Abstract <p>A new method for generating frequency diverse two-component optical combs is proposed. The method is based on converting a laser carrier in a single amplitude Mach–Zehnder modulator by means of dual-frequency radio signal. Its application in a 5G communication system built on a medium-altitude unmanned aerial vehicle platform is considered. The method allows for flexible radiation pattern formation of frequency diverse antenna arrays in the radio range for communication with a low-altitude unmanned aerial vehicle swarm and for initializing communication channels between unmanned aerial vehicles of the platform to organize an optical transport domain. </p>

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A Method for Generating Frequency Diverse Two-Component Optical Combs and Its Applications in Unmanned Aerial Vehicle 5G Communication Systems

  • A. M. Al-Mufti,
  • G. S. Potapov,
  • A. A. Kuznetsov,
  • A. V. Burdin,
  • M. Tiwari

摘要

Abstract

A new method for generating frequency diverse two-component optical combs is proposed. The method is based on converting a laser carrier in a single amplitude Mach–Zehnder modulator by means of dual-frequency radio signal. Its application in a 5G communication system built on a medium-altitude unmanned aerial vehicle platform is considered. The method allows for flexible radiation pattern formation of frequency diverse antenna arrays in the radio range for communication with a low-altitude unmanned aerial vehicle swarm and for initializing communication channels between unmanned aerial vehicles of the platform to organize an optical transport domain.