一种基于通用处理器软件无线电的时间同步机制

Hongguang Duan, Dengshan Huang, Yi Huang, Yiqing Zhou, Jinglin Shi
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引用次数: 6

摘要

近年来,软件定义无线电(SDR)以其灵活性和通用性等优点成为移动通信领域的研究热点之一。大多数空中接口处理,如信号处理和数据复用,都是在可编程软件环境中完成的。最新的SDR平台利用通用处理器(GPP)的能力来执行所有的实时计算,并原型化了几个宽带通信系统。然而,由于缺乏通用的实时定时控制和同步过程,使得基于gpp的SDR平台难以模拟对时间至关重要的多用户蜂窝通信场景。针对SDR平台上的时间同步问题,提出了一种基于软件的时间同步机制,称为软件时间同步(STS)。在此基础上,在基于gpp的SDR平台上设计了实时高精度时钟源,并利用往返延迟(RTD)算法实现了多用户通信系统的同步。长期实验表明,使用STS的SDR原型能够模拟基于tdma的蜂窝通信。实验结果还表明,STS同步误差在几微秒内。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A time synchronization mechanism based on Software Defined Radio of general-purpose processor
In recent years, Software Defined Radio (SDR) has become one of the major research concerns in mobile communications for the advantages of flexibility and versatility. Most of the air-interface processes such as signal processing and data multiplexing are done on a programmable software environment. The latest SDR platforms utilize the power of general-purpose processor (GPP) to perform all of the real-time computations and several wideband communication systems are prototyped. Nevertheless, the lack of universal real-time timing control and synchronization process make implemented GPP-based SDR platforms difficult to simulate time crucial multi-user cellular communication scenarios. Focus on the problem of time synchronization on SDR platforms, this paper presents a software-based time synchronization mechanism, which is called software time synchronization (STS). On that basis, a real-time and high precision clock source is designed on GPP-based SDR platforms and the multi-user communication system is synchronized utilizing round-trip delay (RTD) algorithm. Long-term experiments showed that a SDR prototype using STS is able to simulate TDMA-based cellular communications. The results also indicate that the STS synchronization errors are within several microseconds.
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