineers. --- civil engineering. --- combustion systems. --- computer engineers. --- control designs. --- control synthesis techniques. --- control theorists. --- delay-related challenges. --- delayed telecommunication systems. --- delays in traffic flow dynamics. --- distinct discrete input delays. --- distributed input delays. --- electrical engineers. --- feedback of linear systems. --- finite-dimensional systems. --- global stability of nonlinear infinite-dimensional systems. --- mechanical engineers, aerospace engineers. --- multivariable multidelay systems. --- neuromuscular electrical stimulation. --- nonlinear infinite-dimensional stability study. --- process dynamic researchers. --- robotic manipulators. --- structural engineering. --- supply chains. --- time-delay systems. --- uncertainty combinations. --- unmanned aerial vehicles. --- unmeasured states.
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