WOS: 000466912700003Multi-numerology waveform-based 5G new radio (NR) systems offer great flexibility for different requirements of users and services. However, there is a new type of problem that is defined as inter-numerology interference (INI) between multiple numerologies. This paper proposes novel scheduling and resource allocation techniques to enhance the overall reliability and also provide extra protection for ultra-reliable and low-latency communications (uRLLC) users and cell edge users against INI. Proposed methods are useful for Internet of Things (IoT) communications, and they do not cause additional spectral usage, computational complexity, and latency. Practical INI-aware schemes in this paper include fractional numerology d...
Extremely diverse service requirements are one of the critical challenges for the upcoming fifth-ge...
AbstractNext generation wireless networks aim to meet the rising demands on cellular networks by sup...
International audienceThe extremely diverse service requirements is an important challenge for the u...
The next-generation communication technologies are evolving towards increased flexibility in various...
One of the defining characteristics of 5G is the flexibility it offers for supporting different serv...
Fifth generation (5G) radio access technology (RAT) is designed to flexibly serve multiple services ...
The upcoming generations of wireless communications are characterized by a wide variety of applicati...
This article proposes a pre-equalization method to remove inter-numerology interference (INI) that o...
Extremely diverse service requirements are one of the critical challenges for the upcoming fifth-gen...
—Multi-numerology multi-carrier (MN-MC) techniques are considered as essential enablers for RAN slic...
Ultra-reliable low-latency communication (URLLC) is one of the main challenges faced by future 5G ne...
The physical layer of 5G cellular communications systems is designed to achieve better flexibility i...
The flexible mixed-numerology structure with orthogonal frequency division multiplexing (OFDM) wavef...
In 5G and beyond communication systems, distinct numerologies can coexist to serve diverse requireme...
5G communication systems and beyond are envisioned to support an extremely diverse set of use cases ...
Extremely diverse service requirements are one of the critical challenges for the upcoming fifth-ge...
AbstractNext generation wireless networks aim to meet the rising demands on cellular networks by sup...
International audienceThe extremely diverse service requirements is an important challenge for the u...
The next-generation communication technologies are evolving towards increased flexibility in various...
One of the defining characteristics of 5G is the flexibility it offers for supporting different serv...
Fifth generation (5G) radio access technology (RAT) is designed to flexibly serve multiple services ...
The upcoming generations of wireless communications are characterized by a wide variety of applicati...
This article proposes a pre-equalization method to remove inter-numerology interference (INI) that o...
Extremely diverse service requirements are one of the critical challenges for the upcoming fifth-gen...
—Multi-numerology multi-carrier (MN-MC) techniques are considered as essential enablers for RAN slic...
Ultra-reliable low-latency communication (URLLC) is one of the main challenges faced by future 5G ne...
The physical layer of 5G cellular communications systems is designed to achieve better flexibility i...
The flexible mixed-numerology structure with orthogonal frequency division multiplexing (OFDM) wavef...
In 5G and beyond communication systems, distinct numerologies can coexist to serve diverse requireme...
5G communication systems and beyond are envisioned to support an extremely diverse set of use cases ...
Extremely diverse service requirements are one of the critical challenges for the upcoming fifth-ge...
AbstractNext generation wireless networks aim to meet the rising demands on cellular networks by sup...
International audienceThe extremely diverse service requirements is an important challenge for the u...