Abstract This paper addresses the problem of downlink radio resource management for ultra-reliable low-latency communications (URLLC) in fifth generation (5G) systems. To support low-latency communications, we study performance of two multiplexing schemes namely in resource control signalling and joint encoding of data and metadata. In the former, the metadata and data are separately encoded and the metadata is sent at the beginning of transmission time prior to the data. Thus, it benefits from a low-complexity receiver structure to decode the data block. The latter takes advantages of transmitting a larger blocklength to enhance the reliability and improve spectrum efficiency by jointly encoding data and metadata as a single codeword. Dea...
Many mission-critical and latency-sensitive applications require ultra-reliable and low-latency comm...
One of the key challenges in next generation 5G networks is to deliver Ultra-Reliable Low-Latency Co...
One of the key challenges in next generation 5G networks is to deliver Ultra-Reliable Low-Latency Co...
The fifth generation (5G) of cellular networks aims at providing connectivity for a large number of ...
The Ultra-Reliable Low-Latency Communication (URLLC) is expected to be an important feature of 5G an...
Towards 5G, the challenge to achieve high reliability and low latency asks for new directions in sys...
Data duplication is studied as a fundamental enabler for ultra-reliable low-latency communication (U...
International audienceWe investigate in this paper uplink multiple transmission schemes for 5G Ultra...
International audienceWe investigate in this paper uplink multiple transmission schemes for 5G Ultra...
International audienceWe investigate in this paper uplink multiple transmission schemes for 5G Ultra...
International audienceWe investigate in this paper uplink multiple transmission schemes for 5G Ultra...
With the expected superior performance to the current generation of mobile networks, fifth generatio...
Ultra-reliable low latency communication (URLLC) is an important new feature brought by 5G, with a p...
Ultra-reliable low latency communication (URLLC) is an important new feature brought by 5G, with a p...
© 2018 IEEE. The articles in this special section focus on fifth generation (5G) mobile communicatio...
Many mission-critical and latency-sensitive applications require ultra-reliable and low-latency comm...
One of the key challenges in next generation 5G networks is to deliver Ultra-Reliable Low-Latency Co...
One of the key challenges in next generation 5G networks is to deliver Ultra-Reliable Low-Latency Co...
The fifth generation (5G) of cellular networks aims at providing connectivity for a large number of ...
The Ultra-Reliable Low-Latency Communication (URLLC) is expected to be an important feature of 5G an...
Towards 5G, the challenge to achieve high reliability and low latency asks for new directions in sys...
Data duplication is studied as a fundamental enabler for ultra-reliable low-latency communication (U...
International audienceWe investigate in this paper uplink multiple transmission schemes for 5G Ultra...
International audienceWe investigate in this paper uplink multiple transmission schemes for 5G Ultra...
International audienceWe investigate in this paper uplink multiple transmission schemes for 5G Ultra...
International audienceWe investigate in this paper uplink multiple transmission schemes for 5G Ultra...
With the expected superior performance to the current generation of mobile networks, fifth generatio...
Ultra-reliable low latency communication (URLLC) is an important new feature brought by 5G, with a p...
Ultra-reliable low latency communication (URLLC) is an important new feature brought by 5G, with a p...
© 2018 IEEE. The articles in this special section focus on fifth generation (5G) mobile communicatio...
Many mission-critical and latency-sensitive applications require ultra-reliable and low-latency comm...
One of the key challenges in next generation 5G networks is to deliver Ultra-Reliable Low-Latency Co...
One of the key challenges in next generation 5G networks is to deliver Ultra-Reliable Low-Latency Co...