The LTE Structure was constructed to support multiple User Equipment which can access the network by utilizing the standard signature on a contention based random access procedure.
For the performance evaluation LTE handover in 5G Network, the data framing can be molded into various frames by Modulation Coding Scheme or MCS. All WLAN technologies are based on station sense technology before sending a packet into the network.
In the proposed research paper the performance evaluation LTE handover in 5G Network is examined by Random Access Network or RAN to determine the delay and throughput. The simulation used is functioning on File Transfer Protocol and HyperText Transfer Protocol (HTTP). The range for packet size for File Transfer Protocol is 200 KB to 500 KB whereas for HTTP the range is 500 KB to 1 MB which are real picture sizes.
In the proposed research, the performance evaluation LTE handover in 5G Network is determined by modulating the Access Point from 20 to 50. Also, the number of UE at eNode-B is equal to the user at Access Point.
As per the current model, multiple D2D devices result in serious system challenges like the Radio Access Network challenge that leads to overload and congestion.
The station transfers the packet to Access Point by working on CSMA/CA technology via layer 2 switch to IP Cloud and Gateway. To evaluate the performance, the delay of the simulation is validated according to which the delay on FTP is longer than HTTP. The reason for the delay is that the CSMA/CA mechanism listens to the medium and the time gets consumed in a microsecond. In the situation of packet collision, the delay is increased.
As the performance evaluation LTE handover in 5G Network for the HTTP throughput is higher than FTP by almost 10 times which is 300 Mbps at 20 stations. On the other hand, FTP throughput is 25 Mbps at 20 stations. The data rate on MCS index 25 is 28.336 Mbps.
For the future proposal, there is a need to of enhancement and performance evaluation LTE handover in 5G Network mechanism that can help in increasing the stations. In the situation where the UE is expecting a new target Access Point for handover, the Access Point should be enabled to provide a new UE by shortening the delay because of congestion.
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