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Resource Allocation for Multisatellite Asynchronous Transmission in Integrated Communication and Navigation Networks

  • Harbin Institute of Technology Weihai

Research output: Contribution to journalArticlepeer-review

Abstract

The advantages of low-Earth orbit (LEO) satellite navigation in addressing the increasing demand for high-precision and universally accessible positioning have garnered widespread attention. Our work builds upon our previous development of the Zadoff-Chu nonorthogonal multiple access (ZC-NOMA) waveform for integrated communication and navigation (ICAN). Expanding on this foundation, we conceive the ICAN-oriented multisatellite asynchronous transmission (ICAN-MSAT) framework, which allows users to concurrently receive communication and navigation signals from multiple satellites without synchronization, thus increasing communication flexibility and leveraging the geometric distribution and robust signals of LEO satellite constellations to enhance navigation performance. Within the ICAN-MSAT framework, we propose a novel multisatellite asynchronous transmission-oriented subcarrier and power allocation (MSASP) algorithm to manage mutual interference between communication and navigation components and intersatellite interference (INSI) caused by asynchronous transmission, with the latter often overlooked in most existing work. Simulation results demonstrate that the proposed algorithm meets the performance requirements of both navigation and communication, achieving higher communication rates under the same navigation accuracy constraints compared to current benchmarks.

Original languageEnglish
Pages (from-to)14172-14187
Number of pages16
JournalIEEE Internet of Things Journal
Volume12
Issue number10
DOIs
StatePublished - 2025
Externally publishedYes

Keywords

  • Asynchronous transmission
  • integrated communication and navigation (ICAN)
  • low-Earth orbit (LEO) satellite navigation
  • resource allocation

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