Optimal relay selection based on social threshold for D2D communications underlay cellular networks

Author(s):  
Chenbi Li ◽  
Fan Jiang ◽  
Xianchao Wang ◽  
Binyan Shen
Author(s):  
Shamganth K ◽  
Said Shafi Abdullah Al-Shabibia

Device-to-device (D2D) communications underlayed to a cellular infrastructure has recently been proposed to increase spectrum and energy efficiency. Relay selection plays a vital role in cooperative networks. In D2D communication, if the chosen relay is not the best relay, then the whole communication will not be successful from source node to destination node. Also to choose the optimal relays, if more feedback and time delay exists between the source nodes and relay node then it leads to degradation of spectral efficiency.  A survey on the relay selection techniques used with D2D communications and the challenges and design issues associated with the integration of D2D in 5G cellular network is presented.


Sensors ◽  
2020 ◽  
Vol 20 (21) ◽  
pp. 6007
Author(s):  
Ushik Shrestha Khwakhali ◽  
Prapun Suksompong ◽  
Steven Gordon

Device-to-device communications in underlay mode has emerged as a promising way to enhance spectrum efficiency in cellular networks. Recently, relay selection in D2D communications underlaying cellular networks is gaining more research interest. In this paper, we propose two relay selection schemes for D2D communications underlaying cellular networks, Midpoint Relay Selection using Social Trust and Battery Level (MRS-ST-BL) and Midpoint Relay Selection using Social Distance and Battery Level (MRS-SD-BL). These proposed schemes utilize battery power level information of devices together with social trust information of users in the network for relay selection. For performance evaluation, initially we show that the throughput of state-of-the-art schemes Hybrid Relay Selection (HRS) and our previously proposed schemes Midpoint Relay Selection using Social Trust (MRS-ST) and Midpoint Relay Selection Using Social Distance (MRS-SD) decrease, when relays have varying battery power. Then, we compare the performance of our proposed schemes against existing schemes including HRS, MRS-ST and MRS-SD. The performance comparison is done at various social trust scenarios and device densities. We show that our proposed schemes can significantly improve the throughput of D2D communications, particularly when relays have different battery power levels in weak social trust scenarios. Finally, we show that the performance of our proposed scheme MRS-ST-BL varies with the change in battery power threshold.


Automatika ◽  
2017 ◽  
Vol 58 (4) ◽  
pp. i-i
Author(s):  
Hoang-Sy Nguyen ◽  
Thanh-Sang Nguyen ◽  
Miroslav Voznak

2018 ◽  
Vol 5 (4) ◽  
pp. 2323-2332 ◽  
Author(s):  
Zufan Zhang ◽  
Porui Zhang ◽  
Dan Liu ◽  
Shaohui Sun

Sign in / Sign up

Export Citation Format

Share Document