Packet Delivery Ratio Final Year Projects with Source Code

Packet Delivery Ratio Final Year Projects for BE, BTech, ME, MSc, MCA and MTech final year engineering students. These Packet Delivery Ratio projects give practical experience and help complete final-year submissions. All projects follow IEEE standards and each project includes source code, project thesis report, presentation, project execution and explanation.

Packet Delivery Ratio Final Year Projects

  1. A Novel Energy-Efficient Scheme for RPL Attacker Identification in IoT Networks Using Discrete Event Modeling
    This project focuses on making IoT networks more secure. The researchers created a system that can detect hidden attacks in IoT devices that are hard to spot. Their method uses smart checking and a special model to tell normal activity from attacks. Tests show it works accurately, uses little energy, and can find the harmful devices without complex setup.
  2. Location Centric Energy Harvesting Aware Routing Protocol for IoT in Smart Cities
    This project focuses on making IoT-based wireless sensor networks last longer by using energy harvesting. It introduces a simple way to route data between sensor nodes that uses less energy. The method chooses the best path based on the closest direction to the target node. Experiments show it works well and helps the network run efficiently for a longer time.
  3. Cyber Physical Scheduling for Predictable Reliability of Inter Vehicle Communications
    This project focuses on making communication between vehicles more reliable. It creates a system that predicts and manages interference between vehicles. The method uses the locations and movement patterns of cars to schedule messages efficiently. Experiments show it improves reliability, speed, and reduces delays in vehicle communications.
  4. A Multi-Hop QoS-Aware and Predicting Link Quality Estimation PLQE Routing Protocol for Reliable WBSN
    This project uses small sensors placed on the body to collect important health data in real time. These sensors often lose connection because the body moves, which can delay or drop critical signals like ECG or EEG. The proposed method predicts the best communication path so the data reaches safely and on time. It improves reliability and reduces delays compared to existing methods.
  5. Cluster-Based Protocol for Prioritized Message Communication in VANET
    This project focuses on improving communication in Vehicular Ad Hoc Networks (VANETs), which connect vehicles wirelessly. Traditional methods are often too slow for moving vehicles, especially for road safety alerts. The proposed approach uses a clustering method to send emergency messages faster. Non-urgent information is stored temporarily to ensure urgent messages reach vehicles without delay.
  6. Simulative Survey of Flooding Attacks in Intermittently Connected Vehicular Delay Tolerant Networks
    This project studies communication between vehicles and roadside units in networks where connections are often unreliable. It focuses on security problems, especially flood attacks, where malicious nodes overwhelm the network and waste resources. The research proposes a clear classification of these attacks and evaluates different methods to detect and reduce them efficiently. It also identifies open areas for further research on improving security in these networks.
  7. Toward the Design of an Efficient and Secure System Based on the Software-Defined Network Paradigm for Vehicular Networks
    This project focuses on making vehicle networks smarter and safer. It uses a special network system called SDN to manage how vehicles connect and communicate with each other. The system improves security, protecting data from hackers, and uses machine learning to predict traffic changes and optimize network performance. Tests show it reduces delays and increases the reliability of messages between vehicles.
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Packet Delivery Ratio Project Synopsis & Presentation

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