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Improved LMS predictive link triggering for handover in HAPS communication system

机译:HAPS通信系统中用于切换的改进的LMS预测链路触发

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In stratosphere, the cell handover performances of high altitude platform station (HAPS) communication system was affected by the quasi-stationary state of platform. The traditional handover algorithms based on the fixed thresholds usually can effectively deal with the handover issue caused by terminals' mobility. However given the platform disturbances, these algorithms show poor handover. At this point, the adaptive handover algorithm was proposed to trigger handover based on signal strength predicted by improved least mean square (LMS). Firstly the power model of quasi-stationary HAPS was established. Secondly the period of handover detection can be set appropriate value according to the speed of user terminals. Then the handover triggering is determined by the relationship between predicted signal strength and confidence level. Simulation results show that compared with traditional fixed thresholds, the proposed algorithm can effectively reduce the number of unnecessary handover, and keeps the ratio of radio link failure less than 1% for different speed terminals.
机译:在平流层中,高空平台站(HAPS)通信系统的小区切换性能受到平台的准平稳状态的影响。传统的基于固定阈值的切换算法通常可以有效地处理由于终端移动性引起的切换问题。但是,由于平台干扰,这些算法显示出较差的切换。在这一点上,提出了一种自适应切换算法,该算法基于改进的最小均方(LMS)预测的信号强度来触发切换。首先建立了准平稳HAPS的功率模型。其次,可以根据用户终端的速度将切换检测的周期设置为适当的值。然后,通过预测信号强度和置信度之间的关系来确定切换触发。仿真结果表明,与传统的固定门限相比,该算法可以有效减少不必要的切换次数,并且对于不同速度的终端,无线链路的故障率保持在1%以内。

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