论文标题
基于移交计数统计数据的流动性状态检测细胞连接的无人机
Mobility State Detection of Cellular-Connected UAVs based on Handover Count Statistics
论文作者
论文摘要
为了确保对航空用户设备(UE)的可靠和有效的移动性管理,估计蜂窝连接的无人机(UAV)的速度至关重要,因为这可以帮助提高蜂窝网络的服务质量。 3GPP LTE标准使用UE在预定义的时间段内进行的移交数量来估计速度和移动性状态。在本文中,我们将移交数(HOC)的概率质量函数(HOC)介绍为蜂窝连接的无人机高度和速度,HOC测量时间窗口以及不同的地面基站(GBS)密度的函数。之后,我们为无人机的速度估算得出CRAMER-RAO下限(CRLB),并为无人机的速度提供了简单的偏置估计器,取决于GBS密度和HOC测量周期。有趣的是,对于低触发时间(TTT)参数,偏置估计器变成最小方差无偏估计器(MVUE)。通过利用此速度估计器,我们研究了根据LTE规范检测到无人机的迁移率低,中或高的迁移率的问题。使用CRLB和我们提出的MVUE,我们将速度估计和迁移率检测的准确性提高,因为GBS密度和HOC测量窗口增加。我们的分析还表明,相对于TTT参数,所提出的估计量的准确性不会显着变化。
To ensure reliable and effective mobility management for aerial user equipment (UE), estimating the speed of cellular-connected unmanned aerial vehicles (UAVs) carries critical importance since this can help to improve the quality of service of the cellular network. The 3GPP LTE standard uses the number of handovers made by a UE during a predefined time period to estimate the speed and the mobility state efficiently. In this paper, we introduce an approximation to the probability mass function of handover count (HOC) as a function of a cellular-connected UAV's height and velocity, HOC measurement time window, and different ground base station (GBS) densities. Afterward, we derive the Cramer-Rao lower bound (CRLB) for the speed estimate of a UAV, and also provide a simple biased estimator for the UAV's speed which depends on the GBS density and HOC measurement period. Interestingly, for a low time-to-trigger (TTT) parameter, the biased estimator turns into a minimum variance unbiased estimator (MVUE). By exploiting this speed estimator, we study the problem of detecting the mobility state of a UAV as low, medium, or high mobility as per the LTE specifications. Using CRLBs and our proposed MVUE, we characterize the accuracy improvement in speed estimation and mobility state detection as the GBS density and the HOC measurement window increase. Our analysis also shows that the accuracy of the proposed estimator does not vary significantly with respect to the TTT parameter.