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Receiving and Assessing L1C Signal for In-Orbit GPS III and QZSS Transmissions Using a Software-Defined Receiver

机译:使用软件定义的接收器接收和评估用于轨道上的GPS III和QZSS传输的L1C信号

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摘要

To avoid signal interference in L1 frequency and provide various services, GPS has updated a modern signal, called L1C, which has been tested with three QZSS satellites launched in 2017. In December 2018, the first GPS III satellite was launched, which implies improved joint positioning using GPS and QZSS L1C signal. The L1C signal offers a series of advanced designs in signal modulation, message structure and coding. We present complete methodologies for joint L1C signal receiving and processing. For the transmitted signals, we present a methodology and results from collecting and assessing Binary Offset Carrier (BOC) modulation and time-multiplexed BOC (TMBOC) modulation used in the L1C signal. Using the same omnidirectional antenna and test equipment, we collected the L1C signal in Xi'an and Sanya, China, respectively. The experiments in Xi'an verify the joint positioning method to complement the GPS III and QZSS satellite constellations. Our methodology evaluates the ranging difference and positioning error of BOC and TMBOC modulation under the same environment and satellite constellation configuration in Sanya. It is also verified that the joint positioning error is less than the QZSS-only positioning due to the optimization of the satellite constellation.
机译:为了避免L1频率的信号干扰并提供各种服务,GPS已更新了一个名为L1C的现代信号,该信号已在2017年推出的三个QZSSS卫星进行测试。2018年12月,第一个GPS III卫星发起,这意味着改进的关节使用GPS和QZSS L1C信号定位。 L1C信号在信号调制,消息结构和编码中提供一系列高级设计。我们为联合L1C信号接收和处理提供了完整的方法。对于发送的信号,我们提出了一种方法和结果来收集和评估L1C信号中使用的二进制偏移载波(BOC)调制和时间复用的BOC(TMBOC)调制。使用相同的全向天线和测试设备,我们分别在西安和三亚,中国的L1C信号收集。西安的实验验证了联合定位方法,以补充GPS III和QZSS卫星星座。我们的方法论在三亚在同一环境和卫星星座配置下的BOC和TMBOC调制的测量差异误差和定位误差。还验证了由于卫星星座的优化,联合定位误差小于QZSS的定位。

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