Enabling Technologies for Ultra-Reliable and Low Latency Communications: From PHY and MAC Layer Perspectives

Технологии обеспечения сверхнадежной и низкозадерживающей связи: с точек зрения уровней PHY и MAC
Mehran Abolhasan, Diep N. Nguyen, Eryk Dutkiewicz, Ren Ping Liu, Gordon J. Sutton, Jie Zeng, Wei Ni, Beeshanga Abewardana Jayawickrama, Xiaojing Huang, Zhang Zhang, Tiejun Lv
2019-01-01

URLLC reliability and latency requirementslicensed and unlicensed spectrum coexistencemedium access control (MAC) techniquesphysical layer (PHY) techniquesultra-reliable low latency communications (URLLC)
Future 5th generation networks are expected to enable three key services-enhanced mobile broadband, massive machine type communications and ultra-reliable and low latency communications (URLLC). As per the 3rd generation partnership project URLLC requirements, it is expected that the reliability of one transmission of a 32 byte packet will be at least 99.999% and the latency will be at most 1 ms. This unprecedented level of reliability and latency will yield various new applications, such as smart grids, industrial automation and intelligent transport systems. In this survey we present potential future URLLC applications, and summarize the corresponding reliability and latency requirements. We provide a comprehensive discussion on physical (PHY) and medium access control (MAC) layer techniques that enable URLLC, addressing both licensed and unlicensed bands. This paper evaluates the relevant PHY and MAC techniques for their ability to improve the reliability and reduce the latency. We identify that enabling long-term evolution to coexist in the unlicensed spectrum is also a potential enabler of URLLC in the unlicensed band, and provide numerical evaluations. Lastly, this paper discusses the potential future research directions and challenges in achieving the URLLC requirements.
1
3GPP URLLC target: single transmission of a 32-byte packet must achieve at least 99.999% reliability and at most 1 ms latency.
2
Coexistence of LTE in unlicensed spectrum is identified as a potential enabler of URLLC in unlicensed bands, with numerical evaluations provided.
3
Paper highlights open research directions and challenges remaining to meet URLLC requirements at PHY and MAC layers.
4
Survey identifies and summarizes PHY and MAC layer techniques (for licensed and unlicensed bands) that can improve reliability and reduce latency for URLLC.
5
URLLC enables new applications including smart grids, industrial automation, and intelligent transport systems with stringent reliability/latency needs.

Ultra-Reliable and Low Latency Communications (URLLC) in 5G networks (PHY and MAC layer aspects, licensed and unlicensed bands)

PHY and MAC layer enabling technologies and techniques that improve reliability (e.g., 99.999% for a 32-byte packet) and reduce latency (≤1 ms), including coexistence in unlicensed spectrum and their evaluated performance

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2019-01-01
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Mehran Abolhasan
Diep N. Nguyen
Eryk Dutkiewicz
Ren Ping Liu
Gordon J. Sutton
Jie Zeng
Wei Ni
Beeshanga Abewardana Jayawickrama
Xiaojing Huang
Zhang Zhang
Tiejun Lv
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