Abstract—In this paper, we investigate the sum-capacity of the two-user Gaussian interference channel with Gaussian su-perposition coding and successive decoding. We first examine an approximate deterministic formulation of the problem, and introduce the complementarity conditions that capture the use of Gaussian coding and successive decoding. In the deterministic channel problem, we show that the constrained sum-capacity oscillates as a function of the cross link gain parameters between the information theoretic sum-capacity and the sum-capacity with interference treated as noise. Furthermore, we show that if the number of messages of either user is fewer than the minimum number required to achieve the constrained sum-capacity, the maximu...
Abstract—We consider the two-user interference channel with rate-limited feedback. Related prior wor...
Part of this work was presented at the IEEE International Workshop on Information Theory (ITW), Camb...
The best outer bound on the capacity region of the two-user Gaussian interference channel (GIC) is k...
Abstract—In this paper, we investigate the maximum achievable sum-rate of the two-user Gaussian inte...
Abstract—New upper bounds on the sum capacity of the two-user Gaussian interference channel are deri...
Abstract — A new outer bound on the capacity region of Gaussian interference channels is developed. ...
The capacity bound of the Gaussian interference channel (IC) has received extensive research interes...
We consider the MIMO X channel (XC), a system consisting of two transmit-receive pairs, where each t...
We consider the MIMO X channel (XC), a system consisting of two transmit-receive pairs, where each t...
We consider the MIMO X channel (XC), a system consisting of two transmit-receive pairs, where each t...
We consider symmetric two-user Gaussian interference channel with common messages. We derive an uppe...
In a multiuser wireless communication system, the transmitters communicate with their intended recei...
Abstract—We provide outer bounds on the capacity region of the two-user Gaussian X channel, i.e. a g...
New sufficient conditions for a vector Gaussian interference channel to achieve the sum-rate capacit...
We investigate how to exploit intermittent feedback for interference management by studying the two-...
Abstract—We consider the two-user interference channel with rate-limited feedback. Related prior wor...
Part of this work was presented at the IEEE International Workshop on Information Theory (ITW), Camb...
The best outer bound on the capacity region of the two-user Gaussian interference channel (GIC) is k...
Abstract—In this paper, we investigate the maximum achievable sum-rate of the two-user Gaussian inte...
Abstract—New upper bounds on the sum capacity of the two-user Gaussian interference channel are deri...
Abstract — A new outer bound on the capacity region of Gaussian interference channels is developed. ...
The capacity bound of the Gaussian interference channel (IC) has received extensive research interes...
We consider the MIMO X channel (XC), a system consisting of two transmit-receive pairs, where each t...
We consider the MIMO X channel (XC), a system consisting of two transmit-receive pairs, where each t...
We consider the MIMO X channel (XC), a system consisting of two transmit-receive pairs, where each t...
We consider symmetric two-user Gaussian interference channel with common messages. We derive an uppe...
In a multiuser wireless communication system, the transmitters communicate with their intended recei...
Abstract—We provide outer bounds on the capacity region of the two-user Gaussian X channel, i.e. a g...
New sufficient conditions for a vector Gaussian interference channel to achieve the sum-rate capacit...
We investigate how to exploit intermittent feedback for interference management by studying the two-...
Abstract—We consider the two-user interference channel with rate-limited feedback. Related prior wor...
Part of this work was presented at the IEEE International Workshop on Information Theory (ITW), Camb...
The best outer bound on the capacity region of the two-user Gaussian interference channel (GIC) is k...