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Design and Implementation of an Embedded System for Software Defined Radio

机译:一种软件无线电嵌入式系统的设计与实现

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In this paper, developing high performance software for demanding real-time embedded systems is proposed. This software-based design will enable the software engineers and system architects in emerging technology areas like 5G Wireless and Software Defined Networking (SDN) to build their algorithms. An ADSP-21364 floating point SHARC Digital Signal Processor (DSP) running at 333 MHz is adopted as a platform for an embedded system. To evaluate the proposed embedded system, an implementation of frame, symbol and carrier phase synchronization is presented as an application. Its performance is investigated with an on line Quadrature Phase Shift keying (QPSK) receiver. Obtained results show that the designed software is implemented successfully based on the SHARC DSP which can utilized efficiently for such algorithms. In addition, it is proven that the proposed embedded system is pragmatic and capable of dealing with the memory constraints and critical time issue due to a long length interleaved coded data utilized for channel coding.
机译:在本文中,提出了开发用于要求苛刻的实时嵌入式系统的高性能软件。这种基于软件的设计将使新兴技术领域(如5G无线和软件定义网络(SDN))中的软件工程师和系统架构师能够构建其算法。运行在333 MHz的ADSP-21364浮点SHARC数字信号处理器(DSP)被用作嵌入式系统的平台。为了评估所提出的嵌入式系统,将帧,符号和载波相位同步的实现作为应用提出。使用在线正交相移键控(QPSK)接收器研究其性能。结果表明,所设计的软件是基于SHARC DSP的成功实现的,可以有效地利用该算法。另外,已经证明,由于用于信道编码的长的交错编码数据,所提出的嵌入式系统是实用的并且能够处理存储器限制和关键时间问题。

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