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A cooperative positioning with Kalman filters and handover mechanism for indoor microcellular visible light communication network

机译:室内微蜂窝可见光通信网络与卡尔曼滤波器和切换机制的协同定位

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摘要

We propose a novel handover scheme for indoor microcellular visible light communication (VLC) network. With such a scheme, the room, which is fully coverage by light, is divided into several microcells according to the layout of light-emitting diodes (LEDs). However, the directionality of light arises new challenges in keeping the connectivity between the mobile devices and light source under the mobile circumstances. The simplest solution is that all LEDs broadcast data of every user simultaneously, but it wastes too much bandwidth resource, especially when the amount of users increases. To solve this key problem, we utilize the optical positioning assisting handover procedure in this paper. In the positioning stage, the network manager obtains the location information of user device via downlink and uplink signal strength information, which is white light and infrared, respectively. After that, a Kalman filter is utilized for improving the tracking performance of a mobile device. Then, the network manager decides how to initiate the handover process by the previous information. Results show that the proposed scheme can achieve low-cost, seamless data communication, and a high probability of successful handover.
机译:我们提出了一种新的室内微蜂窝可见光通信(VLC)网络的切换方案。通过这种方案,根据发光二极管(LED)的布局,被光线完全覆盖的房间被分成几个微单元。然而,在移动环境下,光的方向性在保持移动设备与光源之间的连接性方面提出了新的挑战。最简单的解决方案是所有LED同时广播每个用户的数据,但是这浪费了太多的带宽资源,尤其是当用户数量增加时。为了解决这个关键问题,我们利用了本文中的光学定位辅助切换程序。在定位阶段,网络管理器通过下行信号强度信息和上行信号强度信息分别获取用户设备的位置信息,即白光和红外。之后,利用卡尔曼滤波器来改善移动设备的跟踪性能。然后,网络管理员根据先前的信息来决定如何启动切换过程。结果表明,该方案可以实现低成本,无缝的数据通信,并且成功切换的可能性很高。

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