TY - GEN
T1 - Unequal Timeliness NOMA Downlink Scheme for Mission Critical Communications in Satellite-Integrated Internet
AU - Huang, Xiajie
AU - Jiao, Jian
AU - Lu, Mengya
AU - Yang, Tao
AU - Wang, Ye
AU - Zhang, Qinyu
N1 - Publisher Copyright:
© 2024 IEEE.
PY - 2024
Y1 - 2024
N2 - The satellite-Integrated Internet can provide unequal timeliness protection multicast (UTM) for various mission critical communications (MCC) in the upcoming sixth-generation (6G) network. In this paper, we propose two UTM non-orthogonal multiple access (NOMA) downlink schemes for three types MCC user equipments (UEs) in satellite-Integrated Internet, named independent successive UTM (IS-UTM) and cognitive offloading UTM (CO-UTM). First, in the IS-UTM scheme, we utilize age of information (AoI) to capture the timeliness requirements of information, and classify three types MCC UEs into three groups and specify their transmission stages in the transmission frame according to their AoI requirements. To further enhance timeliness and reliability for MCC UEs, we propose CO-UTM scheme to allow timeliness critical group to share redundant resources to timeliness tolerable group. Then, in order to meet the reliability and AoI requirements of MCC for the above ISand CO-UTM schemes, we adopt a proximal policy optimization (PPO)-based dynamic power allocation (PDPA) algorithm to minimize the long-term average packet error rate (PER) of MCC groups within a transmission stage. Simulation results show that the CO-UTM scheme has better AoI performance compared to the IS-UTM scheme when the timeliness critical group has redundant resources.
AB - The satellite-Integrated Internet can provide unequal timeliness protection multicast (UTM) for various mission critical communications (MCC) in the upcoming sixth-generation (6G) network. In this paper, we propose two UTM non-orthogonal multiple access (NOMA) downlink schemes for three types MCC user equipments (UEs) in satellite-Integrated Internet, named independent successive UTM (IS-UTM) and cognitive offloading UTM (CO-UTM). First, in the IS-UTM scheme, we utilize age of information (AoI) to capture the timeliness requirements of information, and classify three types MCC UEs into three groups and specify their transmission stages in the transmission frame according to their AoI requirements. To further enhance timeliness and reliability for MCC UEs, we propose CO-UTM scheme to allow timeliness critical group to share redundant resources to timeliness tolerable group. Then, in order to meet the reliability and AoI requirements of MCC for the above ISand CO-UTM schemes, we adopt a proximal policy optimization (PPO)-based dynamic power allocation (PDPA) algorithm to minimize the long-term average packet error rate (PER) of MCC groups within a transmission stage. Simulation results show that the CO-UTM scheme has better AoI performance compared to the IS-UTM scheme when the timeliness critical group has redundant resources.
KW - Satellite-Integrated Internet
KW - age of information
KW - deep reinforcement learning
KW - mission critical communications
KW - unequal timeliness protection
UR - https://www.scopus.com/pages/publications/85206494504
U2 - 10.1109/ICCC62479.2024.10681888
DO - 10.1109/ICCC62479.2024.10681888
M3 - 会议稿件
AN - SCOPUS:85206494504
T3 - 2024 IEEE/CIC International Conference on Communications in China, ICCC 2024
SP - 669
EP - 674
BT - 2024 IEEE/CIC International Conference on Communications in China, ICCC 2024
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 2024 IEEE/CIC International Conference on Communications in China, ICCC 2024
Y2 - 7 August 2024 through 9 August 2024
ER -