Area of research
Biomedical Engineering · Molecular Biology
Research interest
Research interests include Computer science, Transmitter, Molecular communication, Energy (signal processing), Bit error rate, and Imperfect.
CNN-Based ISI Mitigation in Molecular Communications With Imperfect Transmitter
Tradeoff Between Energy Consumption and BER Performance in Bio-Inspired Molecular Communications
Energy-Efficient Transmitter Creation in Molecular Communication
Energy Efficient Transmitter Creation by Consuming Free Energy in Molecular Communication
Hybrid CNN-BiLSTM for ISI Mitigation in Molecular Communication for Nanosensors with Imperfect Transmitter
Optimal Energy Allocation for Cooperative Molecular Communication With Imperfect Transmitters in Internet of Bio-Nano Things
Tradeoff Between Energy Consumption and BER Performance in Molecular Communications
ISI Mitigation Using Neural Networks in Molecular Communication With an Imperfect Transmitter Between Bionanosensors
Towards Artificial Intelligence of Bio-Nano Things: Biologically Inspired Deployment Algorithm for Cooperative Nanonetworks
Energy Allocation for Multiuser Cooperative Molecular Communication Systems in Internet of Bio-Nano Things
Performance Analysis and ISI Mitigation With Imperfect Transmitter in Molecular Communication
Tradeoff Between the Number of Transmitted Molecules and the BER Performance in Molecular Communication Between Bionanosensors
Lightweight Channel Codes for ISI Mitigation in Molecular Communication Between Bionanosensors
Thermodynamic Energy Cost and Bit Error Rate of Imperfect Transmitters in Molecular Communication
An Extended Kalman Filter for Distance Estimation and Power Control in Mobile Molecular Communication
Distance and Velocity Prediction by Extended Kalman Filter in Mobile Molecular Communication
Power Control for ISI Mitigation in Mobile Molecular Communication
Power Control for ISI Mitigation in Mobile Molecular Communication