Markov Decision Policies for Distributed Angular Routing in LEO Mobile Satellite Constellation Networks

Citations

WEB OF SCIENCE

18
Citations

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24

초록

This paper proposes a distributed angular routing algorithm in time-varying dynamic low Earth orbit (LEO) satellite constellation networks. For designing satellite routing algorithms, it is essential to consider (i) distributed operation due to the difficulty in global centralized computation and (ii) angle-based computation under the consideration of orbit coordinate systems. Therefore, our proposed routing algorithm is based on distributed angular computation. Moreover, the proposed algorithm is designed by Markov decision process (MDP) for discrete-time sequential decision making in time-varying LEO satellite networks. As a result, this paper proposes an MDP-based distributed angular routing (MDAR) algorithm for seamless LEO routing. Based on the reward formulation in terms of angular differences in MDP formulation, our proposed distributed angular routing algorithm pursues orbit-geometrically straight-line data delivery from the source to its associated destination. Lastly, our proposed routing algorithm is evaluated in the realistic environment with real-world satellite data, i.e., two line elements (TLE), and the results confirm that our proposed algorithm outperforms the others in terms of routing success rate, reward convergence, and successful throughput. IEEE

키워드

Earth; Heuristic algorithms; Low Earth Orbit (LEO) Satellite; Low earth orbit satellites; Markov Decision Process (MDP); Planetary orbits; Routing; Satellite Routing; Satellites; Vectors; DYNAMIC VIDEO DELIVERY; SECRECY PERFORMANCE; RELAY
제목
Markov Decision Policies for Distributed Angular Routing in LEO Mobile Satellite Constellation Networks
저자
Park, Soohyun; Kim, Gyu Seon; Jung, Soyi; Kim, Joongheon
DOI
10.1109/JIOT.2024.3450851
발행일
2024-12
유형
Article
저널명
IEEE Internet of Things Journal
권
11
호
23
페이지
38744 ~ 38754