SDN WiFi Projects

SDN WiFi Projects

SDN WiFi Projects maturing day by day in the next-gen trend of both SDN and wifi. SDN supports the next-generation cellular network since it overcomes the current generation problems and enables better scalability in terms of supports many users and dense mobile scenarios. The use of wifi with SDN will enable high speed, ductility, and scalability. The full list of active wifi versions supports SDN as follows.

  • Wi-Fi 6 (IEEE 802.11ax) 
  • WiFi 5 (IEEE 802.11ac)
  • Wi-Fi 4 (IEEE 802.11n)
  • WiFi 3 (IEEE 802.11g)
  • Wi-Fi 2 (IEEE 802.11a)
  • WiFi 1 (IEEE 802.11b)

   An SDN component has switches, which are used to communicate controller with devices in SDN Wifi networks. SDN agree to the controller and switches to avoid the traffic and keep up to send services for request by nonstop. It allows the servers to tell the switches where to send packets. SDN is intending to manage the following through wifi. 

  • Interference avoidance
  • Radio spectrum allocation
  • Handover
  • Load balancing and also security
  • More number of devices connection
  • Mobility management and also end-to-end control 

   From the above, we know that SDN-WiFi monitors traffic to maintain load at access points (APS). In the controller, multiple queues will deploy to splits the network traffic. It also supports QoS metrics such as delay, packet loss, and throughput. Let’s check one of our SDN wifi Projects flow, 

Step by step implementation of sdn wifi projects

   Above all, this shows the design of the sample project in SDN-WiFi since this is the only trial for you. We have nearly 120+ concepts like handover and SDN load balancing. As a matter of fact, it first sees from the existing and current trends to update all ideas in SDN. Then, we have found that whether it supports wifi to gain ultra-results.

MULTI-TIERED ARCHITECTURE 

  • Tier 1 (Handover)
    • Entities: Mobile Devices, Sensors, Access Points and so on 
    • Method: Meta-Heuristic Algorithm 
  • Tier 2 (Authentication)
    • Entities: All edge nodes (wifi) 
    • Method: Hybrid Symmetric and also Asymmetric 
  • Tier 3 (Packet, and also Switch Migration)
    • Entities: Physical and Virtual Switches
    • Method: Multi-Criteria Decision Making
  • Tier 4 (Monitoring and Resource Allocation)
    • Entities: Global Controller, and Local Controllers
    • Method: Tree with Markov Models 

SDN WIFI PROJECTS FUTURE IDEAS

  • SDN- Sensor Model For Industrial 4.0
  • Fault Data Detection From side to side Machine Learning
  • AI Sponsored Topology And Also Route Optimization
  • Traffic Classification (VoIP and FTP)
  • Flow Rule and also Switch Deployment 
  • Optimal Controller Placement 
  • SDN-WiFi In Blockchain Forensics Architecture
  • And also many more

   In view of this, we would feel that you satisfy our ideas and tracks with phd assistance. On the whole, we convert it into real, i.e., expected outputs on your mind. Even though if the idea is hard, we all together to work on it since a team will give the best result. As a result of this wide option, we have more happy customers. Most of all, you may be from any place in the world. Yet, we are “ON” at all hours to link with you.

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

Workflow

YouTube Channel

Unlimited Network Simulation Results available here.