Multi-Satellite Cooperative Communication: Exploiting Time Asynchrony in Non-Orthogonal Transmissions.

IEEE Trans. Veh. Technol.(2023)

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摘要
The ever-increasing densification of the low-Earth orbit constellation makes it possible to boost the data rate via multi-satellite cooperative transmission. However, the large spatial scale of satellite networks makes the time asynchrony non-negligible. In this paper, we exploit the asynchronous non-orthogonal transmission for multi-satellite cooperative communication to improve the fairness-aware rate. The asynchronous capacity is extended to the multi-satellite cooperation scenario and then utilized to formulate the optimization problem, which jointly considers the satellite-to-terminal association, power allocation, and decoding order. To dissect those coupled variables, we propose a preference-list-based algorithm that iterates between the following two stages. First, the many-to-many two-sided matching is solved by a Gale-Shapley algorithm based strategy given prespecified preference lists. Then, transmit power and decoding order are jointly optimized by a Dinkelbach-like algorithm. Based on the above results, the preference lists are updated to reflect the inter-satellite interference for iterative refinement. Simulation results show that introducing cooperative transmission improves the fairness rate by 12%, and exploiting time asynchrony provides another 7% gain.
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关键词
Satellites, Resource management, NOMA, Iterative decoding, Cooperative communication, Symbols, Minimax techniques, Multi-satellite cooperation, non-orthogonal multiple access, asynchronous transmission, max-min fairness, resource allocation
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