5G无线多媒体辅助营销策略制定及效果评估

J. Sensors Pub Date : 2022-08-22 DOI:10.1155/2022/6485602
Tieyan Fu, Bei Zhang
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引用次数: 0

摘要

5G无线网络因其高数据速率和对多媒体选项的鲁棒性而备受关注。基于5G无线多媒体技术,构建了多路径协同的辅助营销策略。该模型基于5G无线网络系统,解决了有效业务能耗的优化问题。通过两步求解和相关算法得到了问题的解,并通过数值仿真证明了多路径协同传输策略具有网络延迟和有效业务性能的优点。在仿真过程中,根据无线数据传输理论建立了5G NR下行系统仿真模型;在营销策略估计中,改进了决策反馈营销策略估计算法,提高了营销策略估计性能,有效地降低了网络的插入损失。结果表明:随着营销数据中心密度的增加,接收延迟减小,能效提高;当营销数据中心的视频内容数量配置为264条时,可以实现单路径传输策略下的有效业务性能。与单路径传输策略下的有效业务能耗最小值相比,多路径协同传输策略下的有效业务能耗最小值降低了11.5%,有效提高了数据的网络吞吐量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
5G Wireless Multimedia-Assisted Marketing Strategy Establishment and Effect Evaluation
5G wireless networks are attracting attention due to their high data rates and robustness to multimedia options. Based on 5G wireless multimedia technology, this paper constructs an auxiliary marketing strategy for multipath collaboration. Based on the 5G wireless network system, the model solves the optimization problem of effective service energy consumption. The solution of the problem is obtained through a two-step solution and related algorithms, and the numerical simulation proves that the multipath cooperative transmission strategy has the advantages of network delay and effective service performance. In the simulation process, a 5G NR downlink system simulation model is established according to the wireless data transmission theory; in the marketing strategy estimation, the decision feedback marketing strategy estimation algorithm is improved to improve the marketing strategy estimation performance, which can effectively reduce insertion loss of the network. The results show that with the increase of the marketing data center density, the receiving delay decreases and the energy efficiency increases; when the number of video contents in the marketing data center is configured as 264, the effective service performance under the single-path transmission strategy can be achieved. Compared with the minimum value of the effective service energy consumption under the single-path transmission strategy, the minimum value of the effective service energy consumption under the multipath cooperative transmission strategy is reduced by 11.5%, which effectively improves the network throughput of data.
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