We present a novel random multiple access scheme that combines joint multiuser detection (MUD) with physical layer network coding (PLNC) over extended Galois fields (EGF). We derive an analytical bound on the throughput at the system level and present simulation results for the decoding at the physical level in both fast fading and block fading channels. We adopt a cross layer approach in which a non-binary joint multiuser decoder is used in combination with PLNC at slot level, while the use of EGF aims at increasing the system diversity at frame level. The results we present are encouraging and suggest that the combination of these two interference management techniques can significantly enhance the performance of random multiple access sy...
Hinging on ideas from physical-layer network coding, some promising proposals of coded random access...
We consider a physical-layer network coding strategy for the random-access channel, based on compute...
© 2016 IEEE. We propose a new practical multiuser decoding scheme based on physical-layer network co...
We present a novel random multiple access scheme that combines joint multiuser detection (MUD) with ...
We present a novel random multiple access scheme that combines joint multiuser detection (MUD) with ...
We present a novel scheme for Slotted ALOHA random access systems that combines physical-layer netwo...
We present a novel scheme for Slotted ALOHA random access systems (RAS) that combines physical-layer...
We present a novel scheme for Slotted ALOHA random access systems (RAS) that combines physical-layer...
In this paper, we propose a novel detection algorithm for random multiple access, which combines slo...
In this paper, we propose a novel detection algorithm for random multiple access, which combines slo...
In this paper, we propose a novel detection algorithm for random multiple access, which combines slo...
Leveraging recent progress in compute-and-forward we propose an approach to random access that is ba...
Leveraging recent progress in compute-and-forward we propose an approach to random access that is ba...
We consider a physical-layer network coding strategy for the random-access channel, based on compute...
We consider a physical-layer network coding strat- egy for the random-access channel, based on compu...
Hinging on ideas from physical-layer network coding, some promising proposals of coded random access...
We consider a physical-layer network coding strategy for the random-access channel, based on compute...
© 2016 IEEE. We propose a new practical multiuser decoding scheme based on physical-layer network co...
We present a novel random multiple access scheme that combines joint multiuser detection (MUD) with ...
We present a novel random multiple access scheme that combines joint multiuser detection (MUD) with ...
We present a novel scheme for Slotted ALOHA random access systems that combines physical-layer netwo...
We present a novel scheme for Slotted ALOHA random access systems (RAS) that combines physical-layer...
We present a novel scheme for Slotted ALOHA random access systems (RAS) that combines physical-layer...
In this paper, we propose a novel detection algorithm for random multiple access, which combines slo...
In this paper, we propose a novel detection algorithm for random multiple access, which combines slo...
In this paper, we propose a novel detection algorithm for random multiple access, which combines slo...
Leveraging recent progress in compute-and-forward we propose an approach to random access that is ba...
Leveraging recent progress in compute-and-forward we propose an approach to random access that is ba...
We consider a physical-layer network coding strategy for the random-access channel, based on compute...
We consider a physical-layer network coding strat- egy for the random-access channel, based on compu...
Hinging on ideas from physical-layer network coding, some promising proposals of coded random access...
We consider a physical-layer network coding strategy for the random-access channel, based on compute...
© 2016 IEEE. We propose a new practical multiuser decoding scheme based on physical-layer network co...