The development of an efficient wireless charging system for unmanned aerial vehicles (UAVs) employs cutting edge technology to improve operating dependability, sustainability, and flexibility. At its core, this system includes an intelligent power c
The project develops an intelligent UAV-based mobile communication system for disaster areas, enabling real-time data relay, optimal UAV placement, and faulttolerant connectivity. Using Multi-Agent Edge Federated Learning and weighted clustering, it
The project develops a joint radar–communication framework at millimeter-wave frequencies by integrating radar into existing protocols to reduce channel-estimation latency. A dual-functional front end with analog beamforming and a single RF chain w
The project aims to develop an automated UAV-based maize disease detection system. It includes creating an aerial image database, using onboard computing with high-resolution sensors and ML for accurate diagnosis, building a cost-effective indigenous
The project aims to design a novel Electric Vehicle system using a multi-input converter integrating PV, fuel cell, and battery sources. It develops an effective Battery Management System to estimate SoC, SoH, and detect unsafe operations, enabling c
The project involves designing a UAV-based system for image-driven air pollution data acquisition, creating thermogram and visual datasets, and developing new algorithms for pollution analysis. It includes detecting and marking polluted regions, esti
The project develops a dual-functional millimeter-wave front end for joint radar and communication using multiple antennas with analog beamforming and a single RF chain, characterizing propagation via simulations and indoor experiments, achieving int
The project aims to enhance 6G wireless communication coverage using cost-effective UAV deployment. Objectives include improving macro cell coverage by at least 5%, increasing downlink data rates by over 5%, and developing low-complexity algorithms f
1. Performance modeling and comparison of contention-based and contention-free channel access mechanisms for mmWave UAV swarms. 2. Development of novel and efficient contention access mechanisms for simultaneous user multiplexing within single/intra
"1. To evaluate the effectiveness of ADAS in real-world traffic conditions using FOT. 2. To assess the acceptance of advanced driver assistance systems for drivers of different age group, gender and occupation characteristics. 3. To design regulatory