scholarly journals Federated learning enables intelligent reflecting surface in fog-cloud enabled cellular network

2021 ◽  
Vol 7 ◽  
pp. e758
Author(s):  
Abdullah Lakhan ◽  
Mazin Abed Mohammed ◽  
Seifedine Kadry ◽  
Karrar Hameed Abdulkareem ◽  
Fahad Taha AL-Dhief ◽  
...  

The intelligent reflecting surface (IRS) is a ground-breaking technology that can boost the efficiency of wireless data transmission systems. Specifically, the wireless signal transmitting environment is reconfigured by adjusting a large number of small reflecting units simultaneously. Therefore, intelligent reflecting surface (IRS) has been suggested as a possible solution for improving several aspects of future wireless communication. However, individual nodes are empowered in IRS, but decisions and learning of data are still made by the centralized node in the IRS mechanism. Whereas, in previous works, the problem of energy-efficient and delayed awareness learning IRS-assisted communications has been largely overlooked. The federated learning aware Intelligent Reconfigurable Surface Task Scheduling schemes (FL-IRSTS) algorithm is proposed in this paper to achieve high-speed communication with energy and delay efficient offloading and scheduling. The training of models is divided into different nodes. Therefore, the trained model will decide the IRSTS configuration that best meets the goals in terms of communication rate. Multiple local models trained with the local healthcare fog-cloud network for each workload using federated learning (FL) to generate a global model. Then, each trained model shared its initial configuration with the global model for the next training round. Each application’s healthcare data is handled and processed locally during the training process. Simulation results show that the proposed algorithm’s achievable rate output can effectively approach centralized machine learning (ML) while meeting the study’s energy and delay objectives.

2013 ◽  
Vol 340 ◽  
pp. 696-700
Author(s):  
Bai Shun Su ◽  
Bao Ding Zhang

On the analysis of the development situation of the ETC home and abroad, CC2431 wireless location function is used in the high speed highway ETC system to realize data transmission between network centre node and terminal node safely, Record passing information of the vehicle terminal by the wireless data transmission between the coordinator and vehicle terminal. A weighted centroid position algorithm is introduced to meet the position accuracy. The test results of the wireless communication between vehicle terminal and coordinator show that CC2431 wireless position system can realize vehicle omnibearing position and real time monitor in the super-speed highway.


2014 ◽  
Vol 608-609 ◽  
pp. 382-385
Author(s):  
Ying Zheng

This paper establishes a set wireless intelligent vehicle monitoring system can be used in car based on S3C2440 and UC-OS, including hardware design, software design, system terminal high-speed wireless data transmission and monitoring platform. The experimental results show that the system have high detection sensitivity and high accuracy, and that can effectively prevent drunk driving and theft has very good practical value.


2017 ◽  
Author(s):  
Jason Truman

A novel architecture of terahertz CMOS PA-less dynamic optimal load OOK modulator with low loss, high ON/OFF ratio and high data rate while no DC power consumption is proposed. The modulator is simulated in a 28-nm CMOS technology and has 3dB loss, 20dB ON/OFF ratio and 20Gbps data rate with zero DC power by utilizing digitally controlled artificial dielectric (DiCAD). The proposed terahertz modulator helps make possible 20Gbps short-range wireless data transmission at terahertz regime.


2016 ◽  
Vol 52 (24) ◽  
pp. 1999-2001 ◽  
Author(s):  
S. Diebold ◽  
K. Nishio ◽  
Y. Nishida ◽  
J.‐Y. Kim ◽  
K. Tsuruda ◽  
...  

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