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基于流量感知的5G基站上D2D流拥塞检测

Flow Sensing-Based Congestion Detection for D2D Streaming on a 5G gNB.

作者信息

Lee Chongdeuk

机构信息

Division of Electronic Engineering, Jeonbuk National University, Jeonju-si 54896, Korea.

出版信息

Sensors (Basel). 2021 Dec 30;22(1):258. doi: 10.3390/s22010258.

Abstract

To provide high-quality streaming services in device-to-device (D2D) communications, performance parameters such as encoding rate, decoding rate, and flow rate should be detected and monitored. The proposed algorithm provides a method to detect time streaming for traffic flows in D2D communications, and a sequence to detect rate imbalance. This paper proposes a new FS-CDA (flow sensing-based congestion detecting algorithm) to prevent high congestion rates and assist an optimized D2D streaming service in 5G-based wireless mobile networks. The proposed algorithm detects and controls flow imbalance for streaming segments during D2D communications, and it includes operations such as transmission rate monitoring, rate adjustment functions, and underflow and overflow sensing for these operations. The paper aims to effectively control traffic flow rates caused by adjacent channel bandwidth, high bit rate error, and heterogeneous radio interference, and to enhance the performance of D2D streaming services by performing such operations. The proposed algorithm for D2D streaming services is measured by deriving the individual weight of certain versions of a streaming flow. Based on the given operations, the simulation results indicated that the proposed algorithm has better performance with respect to average congestion control ratio, PSNR, and average throughput than other methods.

摘要

为了在设备到设备(D2D)通信中提供高质量的流服务,应检测和监控诸如编码率、解码率和流率等性能参数。所提出的算法提供了一种检测D2D通信中业务流的时间流的方法,以及一种检测速率不平衡的序列。本文提出了一种新的FS-CDA(基于流感知的拥塞检测算法),以防止高拥塞率,并在基于5G的无线移动网络中辅助优化D2D流服务。所提出的算法在D2D通信期间检测并控制流段的流不平衡,它包括诸如传输速率监控、速率调整功能以及这些操作的下溢和溢出检测等操作。本文旨在有效控制由相邻信道带宽、高比特率误差和异构无线电干扰引起的业务流率,并通过执行此类操作来提高D2D流服务的性能。所提出的D2D流服务算法是通过推导流的某些版本的个体权重来衡量的。基于给定的操作,仿真结果表明,所提出的算法在平均拥塞控制率、PSNR和平均吞吐量方面比其他方法具有更好的性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8040/8749687/39b57d5679f8/sensors-22-00258-g001.jpg

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