PROJECT

TECHNOLOGY DEVELOPED

Emulation Friendly Modeling of RF Power Amplifiers for Pre-Silicon Verification

Pi- Prof. Rahul Bhattacharya

1.Resource efficient modeling technique for RF Power Amplifier.

2. FPGA emulation of RF Power Amplifer for Pre-Silicon Verification)

Design and Development of broadband circularly polarized conformal antenna array for Airborne application

Pi-Prof. Ravi Kumar Gangwar

02 protytpes of the conformal antennas developed and handover to the DRDO.

Auto Irrigation and Soil Monitoring System for COVID-19 Migrants Engagement

Pi-Prof. Rajeev Kumar Ranjan

Auto irrigation and soil monitoring system

Ultra-Low Power Neuromorphic Spiking Architecture for Assistive Smart Glass

Pi-Prof. Rajeev Kumar Ranjan

Going, Anew spiking architecture base IC will be developed, 1 Developed

Accurate Correlation of Dot Size Distribution with the Spectral Response of AS-grown and Interdiffused Stacked Quantum Dots embedded in p-i-n Solar Cells

Pi-Prof. Subindu  Kumar

Developed a unified analytical model for the spectral response (SR) of single and multi-stack quantum dot (QD) ensembles embedded in the intrinsic region of InGaAs/GaAs p-i-n QD solar cells (QDSCs), taking into account the variation of dot aspect ratio (AR) and changes in the potential profile due to interdiffusion, which, for the first time, being analyzed in a common platform.

Design and Development of Compact and Low-profile Multiband Conformal Antenna System for In-vehicle Telecommunications Equipments Supporting Cellular/Communication Bands

Pi-Prof. Ravi Kumar Gangwar

04 protytpes of the conformal filtenna developed.

Analytical Modelling of Multi-layered 2-D Transition metal dichalcogenide FET based Biosensor using Green’s function approach

Pi-Prof. Manodipan  Sahoo

Analytical Model developed

Advanced Greedy Algorithms for Sparsity-Aided Generalized Online Caching

Pi-Prof. Samrat Mukhopadhyay

Technology developed through numerical simulations

1. Novel sparse recovery algorithm is developed for compressed sensing without explicit knowledge of sparsity,

2. Novel no-regret online learning algorithm for online sparse approximation is developed

Development of spectrally efficient low complexity fast sparse channel estimation algorithms for orthogonal time frequency space (OTFS) modulation scheme

Pi-Prof. Himanshu Bhusan Mishra

Novel sparse channel estimation technique is developed for OTFS systems., Novel linear equalization and phase optimization techniques are developed for IRS-OTFS systems.

Multi-Carrier Waveforms for Intelligent Reflecting Surface (IRS) assisted Next-Generation Wireless Communication Systems

Pi-Prof. Himanshu Bhusan Mishra

1.  Low-complexity optimization algorithm for IRS-OFDM systems.

2. Low-complexity sparse channel estimation scheme for OTFS systems.

3. Channel estimation framework for IRS-FBMC systems.

Design and Development of Substrate Integrated Waveguide based Self-multiplexing Antennas for 5G communication systems

Pi-Prof. Santanu Dwari

High gain Selfmultiplexing Antenna for mm wave band

Smart Radio Environments: Implementation and deployment for targeted use-cases

Pi-Prof. Samrat Mukhopadhyay

1. Developed a Low complexity OTFS-IRS receiver, 2. Developed a of Channel Estimation module for a complete IRS system.