Alert button
Picture for Chiranjib Saha

Chiranjib Saha

Alert button

NTN-based 6G Localization: Vision, Role of LEOs, and Open Problems

Add code
Bookmark button
Alert button
May 20, 2023
Harish K. Dureppagari, Chiranjib Saha, Harpreet S. Dhillon, R. Michael Buehrer

Figure 1 for NTN-based 6G Localization: Vision, Role of LEOs, and Open Problems
Figure 2 for NTN-based 6G Localization: Vision, Role of LEOs, and Open Problems
Figure 3 for NTN-based 6G Localization: Vision, Role of LEOs, and Open Problems
Figure 4 for NTN-based 6G Localization: Vision, Role of LEOs, and Open Problems
Viaarxiv icon

Tensor Learning-based Precoder Codebooks for FD-MIMO Systems

Add code
Bookmark button
Alert button
Jun 21, 2021
Keerthana Bhogi, Chiranjib Saha, Harpreet S. Dhillon

Figure 1 for Tensor Learning-based Precoder Codebooks for FD-MIMO Systems
Figure 2 for Tensor Learning-based Precoder Codebooks for FD-MIMO Systems
Figure 3 for Tensor Learning-based Precoder Codebooks for FD-MIMO Systems
Figure 4 for Tensor Learning-based Precoder Codebooks for FD-MIMO Systems
Viaarxiv icon

Learning on a Grassmann Manifold: CSI Quantization for Massive MIMO Systems

Add code
Bookmark button
Alert button
May 18, 2020
Keerthana Bhogi, Chiranjib Saha, Harpreet S. Dhillon

Figure 1 for Learning on a Grassmann Manifold: CSI Quantization for Massive MIMO Systems
Figure 2 for Learning on a Grassmann Manifold: CSI Quantization for Massive MIMO Systems
Figure 3 for Learning on a Grassmann Manifold: CSI Quantization for Massive MIMO Systems
Figure 4 for Learning on a Grassmann Manifold: CSI Quantization for Massive MIMO Systems
Viaarxiv icon

Machine Learning meets Stochastic Geometry: Determinantal Subset Selection for Wireless Networks

Add code
Bookmark button
Alert button
May 01, 2019
Chiranjib Saha, Harpreet S. Dhillon

Figure 1 for Machine Learning meets Stochastic Geometry: Determinantal Subset Selection for Wireless Networks
Figure 2 for Machine Learning meets Stochastic Geometry: Determinantal Subset Selection for Wireless Networks
Figure 3 for Machine Learning meets Stochastic Geometry: Determinantal Subset Selection for Wireless Networks
Figure 4 for Machine Learning meets Stochastic Geometry: Determinantal Subset Selection for Wireless Networks
Viaarxiv icon

Enhanced Multiobjective Evolutionary Algorithm based on Decomposition for Solving the Unit Commitment Problem

Add code
Bookmark button
Alert button
Oct 23, 2014
Anupam Trivedi, Kunal Pal, Chiranjib Saha, Dipti Srinivasan

Figure 1 for Enhanced Multiobjective Evolutionary Algorithm based on Decomposition for Solving the Unit Commitment Problem
Figure 2 for Enhanced Multiobjective Evolutionary Algorithm based on Decomposition for Solving the Unit Commitment Problem
Figure 3 for Enhanced Multiobjective Evolutionary Algorithm based on Decomposition for Solving the Unit Commitment Problem
Figure 4 for Enhanced Multiobjective Evolutionary Algorithm based on Decomposition for Solving the Unit Commitment Problem
Viaarxiv icon

Multi-Agent Shape Formation and Tracking Inspired from a Social Foraging Dynamics

Add code
Bookmark button
Alert button
Oct 16, 2014
Debdipta Goswami, Chiranjib Saha, Kunal Pal, Swagatam Das

Figure 1 for Multi-Agent Shape Formation and Tracking Inspired from a Social Foraging Dynamics
Figure 2 for Multi-Agent Shape Formation and Tracking Inspired from a Social Foraging Dynamics
Figure 3 for Multi-Agent Shape Formation and Tracking Inspired from a Social Foraging Dynamics
Figure 4 for Multi-Agent Shape Formation and Tracking Inspired from a Social Foraging Dynamics
Viaarxiv icon