openpose VS BlazePose-tensorflow

Compare openpose vs BlazePose-tensorflow and see what are their differences.

BlazePose-tensorflow

A third-party Tensorflow Implementation for paper "BlazePose: On-device Real-time Body Pose tracking". (by jiang-du)
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openpose BlazePose-tensorflow
36 1
29,802 109
1.1% -
5.2 2.6
3 days ago over 3 years ago
C++ Python
GNU General Public License v3.0 or later Apache License 2.0
The number of mentions indicates the total number of mentions that we've tracked plus the number of user suggested alternatives.
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openpose

Posts with mentions or reviews of openpose. We have used some of these posts to build our list of alternatives and similar projects. The last one was on 2023-11-25.

BlazePose-tensorflow

Posts with mentions or reviews of BlazePose-tensorflow. We have used some of these posts to build our list of alternatives and similar projects. The last one was on 2021-09-29.

What are some alternatives?

When comparing openpose and BlazePose-tensorflow you can also consider the following projects:

mediapipe - Cross-platform, customizable ML solutions for live and streaming media.

lightweight-human-pose-estimation.pytorch - Fast and accurate human pose estimation in PyTorch. Contains implementation of "Real-time 2D Multi-Person Pose Estimation on CPU: Lightweight OpenPose" paper.

AlphaPose - Real-Time and Accurate Full-Body Multi-Person Pose Estimation&Tracking System

detectron2 - Detectron2 is a platform for object detection, segmentation and other visual recognition tasks.

mmpose - OpenMMLab Pose Estimation Toolbox and Benchmark.

tfjs-models - Pretrained models for TensorFlow.js

tfjs - A WebGL accelerated JavaScript library for training and deploying ML models.

MocapNET - We present MocapNET, a real-time method that estimates the 3D human pose directly in the popular Bio Vision Hierarchy (BVH) format, given estimations of the 2D body joints originating from monocular color images. Our contributions include: (a) A novel and compact 2D pose NSRM representation. (b) A human body orientation classifier and an ensemble of orientation-tuned neural networks that regress the 3D human pose by also allowing for the decomposition of the body to an upper and lower kinematic hierarchy. This permits the recovery of the human pose even in the case of significant occlusions. (c) An efficient Inverse Kinematics solver that refines the neural-network-based solution providing 3D human pose estimations that are consistent with the limb sizes of a target person (if known). All the above yield a 33% accuracy improvement on the Human 3.6 Million (H3.6M) dataset compared to the baseline method (MocapNET) while maintaining real-time performance

deep-high-resolution-net.pytorch - The project is an official implementation of our CVPR2019 paper "Deep High-Resolution Representation Learning for Human Pose Estimation"