Title :
Uplink User-Assisted Relaying in Cellular Networks
Author :
Elkotby, Hussain ; Mai Vu
Author_Institution :
Dept. of Electr. & Comput. Eng., Tufts Univ., Medford, MA, USA
Abstract :
We use stochastic geometry to analyze the performance of a partial decode-and-forward (PDF) relaying scheme applied in a user-assisted relaying setting, where an active user relays data through another idle user in uplink cellular communication. We present the geometric model of a network deploying user-assisted relaying and propose two geometric cooperation policies for fast and slow fading channels. We analytically derive the cooperation probability for both policies. This cooperation probability is further used in the analytical derivation of the moments of intercell interference power caused by system-wide deployment of this user-assisted PDF relaying. We then model the intercell interference power statistics using the Gamma distribution by matching the first two moments analytically derived. This cooperation and interference analysis provides the theoretical basis for quantitatively evaluating the performance impact of user-assisted relaying in cellular networks. We then numerically evaluate the average transmission rate performance and show that user-assisted relaying can significantly improve per-user transmission rate despite of increased intercell interference. This transmission rate gain is significant for active users near the cell edge and further increases with higher idle user density, supporting user-assisted relaying as a viable solution to crowded population areas.
Keywords :
cellular radio; cooperative communication; decode and forward communication; fading channels; gamma distribution; radiofrequency interference; relay networks (telecommunication); Gamma distribution; average transmission rate; cellular networks; cooperation policies; cooperation probability; fading channels; intercell interference power statistics; partial decode and forward relay; stochastic geometry; uplink user assisted relaying; Base stations; Channel models; Fading; Geometry; Interference; Relays; Wireless communication; User-assisted relaying; partial decode-and-forward; stochastic geometry; user-assisted relaying;
Journal_Title :
Wireless Communications, IEEE Transactions on
DOI :
10.1109/TWC.2015.2438821