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  4. Thermal Performance Enhancement with DRX in 5G Millimeter Wave Communication System
 
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Thermal Performance Enhancement with DRX in 5G Millimeter Wave Communication System

Journal
IEEE Access
Journal Volume
9
Pages
34692-34707
Date Issued
2021
Author(s)
Huang A
Lin K.-H
HUNG-YU WEI  
DOI
10.1109/ACCESS.2021.3061728
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85101768509&doi=10.1109%2fACCESS.2021.3061728&partnerID=40&md5=c12abdfdf5ac1af984bdf86d83cf36cb
https://scholars.lib.ntu.edu.tw/handle/123456789/580926
Abstract
The evolution of the communication and computation systems enables the user equipment (UE) to handle tremendous transmission data. However, the high-speed data processing also makes UEs release heat and might burn the chips inside the devices. The thermal issue would be more critical in millimeter-wave communications. The massive antenna arrays and the radio frequency modules not only drain the UE battery but also heat the devices. 3GPP also identified the thermal issue and suppressed heat generation by temporarily reducing UE capability in Release 15. In this work, instead of reducing the UE capability, we propose to apply the beam-aware Discontinuous Reception (DRX) mechanism to manage the power consumption and temperature of UEs simultaneously. We are the first to analyze the temperature for UEs with DRX configured. A semi-Markov model is provided, and we employ it to estimate the sleep ratio, packet delay, and steady temperature. We use a simulation program to verify the proposed analytical model. When comparing the beam-aware DRX with the baseline 5G NR DRX operation, we find that the beam-aware scheme reduces the steady temperature from 38.2 C to 26.7C. The results show that Beam-Aware DRX could solve the thermal issue without sacrificing much performance of packet delivery latency. ? 2013 IEEE.
Subjects
Antenna arrays; Data communication equipment; Data handling; Markov processes; Millimeter waves; Mobile telecommunication systems; Computation systems; Discontinuous receptions; Millimeter-wave communication; Radio frequencies; Semi Markov model; Simulation program; Thermal performance enhancements; Transmission data; 5G mobile communication systems
SDGs

[SDGs]SDG7

Type
journal article

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