In mutualistic cooperative ambient backscatter communications (AmBC), Internet-of-Things (IoT) device sends its information to a desired receiver by modulating and backscattering the primary signal, while providing beneficial multipath diversity to the primary receiver in return, thus forming a mutualism relationship between the AmBC and primary links. We note that the hardware impairments (HIs), which are unavoidable in practical systems and may significantly affect the transmission rates of the primary and AmBC links and their mutualism relationships, have been largely ignored in the study of mutualistic cooperative AmBC networks. In this paper, we consider a mutualistic cooperative AmBC network under HIs, and study the impacts of HIs on the achievable rates of the primary link and the AmBC link. In particular, we theoretically prove that although HIs degrades the rate of each link, the mutualism relationship between the AmBC and primary links is maintained, i.e., the rate of the primary link in the mutualistic cooperative AmBC network is still higher than that without the AmBC link. The closed-form rate expressions of both the AmBC and primary links are derived. Computer simulations are provided to validate our theoretical analysis.
翻译:在相互合作的环境背向散射通信(AMBC)中,互联网图案装置通过调制和反射主信号,将其信息传送给理想的接收者,同时向初级接收者提供有益的多路多样性,从而形成美联储与初级链接之间的相互性关系。我们注意到,硬件缺陷(HIS)在实际系统中是不可避免的,并可能对初级和大型BC链接的传输速度及其相互性关系产生重大影响,但在研究相互合作的AMBC网络时,这些缺陷在很大程度上被忽略了。在本文中,我们认为HIS下的一个相互合作的AMBC网络,并研究HIS对主要链接和大型BC链接的可实现速度的影响。特别是,我们理论上证明,尽管HIs降低了每个链接的速度,但美联储和初级链接之间的相互性关系得到了保持,也就是说,在相互合作的AMBC网络中,主要连接的速度仍然高于没有ABC链接的传输速度。在计算机模拟中,我们提供的AmBC和初级链接的封闭式进度表表和主要链接的理论验证是我们的。