A BeiDou hardware receiver based on the STA8088 chipset

F. Pisoni, P. Mattos
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引用次数: 3

Abstract

The recent release, in December 2012, of the complete BeiDou B1I Interface Control Document has boosted new interest and R&D activities in the field. For a manufacturer of GNSS semiconductor devices, the first and logical step in the roadmap toward a full blown BeiDou receiver is the reuse of existing and proven silicon; the new product can blossom and reach the market more quickly, with good overall performance, though not yet optimized in every single aspect. Following this approach, the paper describes a BeiDou receiver implementation, based on the STA8088 “Teseo-II” consumer chip, which was originally designed for GPS, Galileo and GLONASS. Several technical solutions adopted in the receiver are disclosed, including aspects of the RF path, signal processing and higher level software algorithms like GEO velocity computation and ionosphere models. The main difficulty encountered was the generation of the B1I ranging codes, which was accomplished, with some performance trade-offs, by reusing the on-chip Galileo programmable code memory. The final result is a compact, consumer grade BeiDou hardware receiver, suitable for navigation and timing applications. Static positioning plots from real data, collected at a roof antenna are also reported.
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基于STA8088芯片组的北斗硬件接收机
最近在2012年12月发布的完整的北斗B1I接口控制文档促进了该领域的新兴趣和研发活动。对于GNSS半导体设备制造商来说,全面发展北斗接收机的第一步也是合乎逻辑的一步是重用现有的和经过验证的硅;新产品可以更快的开花,更快的进入市场,整体性能很好,虽然还没有在各个方面进行优化。根据这种方法,本文描述了一种基于STA8088“Teseo-II”消费芯片的北斗接收机的实现,该芯片最初是为GPS、伽利略和GLONASS设计的。公开了接收机中采用的几种技术方案,包括射频路径、信号处理以及GEO速度计算和电离层模型等高级软件算法。遇到的主要困难是B1I测距代码的生成,这是通过重用片上的Galileo可编程代码存储器来完成的,在性能上进行了一些权衡。最终的结果是一个紧凑的,消费级的北斗硬件接收机,适用于导航和授时应用。还报道了从屋顶天线收集的真实数据的静态定位图。
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