Title :
Packet-wise vertical handover for unlicensed multi-standard spectrum access with cognitive radios
Author :
Gambini, Jonathan ; Simeone, Osvaldo ; Bar-Ness, Yeheskel ; Spagnolini, Umberto ; Yu, Takki
fDate :
12/1/2008 12:00:00 AM
Abstract :
In this letter, packet-by-packet vertical handover is investigated as a means to improve the performance of unlicensed spectrum access. The analysis focuses on the optimization of a channel access strategy for a cognitive multi-standard radio node that has the capability to switch between two orthogonal uplink radio interfaces, based on long-term channel state information. The radio interfaces differ for coverage and quality of service (QoS) requirements of primary users. The proposed strategy prescribes a cross-layer selection of physical-layer (transmitting powers) and medium access control layer (handover probability) parameters and is designed to maximize secondary throughput while guaranteeing the primary QoS constraints. Analysis and numerical results bring insight into the impact of network topology, measurement errors and primary QoS constraints on the optimal system design and corresponding performance.
Keywords :
cognitive radio; quality of service; telecommunication network topology; QoS requirements; channel access strategy; channel state information; cognitive radios; handover probability; measurement errors; medium access control layer; network topology; optimal system design; orthogonal uplink radio interfaces; packet-by-packet vertical handover; packet-wise vertical handover; physical-layer; quality of service; unlicensed multistandard spectrum access; Channel state information; Cognitive radio; Information analysis; Measurement errors; Media Access Protocol; Network topology; Performance analysis; Quality of service; Switches; Throughput; Vertical handover, unlicensed spectrum access,; cognitive radio, systems of interacting queues.;
Journal_Title :
Wireless Communications, IEEE Transactions on
DOI :
10.1109/T-WC.2008.070824