Ns3 Projects with Source Code

            NetSim is the distinct event simulator to cover the broad range of networks such as sensor, mobile, wireless and wired. Consequently, drag and drop are the most significant features for NetSim which is considered as the user friendly and simple GUI functions for the applications, devices, links and etc.

NetSim Workflow to Create a Project

  • The user have to create the network scenario through the utilization of NetSim GUI and XML config files
  • GUI based on NetSim is used to click and drop the applications, links, devices and etc. towards the environment
  • Properties are all set through the click and the layer wise parameters are capable for the editing process
  • Automatic verification is included in the complicated networks and model large networks through the utilization of XML config file
  • Discrete event simulation is functioning through the command line interface and GUI
  • The log packets are used to trace the report parameters including error, overhead, payload, queuing time and arrival time in all the packets for the flow of network
  • Protocol finite state machine transitions are used in all the events to trace the record event along with the information such as event type, event ID, time stamp and etc.
  • The animate packet flow is process through the wired and wireless links
  • Error packets, data packets and control packets are differentiated through the color variations
  • Animation control are deployed for the process such as pause, play and simulation time line
  • The performance metrics are examined in various levels such as application, queue, link, sub network, network and etc.

Routing and Switching in NetSim

  • Comprehend the public IP address and network address translation (NAT)
  • Know about the access and trunk links in VLANs
  • Apprehend the operations based on VLAN in L2 and L3 switches
  • Simulate and learn the spanning tree protocol
  • Recognize the working process of ARP and IP forwarding within a LAN and across a router
  • Performance of FIFO, Priority and WFQ queuing disciplines in routers
  • Work to form the routing table based on RIP and OSPF

          Due to these processes of routing and switching in NetSim, the users can feel free to select the research field as network simulation. Now, shall we discuss about the transmission control protocol in NetSim?

Transmission Control Protocol in NetSim

  • TCP congestion control algorithms
  • Mathematical modeling of TCP throughput performance
  • Reliable data transfer with TCP
  • Overview of TCP connection management

WiFi IEEE 802.11 in NetSim

  • Multi AP WiFi networks
  • Channel allocation
  • Quality of Service (QoS) in 802.11e based WLANs
  • WiFi
  • UDP download throughput based process
  • Performance of WiFi as distance among the AP and STA is get increased

          Above mentioned is about the significance of WiFi IEEE 802.11 in NetSim along with that our research professionals have enlisted the significant phases of LTE and mobile communication in NetSim in the following.

LTE and Mobile Communication in NetSim

  • Recognize the process of call blocking probability which is different from the load on GSM network and that is continuously increased
  • Comprehend the working process of LTE device to device communication
  • The users have to know the throughput of LTE network differentiated as the distance among the eNB and UE is increased
  • Simulate and study LTE handover procedure
  • The throughput of LTE network is varying from the channel bandwidth and it is capable to alter the eNB

NetSim Projects

            NetSim is used for the emulation process in real time traffic as the live from real devices. The NetSim is providing some assistance for the wireless techs based on WiFi towards the 5G new radios. Similarly, it is functioning as the easy process with some functions based on graphical input and GUI in this process of NetSim pro version.

5G NR in NetSim

           In general, NetSim is denoted as the packet simulator, system level, full stack and end to end are used for various functions such as the universities and research institutions based on network research and development and it is capable to quickly modify and debug the protocol source codes through the utilization of visual studio. In addition, the mobile network regulators and operators are assessing the feasibility based on 5G developments. NetSim is capable to examine the end to end latencies, peak throughout and network capacity through the tools analysis and leverage off the shelf models. NetSim is supportive for the latest process of advancements in 5G such as.

  • SA and NSA modes
  • mmWave propagation
  • beanformaing
  • MIMO

        Consequently, the range of all the above mentioned scenarios is inbuilt with the technology. Now, let’s have a look and the devices based on NetSim 5G NR library.

  • Creating variations among the indoor and outdoor propagation
  • 5G core
  • UPF
  • It is abbreviated as user plane functions and it is about the data plane components which are used to regulate the user data
  • SMF
  • Session management function is abbreviated as SMF and it is functioning as the control plane entity based on the session management
  • AMF
  • It is considered as the access mobility function that helps to coordinates the 5G standalone registration process
  • gNB
  • It related to the LTE eNB functions based on 5G NR
  • UE
  • It is denoted as the user equipment which is parallel to LTE UE in 5G NR

LTE Based VANETs in NetSim

         The VANETs based on LTE is capable to simulate the process through the utilization of NetSim. For instance, the LTE is used in vehicles to send and receive the data in the remote server to make the smart decisions based on driving and planning the routing process. The most significant issue for the development of algorithms are conformed through the connection among vehicles in the LTE infrastructure and that is ultra-reliable with high speed process. Most importantly, some of the research areas are deployed in this process such as.

  • Network attacks and countermeasures
  • Evaluation of new communication protocols
  • Efficient routing algorithms design
  • Quality of service (QoS)

IoT and WSN in NetSim

        Hereby, our research professionals in network simulation have highlighted the substantial specifications of IoT module.

  • Facility to conduct various experiments for differing input and output parameters
  • Input
  • Channel characteristics
  • ED threshold
  • Receiver sensitivity
  • Phy SHR duration
  • Routing time
  • Channel number
  • CCA type
  • Battery life extension
  • Power consumption
  • Back off exponent
  • Super frame order
  • Beacon order
  • Output
  • Actual Vs sensed path of agent
  • Routing time
  • Packet delivery ratio
  • Lifetime of motes
  • Power consumption
  • Delay
  • Routing overhead
  • Design network, simulate and observe the performance of 6LoWPAN network using NetSim GUI
  • 6LoWPAN gateway is capable to switch the packet from network to another network
  • Routing
  • AODV (RFC 3561)
  • RPL (RFC 6550)
  • Network layer
  • IPV6 (RFC 2460)
  • IPv6 and IPv4
  • Data link and physical layer
  • IEEE 802.15.4 standards
  • Devices
  • The below mentioned devices are dragged and dropped over the network design
  • Nodes
  • AP
  • Switches
  • Routers
  • 6LoWPAN gateway
  • Sensor motes
  • Number of sensors
  • 500
  • Simulation area
  • 1000000 m x 1000000 m

        In addition, we have enlisted the metrics based on output performance of IoT and WSN in NetSim in the following with the variety of performance.

  • Plots is applicable in application throughput and link throughput with some docking features
  • IP metrics and TCP/ UDP metrics
  • AODV metrics
  • Queue metrics
  • Network metrics
  • 15.4 metrics
  • Energy metrics

         Our research experts in network simulation provide the best service for the research scholars to attain their required Ns3 projects with source code. Now take a look about the notable research notions in Ns3 simulation.

Research Topics for Ns3 Projects with Source Code

  • Securing the authentication process of LTE base stations
  • Spectrum Sensing techniques for cognitive radio: A re examination
  • Performance analysis of ad hoc on demand distance vector protocol under the influence of black hole, gray hole and worm hole attacks in mobile ad hoc network
  • ROS-NetSim: A framework for the integration of robotic and network simulators
  • Simulation of wireless sensor nodes based on wake up receivers

         To conclude this article, we hope that our research professionals have highlighted all the required information to develop a research based on Ns3 projects with source code. We have 15+ years of experience in this field with happy customers all over the world. Thus, we provided some key notes to acquire the best Ns3 projects.

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Research Topics Project Paper Thesis
3D Underwater WSN 150 499 541
Hybrid Beamforming 110 398 432
Intelligent Agent WSN 135 412 510
Blockchain technology 121 467 496
Optical Networks 149 398 465
Vehicular sensor Network 250 491 534
Industrial IoT 114 378 431
Service Discovery 170 419 489
Named Data Networking 121 386 423
SDN-NDN 110 427 498
D2D Communication 131 389 425
M2M Communication 108 389 411
UWB communication 124 495 510
5G Network Slicing 137 437 492
Delay Tolerant Network 105 469 533
Multi-Microgrid 111 326 379
Content-centric network 100 296 304
5G Beyond networks 131 379 409
Cloud-RAN 127 352 389
Fog-RAN 145 310 378
FANET 178 395 400
Cognitive adhoc network 153 325 363
Vehicular NDN 175 310 425
Multimedia sensor network205 275 315
V2X communication 151 200 308
Software-defined WSN 176 248 358
5G 201 289 365
Fibre Channel / Cellular / 5G topics
Cellular Networks 185 235 397
CRN 204 268 348
IoT 163 287 395
Intrusion Detection system110 257 348
LiFi 101 279 386
LTE 159 208 345
MANET 175 247 395
MIMO 142 298 354
Mobile Computing 114 254 308
RPL 189 275 357
SDN 109 258 346
VANET 152 278 359
Vertical Handover 108 241 367
Wireless Body Area Network121 198 348
Wireless Communication 178 248 371
Wireless Sensor Networks106 213 369
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  • Physical Layer
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  • Network Layer
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  • Traffic Analysis Attack
  • Sniffer Attack
  • SS7 Attack
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  • Hello Flood Attack
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  • Packet Flooding Attack
  • Birthday Attack
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  • MAC protocol design
  • 3D Beam alignment
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  • Data fusion
  • Bundling protocols
  • DTN data management
  • DTN architectures
  • DTN prototypes
  • Network Content Sharing
  • Data Synchronization
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  • Namespaces
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  • Rendezvous, Discovery
  • Bootstrapping
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  • Social Network Analysis
  • Ransomware Target
  • StableBitcoins
  • Interoperability
  • Consensus Protocol Design
  • Protocol Optimization
  • Lightweight Blockchain Design
  • VNFs Orchestration
  • Containerized Services
  • Quantum Communication
  • Physical Layer Communication
  • NFV Communication
  • Scalability Improvement
  • Network Softwarization
  • Interact Different Networks
  • Fusion of Fronthaul
  • Backhaul
  • Small Cell Nets
  • Allocation in HetNets
  • slicing HetNets
  • Interoperability B5G
  • Coexistence of OFDMA
  • NAMO
  • Traffic differentiation
  • Traffic Offloading
  • M2M Radio Link
  • Mesh Communication
  • Sensor Management
  • Device Management
  • Spectral Efficiency
  • Network Resource Allocation
  • Cross Layer Design
  • Multimedia Transmission
  • Next Generation
  • Channel Rate Adaptation
  • Multi-Hop Energy
  • Flying Vehicle Communication
  • Submarine Data Transmission
  • Visual MIMO
  • Large-Scale Networks
  • mmWave
  • Node Deployment
  • OSI layers Security
  • Trust based Routing
  • Reputation based Routing
  • Network Port Access
  • Multi-level Firewall
  • En-Route Filtering
  • End-to-End Encryption
  • Radio Fingerprinting
  • Scalable Parameterization
  • Channel Interference Avoidance
  • Radio Resource Allocation
  • Frequency Hopping
  • Data Suppression
  • Data Compression
  • Beamforming
  • Multimedia Routing
  • Cell Sectorization
  • Satellite Constellations 5G
  • Satellite Constellations B5G
  • AI based Resource Allocation
  • Energy Harvesting
  • Energy Consumption
  • Route Readjustment
  • Path Prediction
  • Mobile Sink Location
  • Relocation
  • Intelligent Agents Deployed
  • 3D Wireless Sensor Modeling
  • 4D Wireless Sensor Modeling
  • 6TiSCH Sensors Communication
  • TSCH based Sensors Communication
  • New Waveform
  • Channel Modeling
  • Spectrum Allocation
  • Energy Harvesting in URLLC
  • Energy Harvesting eNBB
  • Security Preservation
  • Bio-Inspired Routing
  • Deep Learning based Routing
  • Route by Hybrid Protocols
  • Routing Protocols Design
  • Multi-Criteria based Routing
  • Network Structure
  • Topology based Routing
  • MIMO Routing
  • Hybrid Beamforming
  • Interference Management
  • Channel Characterization
  • Pilot Contamination
  • 3D Channel Modeling
  • HD Video Streaming
  • Mobile Data Networking
  • Carrier Aggregation
  • Channel Aggregation
  • Packet Scheduling
  • Scheduling Cell Resource
  • Uplink Synchronization
  • Downlink Synchronization
  • QoS aware Routing
  • QoS aware Clustering
  • 3D MANET Massive Users
  • 4D MANET Massive Users
  • Interoperability to D2D
  • Interoperability Cloud
  • Interoperability 5G
  • MANET-IoT
  • Massive Channel Access
  • H&off Management
  • Video Traffic Scheduling
  • Secondary Users Routing
  • PUEA Detection
  • Spectrum & Power Allocation
  • Error Control & Fault Prediction
  • Dynamic Spectrum Access
  • Channel Scheduling
  • Channel Sensing
  • Relay Selection
  • Power Allocation
  • Coverage Improvement
  • Capacity Improvement
  • Power allocation
  • scheduling
  • Content Dissemination
  • VSN
  • Mobile Sensing
  • Network Collision Avoidance
  • Traffic Congestion Info
  • Systems on a chip
  • Optical fibers
  • line switching
  • Passive optical networks
  • Rapid fault handling
  • Optics in 5G networks
  • Satellite optical
  • Low earth orbit satellite
  • M2M satellite communication
  • Heterogeneous satellite-cooperative
  • Hybrid satellite terrestrial relay network
  • Inter-satellite Optical communication
  • DWDM in Fiber
  • Packet Switching
  • Optimal Routing
  • Optical Visual MIMO
  • Burst Loss Probability
  • Flexible Branching
  • Path planning AUV
  • cluster transmission
  • Prediction sensor location
  • Range Free Localization
  • Gateway Placement
  • Mobility Control
  • Adjustment of power
  • Demodulation
  • ISI mitigation
  • Reactive obstacle prediction
  • Localization schemes
  • Channel coding
  • Aggregation
  • Co-channel interference
  • Nearest Antenna Selection
  • Spatial Modulation
  • PAPR Mitigation
  • Multiple Access
  • Filtered OFDM
  • MAC Frame Design
  • In-body, On-body & Off-body
  • Emergency Data Prediction
  • Remote Patient Monitoring
  • Energy Aware Resource Allocation
  • Power Optimized Data Transmission
  • Flow Rule Placement
  • Multimedia Flows Routing
  • Buffer Management
  • Network Traffic Analysis
  • Dynamic Offloading
  • Controller Placement
  • Emergency Message Dissemination
  • Vehicle Traffic Analysis
  • Network Penetration Testing
  • Security Information and Event Management
  • Network Threat Intelligence
  • Task Offloading Decision
  • Traffic aware Routing
  • Network Privacy
  • DODAG Fault Tolerance
  • Network Traffic Balancing
  • Traffic Control
  • Congestion Control
  • Mobility Control
  • Network Incident Response
  • Service Discovery
  • Network Design and Architecture
  • Network Management
  • Network Performance Analysis
  • Network Monitoring
  • Network Troubleshooting
  • Network Privacy
  • Network Anonymity
  • Network Secure Shell
  • Network Telnet
  • Video Conferencing
  • Network Telepresence
  • Collaboration Tools
  • Network Cloud Storage
  • Network Wireshark Analysis
  • Network Packet Tracing
  • Network Business Continuity
  • Network Traffic Shaping
  • Autonomous Network Management
  • Internet Governance
  • Secure Multi-Party Computation
  • Network Service Chaining
  • Network Slicing
  • Network Microsegmentation
  • Network Coding
  • Cross Layer Design
  • Network Neutrality
  • Network Edge Intelligence
  • Machine Learning for Network Optimization
  • Network Analytics
  • Network Digital Twins
  • Network Service Orchestration
  • Network Policy Based Management
  • Network Intent Based Networking
  • Virtualized Security
  • Ransomware Detection
  • Anti-forensic Techniques
  • Malware Detection
  • Virus Detection
  • Access Control
  • Privacy Control
  • Insider Threat
  • Intrusion Detection
  • Attacks Mitigation
  • Node Authentication
  • Behavioral Detection
  • Multi-Attacks Detection
  • Threats Analysis
  • Multi-Factor Authentication
  • CoC Preservation
  • Types of Forensics
  • Refine Forensics Architecture
  • SDN Forensics
  • IaaS Cloud Forensics
  • Lightweight Architecture
  • Public Key Cryptography
  • Symmetric Key Cryptography
  • Identity based Cryptography
  • Certificateless Cryptography
  • Cryptographic Hashing
  • Lightweight Cryptography
  • Fiber Optical Security
  • ANN based Steganography
  • Internet Traffic Transforming
  • Blockchain based IDS
  • Anomaly based IDS
  • Hybrid Signature
  • Retraining Massive Data
  • Source Location Privacy
  • Phishing Defense
  • Network Disaster Recovery
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  • Web Security
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  • Cloud Security
  • Endpoint Security
  • Identity and Access Management (IAM)
  • Zero Trust Security
  • Secure Coding Practice
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  • Security Architecture
  • Advanced Persistent Threats
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  • SCADA Security
  • IoT Security
  • Bring Your Own Device Security
  • Blockchain Security
  • Quantum Cryptography
  • Autonomous Vehicle Security
  • Cybersecurity in Healthcare
  • Cybersecurity in Finance
  • Cybersecurity in Education
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  • Cybersecurity in Telecommunications
  • Artificial Intelligence Security
  • Machine Learning Security
  • Cybersecurity in Big Data
  • Cybersecurity in Cloud Computing
  • Cybersecurity in Edge Computing
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  • Serverless Computing Security
  • Cybersecurity in 5G Networks
  • Wireless Security
  • Security in E-Commerce
  • Security Incident Management
  • Insider Threat Management
  • Cyber Espionage
  • Cyber Warfare
  • Cybersecurity in Supply Chain Management
  • Cybersecurity in Manufacturing
  • Cybersecurity in Renewable Energy Systems
  • Embedded Systems Security
  • Firmware Security
  • Biometric Security
  • Mobile Application Security
  • Next-Generation Firewalls
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