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In this article, we focus this study on a handover policy in wireless relay systems.
In this section, we compare the performance of the RMPA handover and an IEEE 802.16 HHO strategy with a handover policy based on SNR, by measuring all packets arriving from the BS.
To schedule the handover process efficiently, the RMPA strategy makes use of a context aware handover policy; that is, a handover policy based on the mobile node mobility pattern, the time required to perform the handover, the neighboring network conditions, the data traffic profile, the received power signal, and current location and speed information of the train.
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In other words, it does not define any handover policy for selecting the best instant at which to initiate handover procedures.
The work in [12] proposes a proactive handover policy using a simple mathematical model.
It can also be concluded from the handover enhancement survey carried out in "Introduction" section that a policy involving dynamic thresholds and a mixed handover policy with location and RSSI information are the most suitable for a high-speed railway domain.
This generation depends on a proper handover policy, which, at the same time, relies on accurate measurements from the different sources of information.
After the research carried out we can conclude that no current proposal covers both areas of research in enhancement techniques on the IEEE802.16 handover process: the optimization of the handover process itself and the efficient timing of the handover process in a high-speed railway scenario by making use of an optimum handover policy.
Here, a nearest distance handover policy and a biggest channel gain handover policy are taken as the comparative policies.
In this section, the optimality equations which maximize the expected total reward are proposed, and following that, a VIA is used to determine a stationary optimal handover policy.
To confirm that the data loss decreases if the handover takes place closer to the midpoint, a distance-based handover policy with varying values for Distance_Threshold1 (scanning threshold) and Distance_Threshold2 (handover threshold) was used.
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