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RRC unnecessary for DGPS messages

机译:DGPS消息不需要RRC

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摘要

The range rate correction (RRC) was useful in reducing the latency error of pseudo-range correction (PRC), and the data baud rate. With selective availability (SA) removed, the temporal variations in the corrections are much smaller, so the issue has been raised as to whether the RRC term is still necessary. We provide results on PRC and RRC variation that account for seasonal, diurnal, and regional differences in the atmosphere and receiver noise statistics. We concluded that setting RRC to zero would help to reduce latency error, and supported this conclusion by static and dynamic tests using commercial receivers and the Radio Technical Commission for Marine Services (RTCM) correction message. The results will be used for defining differential correction messages in the new version 3 standard. The U.S. Coast Guard is conducting tests to address these issues based on results to date because of the potential benefits of reducing the data requirements for differential corrections and thus making available new services over the existing radio-beacon broadcast links. The results of this paper are expected to provide a thorough understanding of the factors affecting the temporal variations of the corrections, and will support the development of standards worldwide
机译:测距速率校正(RRC)可用于减少伪测距校正(PRC)的等待时间误差和数据波特率。删除选择性可用性(SA)后,校正中的时间变化会小得多,因此就是否仍需要RRC术语提出了问题。我们提供有关PRC和RRC变化的结果,这些变化解释了大气和接收器噪声统计数据的季节性,昼夜和区域差异。我们得出的结论是,将RRC设置为零将有助于减少等待时间错误,并通过使用商用接收机和海上服务无线电技术委员会(RTCM)校正消息的静态和动态测试来支持这一结论。结果将用于定义新版本3标准中的差分校正消息。美国海岸警卫队正在进行测试以根据迄今为止的结果来解决这些问题,因为这可能会减少对差分校正的数据要求,从而通过现有的无线电信标广播链路提供新的服务,具有潜在的好处。预期本文的结果将提供对影响校正的时间变化的因素的透彻了解,并将支持全球标准的制定

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