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Transparent Tx and Rx Waveform Processing for 5G New Radio Mobile Communications

机译:用于5G新型无线电移动通信的透明Tx和Rx波形处理

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摘要

Several different waveform processing techniques have been studied and proposed for the 5G new radio (NR) physical layer, to support new mixed numerology and asynchronous services. The evaluation and comparison of these different techniques is commonly based on matched waveform processing in the transmitter and receiver units. In this article, it is shown that different techniques can be flexibly mixed, making it possible to separately optimize complexity-performance trade-offs for transmitter and receiver implementations. Mixing different waveform processing techniques is possible by setting adequate requirements for transmitter and receiver base-band processing allowing transparent design. We provide the basic framework of how transmitter and receiver units can be independently applied and evaluated in the context of transparent design and an extensive set of examples of the achievable radio link performance with unmatched transmitter and receiver waveform processing. The discussed approach and solutions simplify standardization, improve transparent transmitter and receiver coexistence, and enable a future-proof evolution path for performance improvements in 5G NR physical layer hardware and algorithm design.
机译:已经针对5G新无线电(NR)物理层研究并提出了几种不同的波形处理技术,以支持新的混合数字学和异步服务。这些不同技术的评估和比较通常是基于发射器和接收器单元中的匹配波形处理。在本文中,表明了可以灵活地混合使用不同的技术,从而有可能为发射机和接收机的实现分别优化复杂性和性能之间的权衡。通过为发射器和接收器基带处理设置足够的要求以实现透明设计,可以混合使用不同的波形处理技术。我们提供了在透明设计的背景下如何独立应用和评估发射器和接收器单元的基本框架,以及无与伦比的发射器和接收器波形处理可实现的无线链路性能的大量示例。讨论的方法和解决方案简化了标准化,提高了透明的发射器和接收器共存,并为5G NR物理层硬件和算法设计的性能改进提供了面向未来的演进路径。

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