Performance Analysis of Pmipv6 Fpmipv6 And Sdn Pmipv6

Performance Analysis of Pmipv6 Fpmipv6 And Sdn Pmipv6

Performance Analysis of Pmipv6 Fpmipv6 And Sdn Pmipv6 In Sdn Enabled Networks

Implementation plan:
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Scenario 1: Using PMIPv6 protocol:
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Step 1: Initially, we will construct an SDN enabled network with 50 Mobile nodes, 3 switches and 1 controller.

Step 2: Next, we will implement the Proxy Mobile IPv6 (PMIPv6) protocol to manage mobility.

Step 3: Next, we simulate and collect network data such as timestamp, flow ID, src/dst IP, packet size, packets/sec, send/receive times, delay and throughput.

Step 4: Finally, we plot and analyze the following performance metrics:

4.1: Number of Mobile Nodes vs Latency (ms)
4.2: Number of Mobile Nodes vs Packet Loss Ratio (%)
4.3: Number of Mobile Nodes vs Packet Delivery Ratio (%)
4.4: Number of Mobile Nodes vs Throughput (mbps)

Scenario 2: Using FPMIPv6 protocol:
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Step 1: Initially, we will construct an SDN enabled network with 50 Mobile nodes, 3 switches and 1 controller.

Step 2: Next, we will implement the Fast Proxy Mobile IPV6 (FPMIPv6) protocol to manage mobility.

Step 3: Next, we simulate and collect network data such as timestamp, flow ID, src/dst IP, packet size, packets/sec, send/receive times, delay and throughput.

Step 4: Finally, we plot and analyze the following performance metrics:

4.1: Number of Mobile Nodes vs Latency (ms)
4.2: Number of Mobile Nodes vs Packet Loss Ratio (%)
4.3: Number of Mobile Nodes vs Packet Delivery Ratio (%)
4.4: Number of Mobile Nodes vs Throughput (mbps)

Scenario 3: Using SDN-PMIPv6 protocol:
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Step 1: Initially, we will construct an SDN enabled network with 50 Mobile nodes, 3 switches and 1 controller.

Step 2: Next, we will implement the SDN-Proxy Mobile IPv6 (SDN-PMIPv6) protocol to manage mobility.

Step 3: Next, we simulate and collect network data such as timestamp, flow ID, src/dst IP, packet size, packets/sec, send/receive times, delay and throughput.

Step 4: Finally, we plot and analyze the following performance metrics:

4.1: Number of Mobile Nodes vs Latency (ms)
4.2: Number of Mobile Nodes vs Packet Loss Ratio (%)
4.3: Number of Mobile Nodes vs Packet Delivery Ratio (%)
4.4: Number of Mobile Nodes vs Throughput (mbps)

Software Requirements:
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1. Development Tool: OMNeT++ 6.0.1 with INET Framework
2. Operating System: Windows 10 (64-bit) or above

Note:
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1) If the proposed plan does not fully align with your requirements, please provide all necessary details—including steps, parameters, models, and expected outcomes—in advance. Kindly ensure that any missing configurations or specifications are clearly outlined in the plan before confirming.

2) If there’s no built-in solution for what the project needs, we can always turn to reference models, customize our own, different math models or write the code ourselves to fulfil the process.

3) If the plan satisfies your requirement, Please confirm with us.

4) Project based on Simulation only.

Live Tasks
Technology Ph.D MS M.Tech
NS2 75 117 95
NS3 98 119 206
OMNET++ 103 95 87
OPNET 36 64 89
QULANET 30 76 60
MININET 71 62 74
MATLAB 96 185 180
LTESIM 38 32 16
COOJA SIMULATOR 35 67 28
CONTIKI OS 42 36 29
GNS3 35 89 14
NETSIM 35 11 21
EVE-NG 4 8 9
TRANS 9 5 4
PEERSIM 8 8 12
GLOMOSIM 6 10 6
RTOOL 13 15 8
KATHARA SHADOW 9 8 9
VNX and VNUML 8 7 8
WISTAR 9 9 8
CNET 6 8 4
ESCAPE 8 7 9
NETMIRAGE 7 11 7
BOSON NETSIM 6 8 9
VIRL 9 9 8
CISCO PACKET TRACER 7 7 10
SWAN 9 19 5
JAVASIM 40 68 69
SSFNET 7 9 8
TOSSIM 5 7 4
PSIM 7 8 6
PETRI NET 4 6 4
ONESIM 5 10 5
OPTISYSTEM 32 64 24
DIVERT 4 9 8
TINY OS 19 27 17
TRANS 7 8 6
OPENPANA 8 9 9
SECURE CRT 7 8 7
EXTENDSIM 6 7 5
CONSELF 7 19 6
ARENA 5 12 9
VENSIM 8 10 7
MARIONNET 5 7 9
NETKIT 6 8 7
GEOIP 9 17 8
REAL 7 5 5
NEST 5 10 9
PTOLEMY 7 8 4

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