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首页> 外文期刊>Annales des Telecommunications >Indoor positioning with GPS and GLONASS-like signals use of new codes and a repealite-based infrastructure in a typical museum building
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Indoor positioning with GPS and GLONASS-like signals use of new codes and a repealite-based infrastructure in a typical museum building

机译:在典型的博物馆建筑中,使用GPS和类似GLONASS的信号进行室内定位,使用新代码和基于重复矿物的基础设施

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In order to propose a solution for the indoor positioning question, several tests with the repealite-based (similar to Pseudolites and repeaters) system have been carried out. This system uses a single Global Navigation Satellite System signal transmitted by all the indoor antennas. These signals may interfere with the satellite ones outdoors. Hence, the noise level at the outdoor receiver will be higher and the error range larger. To avoid these effects, new codes called Indoor-Modified Binary Offset Carrier codes that are capable of reducing interference with outdoor signals are generated. To analyse the performance of these codes, we carry out a theoretical expression of cross-correlation functions. Then the deployment of the repealite based system in a typical building is simulated. The goal of this step is to compare the interference performance of the new code with the one already used (Gold codes for GPS band and maximal sequence for Glonass one). A specific interest is given to the spectral interference when adding the new signal's spectrum in the considered frequency band.
机译:为了提出一种室内定位问题的解决方案,已经进行了多次基于基于重复珍珠岩的(类似于伪卫星和中继器)系统的测试。该系统使用所有室内天线发送的单个全球导航卫星系统信号。这些信号可能会干扰室外的卫星信号。因此,室外接收器处的噪声水平将更高并且误差范围更大。为了避免这些影响,将生成能够减少对室外信号干扰的称为室内修改二进制偏移载波代码的新代码。为了分析这些代码的性能,我们进行了互相关函数的理论表达式。然后,模拟了基于重复矿物的系统在典型建筑物中的部署。此步骤的目标是将新代码的干扰性能与已使用的代码(GPS频段的黄金代码和Glonass的最大序列)进行比较。在考虑的频带中添加新信号的频谱时,特别需要关注频谱干扰。

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