In this paper we study the multiple input multiple output (MIMO) orthogonal frequency division multiplexing (OFDM) Gaussian broadcast channel (BC). Several fundamental problems are considered: the maximization of a weighted sum of rates and the dual minimization of sum power subject to rate requirements. Further we study the combined problem of weighted rate sum maximization under minimum rate requirements. To show the connections among them, all problems are embedded into an enhanced convex set of rate-power tuples (R, P). This not only gives insights into the structure of the MIMO OFDM BC capacity region, but also motivates algorithms exploiting these properties
Abstract — We study the problem of efficiently scheduling users in a Gaussian broadcast channel with...
We consider the problem of maximizing the throughput (sum rate) of the Gaussian MIMO broadcast chann...
We consider a multiuser downlink transmission from a base station with multiple antennas (MIMO) to m...
Abstract—In this paper we study the multiple input multi-ple output (MIMO) orthogonal freqency divis...
A system consisting of K parallel Gaussian broadcast channels over which a transmitter communicates ...
This book deals with the optimization-based joint design of the transmit and receive filters in MI...
In this paper, we address the problem of optimal power allocation for multiple input multiple output...
We consider the problem of differentiated rate scheduling for the fading MIMO Gaussian broadcast cha...
We consider a multi-user multiple input multiple output (MIMO) Gaussian broadcast channel (BC), wher...
This paper characterizes the capacity region of Gaussian MIMO broadcast channels (BCs) with per-ante...
We consider the problem of differentiated rate scheduling for the fading MIMO Gaus-sian broadcast ch...
This paper characterizes the capacity region of Gaussian MIMO broadcast channels (BCs) with per-ante...
Multiple-Input-Multiple-Output (MIMO) is one of the most important communication techniques that all...
This paper characterizes the capacity region of Gaussian MIMO broadcast channels (BCs) with per-ante...
In this paper, we consider the problem of minimizing long-term sum power under the constraint of an ...
Abstract — We study the problem of efficiently scheduling users in a Gaussian broadcast channel with...
We consider the problem of maximizing the throughput (sum rate) of the Gaussian MIMO broadcast chann...
We consider a multiuser downlink transmission from a base station with multiple antennas (MIMO) to m...
Abstract—In this paper we study the multiple input multi-ple output (MIMO) orthogonal freqency divis...
A system consisting of K parallel Gaussian broadcast channels over which a transmitter communicates ...
This book deals with the optimization-based joint design of the transmit and receive filters in MI...
In this paper, we address the problem of optimal power allocation for multiple input multiple output...
We consider the problem of differentiated rate scheduling for the fading MIMO Gaussian broadcast cha...
We consider a multi-user multiple input multiple output (MIMO) Gaussian broadcast channel (BC), wher...
This paper characterizes the capacity region of Gaussian MIMO broadcast channels (BCs) with per-ante...
We consider the problem of differentiated rate scheduling for the fading MIMO Gaus-sian broadcast ch...
This paper characterizes the capacity region of Gaussian MIMO broadcast channels (BCs) with per-ante...
Multiple-Input-Multiple-Output (MIMO) is one of the most important communication techniques that all...
This paper characterizes the capacity region of Gaussian MIMO broadcast channels (BCs) with per-ante...
In this paper, we consider the problem of minimizing long-term sum power under the constraint of an ...
Abstract — We study the problem of efficiently scheduling users in a Gaussian broadcast channel with...
We consider the problem of maximizing the throughput (sum rate) of the Gaussian MIMO broadcast chann...
We consider a multiuser downlink transmission from a base station with multiple antennas (MIMO) to m...