Radio Network Forensic with mmWave Using the Dominant Path Algorithm

Usman Rauf Kamboh, Muhammad Shahid, Hamza Aldabbas, Ammar Rafiq, Bader Alouffi, Muhammad Asif Habib, Ubaid Ullah
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Abstract

For the last two decades, cybercrimes are growing on a daily basis. To track down cybercrimes and radio network crimes, digital forensic for radio networks provides foundations. The data transfer rate for the next-generation wireless networks would be much greater than today’s network in the coming years. The fifth-generation wireless systems are considering bands beyond 6 GHz. The network design of the next-generation wireless systems depends on propagation characteristics, frequency reuse, and bandwidth variation. This article declares the channel’s propagation characteristics of both line of sight (LoS) and non-LOS (NLoS) to construct and detect the path of rays coming from anomalies. The simulations were carried out to investigate the diffraction loss (DL) and frequency drop (FD). Indoor and outdoor measurements were taken with the omnidirectional circular dipole antenna with a transmitting frequency of 28 GHz and 60 GHz to compare the two bands of the 5th generation. Millimeter-wave communication comes with a higher constraint for implementing and deploying higher losses, low diffractions, and low signal penetrations for the mentioned two bands. For outdoor, a MATLAB built-in 3D ray tracing algorithm is used while for an indoor office environment, an in-house algorithmic simulator built using MATLAB is used to analyze the channel characteristics.
基于优势路径算法的毫米波无线网络取证
在过去的二十年里,网络犯罪每天都在增长。为追踪网络犯罪和无线网络犯罪,数字取证为无线网络提供了基础。未来几年,下一代无线网络的数据传输速率将大大超过今天的网络。第五代无线系统正在考虑超过6ghz的频段。下一代无线系统的网络设计取决于传播特性、频率复用和带宽变化。本文阐述了视距和非视距信道的传播特性,用于构造和探测异常射线的路径。模拟研究了衍射损耗(DL)和频降(FD)。采用发射频率为28 GHz和60 GHz的全向圆形偶极子天线进行室内和室外测量,比较第5代两个频段的性能。毫米波通信在实现和部署上述两个频段的高损耗、低衍射和低信号穿透方面具有更高的约束。对于室外,使用MATLAB内置的三维光线跟踪算法,对于室内办公环境,使用MATLAB内置的算法模拟器对通道特性进行分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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