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基于通信盲区驻留时间的异构网络切换策略。

Heterogeneous Network Switching Strategy Based on Communication Blind Area Dwell Time.

机构信息

School of Electronics and Communication Engineering, Changchun University of Science and Technology, Changchun 130022, China.

出版信息

Sensors (Basel). 2023 Jul 5;23(13):6166. doi: 10.3390/s23136166.

Abstract

The limitation of indoor visible light coverage and the attenuation of its signal when propagating in line-of-sight has seriously affected the stable communication of receiving devices when users move randomly and also aggravated the power consumption of visible light networking systems. According to the above situation, on the basis of the heterogeneous networking of visible light communication (VLC) and RF communication integration, this article proposes a horizontal-vertical collaborative handover strategy based on the communication blind area dwell time (CBD-HVHO). Combining asymmetrically clipped optical orthogonal frequency division multiplexing (ACO-OFDM) technology with networking handover technology, ACO-OFDM is used to determine the indoor communication blind area by calculating the bit error rate (BER) value at the signal receiver while reducing the multipath interference generated by visible light signals during channel transmission. To achieve this, set the communication blind channel interruption time as the threshold time, compare the communication blind area dwell time with the threshold time, and finally combine the horizontal and vertical collaborative handover strategies based on the communication blind area dwell time. The simulation results show that the handover probability is 0.009, the average number of handovers is 1.006, and the average network throughput is 195.2826 Mbps. Compared with the previously proposed immediate vertical handover (I-VHO) scheme and the dwell vertical handover (D-VHO) scheme, the communication stability is significantly improved, and the power consumption of the network system is reduced to a certain extent.

摘要

室内可见光覆盖范围的限制以及其在视线路径中传播时信号的衰减,严重影响了接收设备在用户随机移动时的稳定通信,同时也加剧了可见光网络系统的功耗。针对上述情况,本文在可见光通信(VLC)和射频通信异构网络集成的基础上,提出了一种基于通信盲区驻留时间(CBD-HVHO)的水平-垂直协同切换策略。该策略结合非对称削波光正交频分复用(ACO-OFDM)技术和网络切换技术,通过计算信号接收器的误码率(BER)值来确定室内通信盲区,同时减少可见光信号在信道传输过程中产生的多径干扰。为此,将通信盲区中断时间设置为阈值时间,比较通信盲区驻留时间与阈值时间,并最终基于通信盲区驻留时间结合水平和垂直协同切换策略。仿真结果表明,切换概率为 0.009,平均切换次数为 1.006,平均网络吞吐量为 195.2826 Mbps。与之前提出的立即垂直切换(I-VHO)方案和驻留垂直切换(D-VHO)方案相比,该方案显著提高了通信稳定性,同时在一定程度上降低了网络系统的功耗。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f0fd/10347223/e7cbf84d1cd1/sensors-23-06166-g001.jpg

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