Joint processing between base stations is a promising technique to improve the quality of service to users at the cell edge, but this technique poses tremendous requirements on the backhaul signaling capabilities, such as the distribution of channel state information and the precoding weights to the base stations involved in joint processing. Partial joint processing is a technique aimed to reduce feedback load, in one approach the users feed back the channel state information of the best links based on a channel gain threshold mechanism. However, it has been shown in the literature that the reduction in the feedback load is not reflected in an equivalent backhaul reduction, unless additional scheduling or precoding techniques are applied. The reason is that reduced feedback from users yields sparse channel state information at the Central Coordination Node. Under these conditions, existing linear precoding techniques fail to remove the interference and reduce backhaul, simultaneously, unless constraints are imposed on scheduling. In this paper, a partial joint processing scheme with efficient backhauling is proposed, based on a stochastic optimization algorithm called particle swarm optimization. The use of particle swarm optimization in the design of the precoder promises efficient backhauling with improved sum rate.
[1]
3rd Generation Partnership Project; Technical Specification Group Radio Access Network; Evolved Universal Terrestrial Radio Access (e-utra); Further Advancements for E-utra Physical Layer Aspects (release 9)
,
2022
.
[2]
Andries Petrus Engelbrecht,et al.
Fundamentals of Computational Swarm Intelligence
,
2005
.
[3]
Behrooz Makki,et al.
EU FP7 INFSO-ICT-247223 ARTIST4G, D1.2 Innovative advanced signal processing algorithms for interference avoidance
,
2010
.
[4]
James Kennedy,et al.
Particle swarm optimization
,
2002,
Proceedings of ICNN'95 - International Conference on Neural Networks.
[5]
Russell C. Eberhart,et al.
Parameter Selection in Particle Swarm Optimization
,
1998,
Evolutionary Programming.
[6]
Tommy Svensson,et al.
On the Performance of Joint Processing Schemes over the Cluster Area
,
2010,
2010 IEEE 71st Vehicular Technology Conference.
[7]
David Gesbert,et al.
Efficient Selective Feedback Design for Multicell Cooperative Networks
,
2011,
IEEE Transactions on Vehicular Technology.
[8]
Shaoqian Li,et al.
Optimal Multiuser MIMO Linear Precoding with LMMSE Receiver
,
2009,
EURASIP J. Wirel. Commun. Netw..