In a space-air-ground integrated network (SAGIN), managing resources for the growing number of highly-dynamic and heterogeneous radios is a challenging task. Symbiotic communication (SC) is a novel paradigm, which leverages the analogy of the natural ecosystem in biology to create a radio ecosystem in wireless networks that achieves cooperative service exchange and resource sharing, i.e., service/resource trading, among numerous radios. As a result, the potential of symbiotic communication can be exploited to enhance resource management in SAGIN. Despite the fact that different radio resource bottlenecks can complement each other via symbiotic relationships, unreliable information sharing among heterogeneous radios and multi-dimensional resources managing under diverse service requests impose critical challenges on trusted trading and intelligent decision-making. In this article, we propose a secure and smart symbiotic SAGIN (S^4) framework by using blockchain for ensuring trusted trading among heterogeneous radios and machine learning (ML) for guiding complex service/resource trading. A case study demonstrates that our proposed S^4 framework provides better service with rational resource management when compared with existing schemes. Finally, we discuss several potential research directions for future symbiotic SAGIN.
翻译:在空空地综合网络(SAGIN)中,管理资源以管理日益增多的高度动态和多样化无线电台是一项艰巨的任务。共生通信(SC)是一个新颖的范例,它利用生物学中自然生态系统的类比,在无线网络中创造一个无线电生态系统,实现合作性服务交流和资源共享,即许多无线电台之间的服务/资源贸易。因此,共生通信的潜力可以用来加强SAGIN的资源管理。尽管不同的无线电资源瓶颈可以通过共生关系、不同无线电台之间不可靠的信息共享和根据不同服务请求管理的多维资源相互补充。在本篇文章中,我们提出一个安全而智能的共生性SAGIN(S4)框架,利用阻隔链确保不同无线电台和机器学习之间的可信任交易,指导复杂的服务/资源交易。一项个案研究表明,我们提议的S-4框架与现有计划相比,可以提供更好的服务,合理资源管理。最后,我们讨论了未来SysonAGAG公司的潜在研究方向。