A Reliable Target Evolved Node B Selection Scheme in LTE-Advanced Handover
Sayan Kumar Ray, NZ Jhanjhi, Akbar Hossain

TL;DR
This paper introduces a new LTE-A handover scheme that enhances reliability and speed by selecting target eNBs based on orientation, load, and signal strength, reducing measurement time and improving performance.
Contribution
It proposes a novel TeNB selection method using three parameters, improving handover reliability and efficiency over existing LTE-A techniques.
Findings
The scheme reduces handover measurement time significantly.
It outperforms traditional signal strength-based handover methods.
Simulation results confirm improved handover reliability and speed.
Abstract
The problem of improving the handover performance in Long Term Evolution-Advanced (LTE-A) networks has not been fully solved yet. Traditionally, the selection of the target Evolved Node B (TeNB) in the handover procedure is based on the signal strength measurements, which may not produce a reliable handover. A reliable handover method may reduce the instances of unstable or frequent handovers that otherwise waste network resources. The signal strength measurement process is inherently time consuming as the user equipment (UE) has to measure multiple neighboring eNB (NeNB) frequencies in each measurement period. An efficient handover method is required to improve the overall performance of such systems. In this paper we propose a reliable and fast TeNB selection scheme for LTE-A handover. The proposed scheme outperforms the existing LTE-A handover methods. The improved performance is…
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Taxonomy
TopicsIPv6, Mobility, Handover, Networks, Security · Advanced MIMO Systems Optimization · Telecommunications and Broadcasting Technologies
