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首页> 外文期刊>Journal of Electromagnetic Waves and Applications >An electromagnetic-time delay method for determining the positions and velocities of mobile stations in a GSM network - Abstract
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An electromagnetic-time delay method for determining the positions and velocities of mobile stations in a GSM network - Abstract

机译:一种用于确定GSM网络中移动站位置和速度的电磁 - 时间延迟方法 - 摘要

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摘要

In this paper we propose a hybrid method to determine the positions and velocities of mobile stations (MSs) in a GSM (Global System for Mobile communication) network. The proposed method can be implemented within the existing GSM standard without any additional hardware changes. The hybrid method operates at two levels. At a lower level, time delay method (TDM) is used to obtain coarse values for distances between a MS and three or more Base Transceivers (BTSs). At a higher level, field strength method (FSM) uses the coarse distances estimates obtained using TDM as initial values to obtain refined values for distances. The accurate position of a MS then can be determined by the refined distance values. Subsequently, the velocity of the MS be can obtained using the FSM estimates of the sequential positions of the MS. Least mean square (LMS) method is used to determine the refined distances in the FSM algorithm and to estimate the actual position of the MS from the refined distance estimates. The proposed method was tested for several cases, including complex MS trajectories and varying speeds along the trajectory. The heights of the BTSs were allowed to vary between 20 m and 60 m. The convergence characteristics were found to be satisfactory. For a SNR of 20 dB, position measurements accuracy in a roughly 4 km(2) cell is 30 m in a Gaussian channel, 60 m in a Rayleigh channel and 80 m in a Rician channel. The velocity accuracy for a MS traveling at 200 km/h is 15 km/h in a Gaussian channel, 30 km/h in a Rayleigh channel and 50 km/h in a Rician Channel. [References: None]
机译:在本文中,我们提出了一种混合方法来确定GSM(移动通信全球系统)中的移动站(MSS)的位置和速度。该方法可以在现有的GSM标准中实现,而无需任何额外的硬件变化。混合方法在两个级别下运行。在较低的级别下,时间延迟方法(TDM)用于获得MS和三个或更多个基站收发器(BTS)之间的距离的粗略值。在更高的级别下,场强方法(FSM)使用使用TDM获得的粗略距离估计作为初始值以获得距离的精制值。然后,MS的精确位置可以通过精细距离值确定。随后,可以使用MS的连续位置的FSM估计来获得MS的速度。最小均方(LMS)方法用于确定FSM算法中的精细距离,并估计来自精细距离估计的MS的实际位置。该方法进行了几种情况,包括复杂的MS轨迹和沿轨迹的不同速度。允许BTS的高度在20米和60米之间变化。发现收敛特征是令人满意的。对于20dB的SNR,在高斯通道中,大约4km(2)个电池的位置测量精度为30米,在Rayleigh通道中为60米,在瑞典通道中的80米。高斯频道的高斯频道,瑞利通道30公里/小时,距离瑞利通道30公里/小时,设有速度准确度,设有瑞典频道。 [参考:无]

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