首页 | 本学科首页   官方微博 | 高级检索  
     检索      

Galileo E1-B/C仿真信号合成通道设计
引用本文:谢 杰,张 博,侯 博,姚志成,刘光斌.Galileo E1-B/C仿真信号合成通道设计[J].国际商务研究,2011,51(12).
作者姓名:谢 杰  张 博  侯 博  姚志成  刘光斌
作者单位:第二炮兵工程大学,西安 710025;第二炮兵工程大学,西安 710025;第二炮兵工程大学,西安 710025;第二炮兵工程大学,西安 710025;第二炮兵工程大学,西安 710025
基金项目:军队重点科研项目(EP050068-23)
摘    要:针对Galileo信号合成中超长测距码生成以及功率控制的硬件实现难题,设计了双 口RAM的重载查表式测距码生成器,同时,基于CBOC副载波特性,提出了比例因子功率控制 的优化方法,并进行了仿真实验对比。结果表明:该方法设计的信号合成通道极大地节约了 内存空间和硬件乘法器资源,单片FPGA内信号合成通道的集成数量扩大1倍以上,合成的Ga lileo信号具有理想CBOC信号特征,且接收机定位解算正确,解决了仿真信号的硬件实现难 题。

关 键 词:导航卫星信号仿真  信号合成  Galileo系统  CBOC  功率控制

Signal Synthesis Technique for Galileo E1-B/C Signal Simulation
XIE Jie,ZHANG Bo,HOU Bo,YAO Zhi-cheng and LIU Guang-bin.Signal Synthesis Technique for Galileo E1-B/C Signal Simulation[J].International Business Research,2011,51(12).
Authors:XIE Jie  ZHANG Bo  HOU Bo  YAO Zhi-cheng and LIU Guang-bin
Abstract:By studying characteristics of Galileo E1 PRN code, a PRN generator ba sed on RAM is designed in this paper. A signal attenuation control method based on software is proposed to allocate power of the two CBOC signal components appr oximately. Experiment results indicate that techniques proposed in this paper ca n save most of the Block RAM and DSP48. The number of synthesis channels in FPGA can be doubled. Features of the synthesized Galileo signal, which is verified by Galileo software receiver, are identical with those of ideal CBOC signal. One of the pro blems in applying Galileo E1-B/C signal simulator is solved.
Keywords:navigation satellite signal simulation  signal synthesis  Galileo system  CBOC  attenuation control
点击此处可从《国际商务研究》浏览原始摘要信息
点击此处可从《国际商务研究》下载免费的PDF全文
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号