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Software-Based Real-Time Full-Duplex Relaying: An Experimental Study

机译:基于软件的实时全双工中继:实验研究

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Relaying in wireless networks is one of the most important concepts to improve the overall communication performance and to increase coverage. Relay systems can work in either half or full-duplex mode. Half-duplex relaying unfortunately increases the overall latency and also causes spectral losses. On the other hand, in-band full-duplex relaying helps to overcome such issues by simultaneously receiving packets from the source and forwarding them towards the destination. We present a software-based real-time full-duplex relaying system, which we implemented in GNU Radio. The system supports running simulations using an abstract channel model as well as over-the-air experiments using Software Defined Radios (SDRs). A major challenge in developing such a system is dealing with self-interference. For this, we constructed a new looped self-interference cancellation system and integrated it with the GNU Radio implementation. In an experimental study, we validated and evaluated our system to characterize the practical performance of the proposed full-duplex relay system. Our main focus is on the impact of the residual looped self-interference, for which we show analytical and simulation results to confirm the experimental study.
机译:无线网络中的中继是提高整体通信性能和增加覆盖范围的最重要的概念之一。继电器系统可以以半或全双工模式工作。半双工中继不幸增加了整体延迟并且还导致光谱损耗。另一方面,带内的全双工中继有助于通过同时从源接收数据包并将其转发到目的地来克服这些问题。我们提出了一种基于软件的实时全双工中继系统,我们在GNU广播中实现。该系统支持使用抽象通道模型以及使用软件定义的无线电(SDR)的空中实验来运行模拟。发展这种系统的主要挑战是处理自干不发。为此,我们构建了一个新的循环自干扰取消系统,并与GNU无线电实现集成。在一个实验研究中,我们验证并评估了我们的系统,以表征所提出的全双工继电器系统的实际性能。我们的主要重点是对残差循环自干扰的影响,我们显示分析和仿真结果以确认实验研究。

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