A Distance-Based Power Control Scheme for D2D Communications Using Stochastic Geometry

Device-to-Device (D2D) communication is a promising technology that can potentially enhance the spectral and energy efficiency of cellular networks. To exploit this benefit in D2D-underlaid cellular networks, the co-channel interference between D2D and cellular users should be properly managed. In this paper, we propose a distributed power control scheme to mitigate interference in a D2D underlaid cellular system modeled as a random network using the mathematical tool of stochastic geometry. The proposed PC scheme compensates for large-scale path-loss effects by employing distance-dependent path-loss parameters of the D2D link and the base station, including an estimation error margin. Closed-form expressions for the coverage probability of cellular links, D2D links, and the sum rate of D2D links are derived in terms of the allocated power, density of D2D links, and path-loss exponent. The coverage performance of both cellular and D2D users is analyzed, and the analytical results are validated through simulations. Experimental results demonstrate the efficacy and advantages of our proposed scheme over other schemes by an enhancement of 20%-30% for the cellular and D2D coverage probabilities, and an increase in spectral efficiency by 60%.

[1]  Stefan Parkvall,et al.  Design aspects of network assisted device-to-device communications , 2012, IEEE Communications Magazine.

[2]  Stavros Toumpis,et al.  Interference Functionals in Poisson Networks , 2016, IEEE Transactions on Information Theory.

[3]  Tarcisio F. Maciel,et al.  Uplink Power Control with Variable Target SINR for D2D Communications Underlying Cellular Networks , 2014, 2015 IEEE 81st Vehicular Technology Conference (VTC Spring).

[4]  Dmitri Moltchanov,et al.  Distance distributions in random networks , 2012, Ad Hoc Networks.

[5]  Tarcisio F. Maciel,et al.  Power control schemes for energy efficiency of cellular and device-and-device communications , 2015, 2015 IEEE Wireless Communications and Networking Conference (WCNC).

[6]  Kandeepan Sithamparanathan,et al.  Propagation measurements for D2D in rural areas , 2015, 2015 IEEE International Conference on Communication Workshop (ICCW).

[7]  Jeffrey G. Andrews,et al.  Power Control for D2D Underlaid Cellular Networks: Modeling, Algorithms, and Analysis , 2013, IEEE Journal on Selected Areas in Communications.

[8]  G. Grimmett,et al.  Probability and random processes , 2002 .

[9]  Andrea Abrardo,et al.  A comparative study of power control approaches for device-to-device communications , 2013, 2013 IEEE International Conference on Communications (ICC).