The capacity region of a two-user Gaussian Multiple Access Channel (GMAC) with complex finite input alphabets and continuous output alphabet is studied. When both the users are equipped with the same code alphabet, it is shown that, rotation of one of the user’s alphabets by an appropriate angle can make the new pair of alphabets not only uniquely decodable, but will result in enlargement of the capacity region. For this set-up, we identify the primary problem to be finding appropriate angle(s) of rotation between the alphabets such that the capacity region is maximally enlarged. It is shown that the angle of rotation which provides maximum enlargement of the capacity region also minimizes the union bound on the probability of error of th...
In this paper, we study the achievable rate region of two-user Gaussian broadcast channel (GBC) when...
In this paper, we investigate the achievable rate region of Gaussian multiple access channels (MAC) ...
In this paper, we investigate the achievable rate region of Gaussian multiple access channels (MAC) ...
The capacity region of a two-user Gaussian Multiple Access Channel (GMAC) with complex finite input ...
Capacity region for two-user Gaussian Broadcast Channels (GBC) is well known with the optimal input ...
In the two-user Gaussian Strong Interference Channel (GSIC) with finite constellation inputs, it is ...
In the two-user Gaussian Strong Interference Channel (GSIC) with finite constellation inputs, it is ...
Constellation Constrained (CC) capacity regions of two-user Single-Input Single-Output (SISO) Gaussi...
In the two-user Gaussian Strong Interference Channel (GSIC) with finite constellation inputs, it is ...
Constellation Constrained (CC) capacity regions of a two-user Gaussian Multiple Access Channel (GMAC...
Constellation Constrained (CC) capacity regions of a two-user Gaussian Multiple Access Channel(GMAC)...
A Broadcast Channel is a communication path between a single source and two or more receivers or use...
Abstract—In this paper, we study the achievable rate region of two-user Gaussian broadcast channel (...
Constellation Constrained (CC) capacity regions of two-user Gaussian Multiple Access Channels (GMAC)...
Constellation Constrained (CC) capacity regions of two-user Gaussian Multiple Access Channels (GMAC)...
In this paper, we study the achievable rate region of two-user Gaussian broadcast channel (GBC) when...
In this paper, we investigate the achievable rate region of Gaussian multiple access channels (MAC) ...
In this paper, we investigate the achievable rate region of Gaussian multiple access channels (MAC) ...
The capacity region of a two-user Gaussian Multiple Access Channel (GMAC) with complex finite input ...
Capacity region for two-user Gaussian Broadcast Channels (GBC) is well known with the optimal input ...
In the two-user Gaussian Strong Interference Channel (GSIC) with finite constellation inputs, it is ...
In the two-user Gaussian Strong Interference Channel (GSIC) with finite constellation inputs, it is ...
Constellation Constrained (CC) capacity regions of two-user Single-Input Single-Output (SISO) Gaussi...
In the two-user Gaussian Strong Interference Channel (GSIC) with finite constellation inputs, it is ...
Constellation Constrained (CC) capacity regions of a two-user Gaussian Multiple Access Channel (GMAC...
Constellation Constrained (CC) capacity regions of a two-user Gaussian Multiple Access Channel(GMAC)...
A Broadcast Channel is a communication path between a single source and two or more receivers or use...
Abstract—In this paper, we study the achievable rate region of two-user Gaussian broadcast channel (...
Constellation Constrained (CC) capacity regions of two-user Gaussian Multiple Access Channels (GMAC)...
Constellation Constrained (CC) capacity regions of two-user Gaussian Multiple Access Channels (GMAC)...
In this paper, we study the achievable rate region of two-user Gaussian broadcast channel (GBC) when...
In this paper, we investigate the achievable rate region of Gaussian multiple access channels (MAC) ...
In this paper, we investigate the achievable rate region of Gaussian multiple access channels (MAC) ...