This repository hosts the code for Stanford Pupper and Stanford Woofer, Raspberry Pi-based quadruped robots that can trot, walk, and jump.

Overview

Stanford Quadruped

Overview

This repository hosts the code for Stanford Pupper and Stanford Woofer, Raspberry Pi-based quadruped robots that can trot, walk, and jump.

Pupper CC Max Morse

Video of pupper in action: https://youtu.be/NIjodHA78UE

Project page: https://stanfordstudentrobotics.org/pupper

Documentation & build guide: https://pupper.readthedocs.io/en/latest/

How it works

Overview diagram The main program is run_robot.py which is located in this directory. The robot code is run as a loop, with a joystick interface, a controller, and a hardware interface orchestrating the behavior.

The joystick interface is responsible for reading joystick inputs from a UDP socket and converting them into a generic robot command type. A separate program, joystick.py, publishes these UDP messages, and is responsible for reading inputs from the PS4 controller over bluetooth. The controller does the bulk of the work, switching between states (trot, walk, rest, etc) and generating servo position targets. A detailed model of the controller is shown below. The third component of the code, the hardware interface, converts the position targets from the controller into PWM duty cycles, which it then passes to a Python binding to pigpiod, which then generates PWM signals in software and sends these signals to the motors attached to the Raspberry Pi. Controller diagram This diagram shows a breakdown of the robot controller. Inside, you can see four primary components: a gait scheduler (also called gait controller), a stance controller, a swing controller, and an inverse kinematics model.

The gait scheduler is responsible for planning which feet should be on the ground (stance) and which should be moving forward to the next step (swing) at any given time. In a trot for example, the diagonal pairs of legs move in sync and take turns between stance and swing. As shown in the diagram, the gait scheduler can be thought of as a conductor for each leg, switching it between stance and swing as time progresses.

The stance controller controls the feet on the ground, and is actually quite simple. It looks at the desired robot velocity, and then generates a body-relative target velocity for these stance feet that is in the opposite direction as the desired velocity. It also incorporates turning, in which case it rotates the feet relative to the body in the opposite direction as the desired body rotation.

The swing controller picks up the feet that just finished their stance phase, and brings them to their next touchdown location. The touchdown locations are selected so that the foot moves the same distance forward in swing as it does backwards in stance. For example, if in stance phase the feet move backwards at -0.4m/s (to achieve a body velocity of +0.4m/s) and the stance phase is 0.5 seconds long, then we know the feet will have moved backwards -0.20m. The swing controller will then move the feet forwards 0.20m to put the foot back in its starting place. You can imagine that if the swing controller only put the leg forward 0.15m, then every step the foot would lag more and more behind the body by -0.05m.

Both the stance and swing controllers generate target positions for the feet in cartesian coordinates relative the body center of mass. It's convenient to work in cartesian coordinates for the stance and swing planning, but we now need to convert them to motor angles. This is done by using an inverse kinematics model, which maps between cartesian body coordinates and motor angles. These motor angles, also called joint angles, are then populated into the state variable and returned by the model.

How to Build Pupper

Main documentation: https://pupper.readthedocs.io/en/latest/

You can find the bill of materials, pre-made kit purchasing options, assembly instructions, software installation, etc at this website.

Help

Owner
Stanford Student Robotics
Stanford Student Robotics
Ha-rpi gpio - Home Assistant Raspberry Pi GPIO Integration

Home Assistant Raspberry Pi GPIO custom integration This is a spin-off from the

Shay Levy 98 Dec 24, 2022
Designed and coded a password manager in Python with Arduino integration

Designed and coded a password manager in Python with Arduino integration. The Program uses a master user to login, and stores account data such as usernames and passwords to the master user. While lo

Noah Colbourne 1 Jan 16, 2022
Modeling and Simulation of Satellite Servicing Manipulators

Modeling and Simulation of Satellite Servicing Manipulators Final Project for the course ENPM662: Introduction to Robot Modeling (Fall 2021). This pro

Adarsh M 1 Jan 24, 2022
Tools and documentation to aid in modifying the ADI ADALM Pluto firmware

Pluto firmware modifications This repository contains tools and documentation to aid in modifying the ADI ADALM Pluto firmware. Extraction of the Plut

Daniel Estévez 28 Dec 21, 2022
An open source operating system designed primarily for the Raspberry Pi Pico, written entirely in MicroPython

PycOS An open source operating system designed primarily for the Raspberry Pi Pico, written entirely in MicroPython. "PycOS" is an combination of the

8 Oct 06, 2022
a weather application for the raspberry pi and the Pimorioni Inky pHAT.

raspi-weather a weather application for the raspberry pi and the Inky pHAT

Derek Caelin 59 Oct 24, 2022
A Fast, Easy, and User Friendly way to control Robotics Actuators.

T-Motor Controller A Fast, Easy, and User Friendly way to control Robotics Actuators. View Demo · Report Bug · Request Feature Table of Contents About

26 Aug 23, 2022
Hook and simulate global keyboard events on Windows and Linux.

keyboard Take full control of your keyboard with this small Python library. Hook global events, register hotkeys, simulate key presses and much more.

BoppreH 3.2k Dec 30, 2022
Pylorawan is a Micropython wrapper for lorawan devices from RAK Wireless.

pylorawan Pylorawan is a Micropython wrapper for lorawan devices from RAK Wireless. Tested on a Raspberry PI Pico with a RAK4200(H) Evaluation Board (

Peter Houghton 3 Nov 04, 2022
Event-based hardware simulation framework

An event-based multi-device simulation framework providing configuration and orchestration of complex multi-device simulations.

Diamond Light Source Controls Group 3 Feb 01, 2022
♟️ QR Code display for P4wnP1 (SSH, VNC, any text / URL)

♟️ Display QR Codes on P4wnP1 (p4wnsolo-qr) 🟢 QR Code display for P4wnP1 w/OLED (SSH, VNC, P4wnP1 WebGUI, any text / URL / exfiltrated data) Note: Th

PawnSolo 4 Dec 19, 2022
Robot Framework keyword library wrapper for atlassian-python-api

Robot Framework keyword library wrapper for atlassian-python-api

Marcin Koperski 3 Jul 29, 2022
A Python program that makes it easy to manage modules on a CircuitPython device!

CircuitPython-Bundle-Manager-v2 A Python program that makes it easy to manage modules on a CircuitPython device! The CircuitPython Bundle Manager v2 i

Ckyiu 1 Dec 18, 2021
Controlling fireworks with micropython

Controlling-fireworks-with-micropython How the code works line 1-4 from machine

Montso Mokake 1 Jan 08, 2022
Automatic CPU speed & power optimizer for Linux

Automatic CPU speed & power optimizer for Linux based on active monitoring of laptop's battery state, CPU usage, CPU temperature and system load. Ultimately allowing you to improve battery life witho

Adnan Hodzic 3.4k Jan 07, 2023
A simple portable USB MIDI controller based on Raspberry-PI Pico and a 16-button keypad, written in Circuit Python

RPI-Pico-16-BTn-MIDI-Controller-using-CircuitPython A simple portable USB MIDI controller based on Raspberry-PI Pico, written in Circuit Python. Link

Rounak Dutta 3 Dec 04, 2022
Kwcpu - An unobtrusive CPU meter that fits in the default Windows 11 taskbar. Supports up to 32 cores.

kwcpu An unobtrusive CPU meter that fits in the default Windows 11 taskbar. Supports up to 32 cores. kwcpu is provided as a Rainmeter skin. By default

Jay Oster 2 Nov 07, 2022
HomeAssistant - Polyaire AirTouch 4 Integration

HomeAssistant - Polyaire AirTouch 4 Integration Custom integration to add an AirTouch 4 AC Controller Installation: Copy contents of custom_components

7 Aug 05, 2022
A python file which I wrote to allow the Dorna Robots API to draw an Image on a 3D plane

Dorna-Robotics-Internship Code In the directory "Code" is a python file which I wrote to allow the Dorna Robots API to draw an Image on a 3D plane. I

Stephen Otto 2 Dec 06, 2021
Volkswagen ID component for Home Assistant

Volkswagen ID component for Home Assistant This folder contains both a generic Python 3 library for the Volkswagen ID API and a component for Home Ass

55 Jan 07, 2023