object tracking based on millimeter wave radar
-
Updated
Dec 19, 2024 - MATLAB
object tracking based on millimeter wave radar
The official implementation of HuPR: A Benchmark for Human Pose Estimation Using Millimeter Wave Radar
This repository includes the source codes for the mmWave SDR developed at the University of South Carolina for the AERPAW at NCSU for wireless experimentation in millimeter-wave bands, e.g., 28 GHz and 60 GHz.
Submitted paperwork
Successive Pose Estimation and Beam Tracking for mmWave Vehicular Communication Systems
5G Speed Calculator - Support for all of the latest FDD, TDD, SDL & SUL NR bands
CLI & GUI Application for Millimeter Wave Channel Estimation Simulation
MATLAB application for ns-3 IEEE 802.11ad/ay codebook/beambook generation
Partial implementaition of the paper "Sohrabi, Foad, & Yu, Wei (2016). Hybrid Digital and Analog Beamforming Design for Large-Scale Antenna Arrays" in python.
PHY IEEE 802.11ad latency simulator
These are schematics and testbench of a Ka-Band PA published by Z. Liu, L. Wang, H. Fallah, Z. Chen and C. P. Yue, in "A Compact 28-GHz Transmitter Front-End with Co-Optimized Wideband Chip-Antenna Interface Achieving 18.5-dBm P1dB and 1.0-W/mm2 Power Density for Phased Array Systems," IMS 2024, Washington, DC, USA, 2024, pp. 239-242.
Used convex optimization to tune millimetre wave based wireless communication parameters. Replicated the IEEE paper "Multi-Beam Power Allocation for mmWave Communications under Random Blockage"
Code to calculate the total column density from a molecular rotational transition
Public website for the FINER project
PHP code to calculate the total column density from a molecular rotational transition
Add a description, image, and links to the millimeter-wave topic page so that developers can more easily learn about it.
To associate your repository with the millimeter-wave topic, visit your repo's landing page and select "manage topics."