邹浩杰, 巴晓辉, 李健, 陈杰. 一种基于中频回放的跟踪通道设计与实现[J]. 微电子学与计算机, 2014, 31(8): 144-147.
引用本文: 邹浩杰, 巴晓辉, 李健, 陈杰. 一种基于中频回放的跟踪通道设计与实现[J]. 微电子学与计算机, 2014, 31(8): 144-147.
ZOU Hao-jie, BA Xiao-hui, LI Jian, CHEN Jie. Design and Implementation of an IF-Playback Based Tracking Channel[J]. Microelectronics & Computer, 2014, 31(8): 144-147.
Citation: ZOU Hao-jie, BA Xiao-hui, LI Jian, CHEN Jie. Design and Implementation of an IF-Playback Based Tracking Channel[J]. Microelectronics & Computer, 2014, 31(8): 144-147.

一种基于中频回放的跟踪通道设计与实现

Design and Implementation of an IF-Playback Based Tracking Channel

  • 摘要: 提出了一种基于中频回放的跟踪通道设计方案.该方案采用两块单口RAM,对中频数据流进行乒乓操作,同时采用可测试性设计 (Design For Test, DFT)中扫描逻辑技术,将跟踪通道的寄存器信息扫描存储至本地SRAM,以实现对卫星信号的连续跟踪,达到跟踪通道时分复用的效果.该方案以增加少量SRAM和提高跟踪通道工作时钟频率为代价,大大减少了跟踪通道逻辑资源.该方案在基于ARM+FPGA的硬件平台上验证通过,并在65nm的CMOS工艺下综合,电路规模约合23万逻辑门,相对于传统并行跟踪通道,电路规模减少约44%.

     

    Abstract: An Intermediate Frequency (IF) Playback based tracking channel design is presented in this paper.Two single-port RAMs are used for IF ping-pong processing.Meanwhile,the scan logic technique from DFT (Design For Test) is used for storing register information of tracking channels to local SRAM.The continuous tracking of satellite signals is achieved through the time division multiplex (TDM) of the tracking channels.The logic resources of tracking channels are reduced significantly at the expense of a small increase of SRAM and the working frequency of the tracking channel.The tracking channel design is implemented and verified on an ARM+FPGA hardware platform,and synthesized using 65 nm CMOS cell library.The scale of the circuit is about 230 000 logic gates,which is reduced about 44% compared to traditional tracking channel designs.

     

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