This paper studies feedback stabilization of a linear time-invariant (LTI) discrete-time system with information constraints in the input channels, described by additive white Gaussian noise (AWGN). A signal-to-noise ratio (SNR) constraint model is adopted in studying its communication capacity limits. Upper and lower bounds of the least capacity are derived for feedback stabilization in both state feedback and output feedback control of multi-input/multi-output (MIMO) systems. © 2013 IEEE
Communication channels impose a number of obstacles to feedback control, such as delay, noise, and c...
Communication channels impose a number of obstacles to feedback control, such as delay, noise, and c...
Communication channels impose a number of obstacles to feedback control. One recent line of work con...
In this paper, we study feedback stabilization of a linear time-invariant (LTI) multi-input/multi-ou...
Communication channels impose a number of obstacles to feedback control, such as delay, noise, and c...
The present thesis addresses the problem of stabilisability of a linear time invariant (LTI) output ...
There has recently been significant interest in feedback stabilization problems with communication c...
There has recently been significant interest in feedback stabilization problems over communication c...
There has recently been significant interest in feedback stabilization problems with communication ...
There has recently been significant interest in feedback stabilization problems with communication ...
There has recently been significant interest in feedback stabilization problems with communication ...
Abstract — Communication channels are known to impose a number of constraints on control objectives ...
Communication channels are known to impose a number of constraints on control objectives when explic...
In this paper, we study the problem of state feedback stabilization of a linear time-invariant (LTI)...
Communication channels impose a number of obstacles to feedback control, such as delay, noise, and c...
Communication channels impose a number of obstacles to feedback control, such as delay, noise, and c...
Communication channels impose a number of obstacles to feedback control, such as delay, noise, and c...
Communication channels impose a number of obstacles to feedback control. One recent line of work con...
In this paper, we study feedback stabilization of a linear time-invariant (LTI) multi-input/multi-ou...
Communication channels impose a number of obstacles to feedback control, such as delay, noise, and c...
The present thesis addresses the problem of stabilisability of a linear time invariant (LTI) output ...
There has recently been significant interest in feedback stabilization problems with communication c...
There has recently been significant interest in feedback stabilization problems over communication c...
There has recently been significant interest in feedback stabilization problems with communication ...
There has recently been significant interest in feedback stabilization problems with communication ...
There has recently been significant interest in feedback stabilization problems with communication ...
Abstract — Communication channels are known to impose a number of constraints on control objectives ...
Communication channels are known to impose a number of constraints on control objectives when explic...
In this paper, we study the problem of state feedback stabilization of a linear time-invariant (LTI)...
Communication channels impose a number of obstacles to feedback control, such as delay, noise, and c...
Communication channels impose a number of obstacles to feedback control, such as delay, noise, and c...
Communication channels impose a number of obstacles to feedback control, such as delay, noise, and c...
Communication channels impose a number of obstacles to feedback control. One recent line of work con...