论文标题
共生广播:未来无线网络的认知反向散射通信
Symbiotic Radio: Cognitive Backscattering Communications for Future Wireless Networks
论文作者
论文摘要
异源无线服务和成倍增长的交通呼吁采用新型频谱和节能无线通信技术。在本文中,提出了一种称为共生无线电(SR)的新技术,以利用益处并解决认知无线电(CR)和环境反向散射通信(AMBC)的缺点,从而导致共同性频谱共享和高度可靠的反向散射通信。特别是,SR中的次级发射器(STX)将消息传输到次级接收器(SRX)的RF信号上,该信号源自源自主要发射机(PTX)的基于认知反向散射的通信,因此二级系统不仅共享无线电光谱,还与电源和基础结构相同。作为回报,二级传输为主要系统提供了有益的多路径多样性,因此两个系统形成了互助谱分共享。更重要的是,在SRX上利用联合解码来实现高度可靠的反向散射通信。为了利用SR的全部潜力,在本文中,我们解决了SR中的三个基本任务:(1)通过主动负载增强反向散射链接; (2)通过联合解码实现高度可靠的通信; (3)使用可重构智能表面捕获PTX的RF信号。还将讨论新兴的应用程序,设计挑战和开放研究问题。
The heterogenous wireless services and exponentially growing traffic call for novel spectrum- and energy-efficient wireless communication technologies. In this paper, a new technique, called symbiotic radio (SR), is proposed to exploit the benefits and address the drawbacks of cognitive radio (CR) and ambient backscattering communications(AmBC), leading to mutualism spectrum sharing and highly reliable backscattering communications. In particular, the secondary transmitter (STx) in SR transmits messages to the secondary receiver (SRx) over the RF signals originating from the primary transmitter (PTx) based on cognitive backscattering communications, thus the secondary system shares not only the radio spectrum, but also the power, and infrastructure with the primary system. In return, the secondary transmission provides beneficial multipath diversity to the primary system, therefore the two systems form mutualism spectrum sharing. More importantly, joint decoding is exploited at SRx to achieve highly reliable backscattering communications. To exploit the full potential of SR, in this paper, we address three fundamental tasks in SR: (1) enhancing the backscattering link via active load; (2) achieving highly reliable communications through joint decoding; and (3) capturing PTx's RF signals using reconfigurable intelligent surfaces. Emerging applications, design challenges and open research problems will also be discussed.