In multi user multiple input multiple output systems, spatial precoding is typically employed as an interference cancellation technique. This technique, however, requires accurate channel state information at the transmitter and limits the mobility of the mobile station (MS). Instead of spatial precoding, this letter implements collaborative interference cancellation (CIC) for interference suppression. In CIC, neighboring MSs share their received signals without decoding and equivalently increase the number of received antennas. The performance is evaluated through a field experiment using a vehicle that is equipped with seven MSs and moves around an urban area
Abstract—This paper investigates the problem of interference among the simultaneous multiuser transm...
Abstract—In this paper, we propose a new groupwise re-ceiver combiner design method for spatial mult...
Instead of suppressing multiuser interference as a harmful element by conventional precoders, constr...
Multi-user multiple-input and multiple-output (MU-MIMO) transmission has been extensively studied to...
For future cellular mobile radio systems optimum interference mitigation is one of the key challenge...
Interference Cancellation Using Space-Time Processing and Precoding Design introduces original desig...
Since multi-antenna (MIMO) systems are becoming more popular thanks to their inherent potential for ...
Multi-antenna technologies have emerged as attractive techniques of providing efficient and reliable...
Cellular communication provides an efficient, flexible, long-lived, and reliable communication techn...
The objective of this dissertation is to design new architectures for multiple antenna wireless comm...
License, which permits unrestricted use, distribution, and reproduction in any medium, provided the ...
International audienceSpatial Modulation (SM) is a recently proposed single-RF multiple-input-multip...
This paper presents the concept of spatial modulation (SM) scheme for massive multiuser MIMO (MU-MIM...
Distributed detection techniques of multiple-input multiple-output (MIMO) spatially multiplexed sign...
We investigate and propose a new cooperative spatial multiplexing system, which does not require mul...
Abstract—This paper investigates the problem of interference among the simultaneous multiuser transm...
Abstract—In this paper, we propose a new groupwise re-ceiver combiner design method for spatial mult...
Instead of suppressing multiuser interference as a harmful element by conventional precoders, constr...
Multi-user multiple-input and multiple-output (MU-MIMO) transmission has been extensively studied to...
For future cellular mobile radio systems optimum interference mitigation is one of the key challenge...
Interference Cancellation Using Space-Time Processing and Precoding Design introduces original desig...
Since multi-antenna (MIMO) systems are becoming more popular thanks to their inherent potential for ...
Multi-antenna technologies have emerged as attractive techniques of providing efficient and reliable...
Cellular communication provides an efficient, flexible, long-lived, and reliable communication techn...
The objective of this dissertation is to design new architectures for multiple antenna wireless comm...
License, which permits unrestricted use, distribution, and reproduction in any medium, provided the ...
International audienceSpatial Modulation (SM) is a recently proposed single-RF multiple-input-multip...
This paper presents the concept of spatial modulation (SM) scheme for massive multiuser MIMO (MU-MIM...
Distributed detection techniques of multiple-input multiple-output (MIMO) spatially multiplexed sign...
We investigate and propose a new cooperative spatial multiplexing system, which does not require mul...
Abstract—This paper investigates the problem of interference among the simultaneous multiuser transm...
Abstract—In this paper, we propose a new groupwise re-ceiver combiner design method for spatial mult...
Instead of suppressing multiuser interference as a harmful element by conventional precoders, constr...