首页> 外文会议>19th International technical meeting of the Satellite Division of the Institute of Navigation (ION GNSS 2006) >Code Generation Scheme and Property Analysis of Broadcast Galileo L1 and E6 Signals
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Code Generation Scheme and Property Analysis of Broadcast Galileo L1 and E6 Signals

机译:广播伽利略L1和E6信号的代码生成方案和性能分析

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In this paper, we decode the PRN codes of the L1 and E6 signals broadcast by the Galileo GIOVE-A test satellite. We apply the 45.7 m Stanford SRI Dish and the 1.8m dish of the Stanford GNSS Monitor System to receive the satellite signal. The received data are processed in a chain of wiping off carrier, Doppler offset, Binary Offset Carrier (BOC) and navigation bits.rnTwo code sequences are revealed in each frequency band, L1-B, L1-C, E6-B and E6-C. The L1 signals have the chip rate of 1.023 Mbps. The L1-B primary code has a period of 4 msec with 4092 bits. The L1-C primary code lasts 8 msec, and has 8184 bits. L1-B has navigation data modulated on its primary code, while L1-C has 25 bits of secondary code, which extends the whole L1-C code period to 200 msec. The E6 signals' chipping rate is 5.115 Mbps. The E6-B code is 5115 bits long and carries
机译:在本文中,我们解码了伽利略GIOVE-A测试卫星广播的L1和E6信号的PRN码。我们使用45.7 m的Stanford SRI碟和1.8m的Stanford GNSS监控器碟来接收卫星信号。接收到的数据按擦除载波,多普勒偏移,二进制偏移载波(BOC)和导航位的链进行处理。在每个频带中显示两个代码序列L1-B,L1-C,E6-B和E6- C。 L1信号的码片速率为1.023 Mbps。 L1-B主码的周期为4毫秒,具有4092位。 L1-C主代码持续8毫秒,并具有8184位。 L1-B具有在其主代码上调制的导航数据,而L1-C具有25位的辅助代码,这将整个L1-C代码周期延长至200毫秒。 E6信号的碎片速率为5.115 Mbps。 E6-B码长5115位,带有

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