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Three-dimensional millimetre wave beam tracking based on handset MEMS sensors with extended Kalman filtering

机译:基于带有扩展卡尔曼滤波的手机MEMS传感器的三维毫米波光束跟踪

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摘要

Due to the narrow beam in millimetre wave communication for future 5G networks, small device movements in the form of either self-rotation or displacement can result in serious power loss. In this paper, a three-dimensional (3-D) beam tracking method employing extended Kalman filtering (EKF) is proposed based on antenna arrays and the three smart phone sensors, which are gyroscope, accelerometer and magnetometer, embedded in the micro-electro-mechanical system (MEMS) inside the smart phone. The EKF-based location tracking is also incorporated into the design by combing the data from direction of arrival (DoA) and time of arrival (ToA) estimation results of the user node (UN), since accurate UN location information is also very important in the process of beam tracking to achieve beam alignment between the access node (AN) and the UN.
机译:由于毫米波通信中用于未来5G网络的光束较窄,因此以自转或位移形式出现的小型设备移动可能会导致严重的功率损耗。本文提出了一种基于天线阵列和微电子传感器中嵌入的陀螺仪,加速度计和磁力计的三个智能手机传感器的扩展卡尔曼滤波(EKF)的三维(3-D)波束跟踪方法手机内部的机械系统(MEMS)。通过结合来自用户节点(UN)的到达方向(DoA)和到达时间(ToA)估计结果的数据,基于EKF的位置跟踪也被纳入设计中,因为准确的联合国位置信息在波束跟踪以实现接入节点(AN)与UN之间的波束对齐的过程。

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