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Achievable rate regions and self-interference channel estimation in hybrid full-duplex/half-duplex radio links

机译:混合全双工/半双工无线链路中可达到的速率区域和自干扰信道估计

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This article investigates the achievable rates of a bidirectional full-duplex radio link between a base station and a mobile user in a cellular network. In particular, we analyze the relationship between accurate self-interference channel estimation, which is required for effective digital interference cancellation, and spectral-efficient simultaneous two-way data transmission and reception, which is the objective for developing the full-duplex technology in the first place. Channel estimation and data transmission are inherently coupled due to a trade-off arising from the facts that the former benefits from half-duplex slots during which there is no distortion from the data signal of interest while the latter needs full-duplex slots for approaching the anticipated ideal-case doubled spectral efficiency in comparison to plain half-duplex operation. The analysis is conducted by deriving expressions for the achievable data rates and calculating the corresponding rate regions with the help of realistic waveform simulations for incorporating transceiver hardware impairments, which render residual self-interference despite effective cancellation. The findings indicate that increased flexibility in the form of half-duplex communication periods of adjustable lengths results in an increased overall throughput. Thereby, hybrid half/full-duplex operation is not only useful for improving the performance of digital self-interference cancellation but also for supporting varying unbalanced downlink-uplink traffic ratios.
机译:本文研究了蜂窝网络中基站与移动用户之间双向全双工无线链路的可实现速率。特别是,我们分析了有效的数字干扰消除所需的准确的自干扰信道估计与频谱效率高的同时双向数据发送和接收之间的关系,这是在无线通信技术中发展全双工技术的目标。第一名。信道估计和数据传输在本质上是相互关联的,这是因为前者受益于半双工时隙,在此期间,感兴趣的数据信号没有失真,而后者则需要全双工时隙才能接近信道。与普通的半双工操作相比,预期的理想情况下的频谱效率翻了一番。通过得出可实现的数据速率的表达式并借助用于合并收发器硬件损伤的现实波形仿真来计算相应的速率区域来进行分析,尽管有效抵消也会产生残余的自干扰。这些发现表明,长度可调的半双工通信周期形式的灵活性提高导致总体吞吐量的提高。因此,混合半/全双工操作不仅可用于改善数字自干扰消除的性能,而且可用于支持变化的不平衡下行链路-上行链路业务比率。

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