Abstract:
One of the primary objectives of the next-generation communication systems is to establish ubiquitous coverage. In this regard, Low Earth Orbit (LEO) satellite networks h...Show MoreMetadata
Abstract:
One of the primary objectives of the next-generation communication systems is to establish ubiquitous coverage. In this regard, Low Earth Orbit (LEO) satellite networks have attracted significant attention as a promising technology to achieve global coverage. However, fairly and efficiently managing resource allocation, especially beam placement scheduling, poses a significant challenge due to the large number of ground terminals and the vast coverage of LEO satellites. To address this challenge, we model the beam placement scheduling as a problem of minimizing terminal payload at the LEO satellite while considering fairness among terminals. In our proposed solution, we divide the coverage area into segments and use the advantage actor-critic (A2C) to schedule beams within each segment. Our simulations demonstrate that our approach outperforms the greedy method in terms of both throughput and fairness while improving first-time access to the LEO satellite for terminals. Moreover, it outperforms round-robin (RR) scheduling in terms of throughput.
Published in: 2024 IEEE Pacific Rim Conference on Communications, Computers and Signal Processing (PACRIM)
Date of Conference: 21-24 August 2024
Date Added to IEEE Xplore: 01 October 2024
ISBN Information:
ISSN Information:
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- IEEE Keywords
- Index Terms
- Low Earth Orbit ,
- Beam Placement ,
- Resource Allocation ,
- Coverage Area ,
- Number Of Terminals ,
- Satellite Networks ,
- Earth Orbit Satellites ,
- Data Rate ,
- Central Cell ,
- Base Station ,
- Time Slot ,
- Quality Of Experience ,
- Mixed-integer Programming ,
- Antenna Gain ,
- Satellite Communication ,
- User Equipment ,
- Beam Center ,
- Non-orthogonal Multiple Access ,
- Greedy Approach ,
- Policy Gradient Method ,
- Number Of Beams ,
- Reinforcement Learning Techniques ,
- Access Latency ,
- Time-division Multiplexing ,
- Satellite Communication Systems
- Author Keywords
- LEO satellite ,
- beam placement ,
- scheduling ,
- fairness ,
- A2C
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Low Earth Orbit ,
- Beam Placement ,
- Resource Allocation ,
- Coverage Area ,
- Number Of Terminals ,
- Satellite Networks ,
- Earth Orbit Satellites ,
- Data Rate ,
- Central Cell ,
- Base Station ,
- Time Slot ,
- Quality Of Experience ,
- Mixed-integer Programming ,
- Antenna Gain ,
- Satellite Communication ,
- User Equipment ,
- Beam Center ,
- Non-orthogonal Multiple Access ,
- Greedy Approach ,
- Policy Gradient Method ,
- Number Of Beams ,
- Reinforcement Learning Techniques ,
- Access Latency ,
- Time-division Multiplexing ,
- Satellite Communication Systems
- Author Keywords
- LEO satellite ,
- beam placement ,
- scheduling ,
- fairness ,
- A2C