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Back to ai-winter/python_motion_planning

Open-source alternatives to Python Motion Planning

30 open-source projects similar to ai-winter/python_motion_planning, ranked by how many features they have in common. Compare stars, activity and what each one does to find the best Python Motion Planning alternative.

  • ai-winter/ros_motion_planningai-winter avatar

    ai-winter/ros_motion_planning

    3,529View on GitHub↗

    This project is a comprehensive library and framework for autonomous mobile robot navigation, providing a suite of geometric, heuristic, and optimization-based algorithms. It enables robots to calculate collision-free global paths and generate smooth, kinematically feasible local trajectories within complex environments. The system is built on a modular plugin architecture that allows developers to integrate and configure custom motion planning algorithms directly into the Robot Operating System. By utilizing a layered spatial representation, the framework aggregates heterogeneous sensor data

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    View on GitHub↗3,529
  • ros-navigation/navigation2ros-navigation avatar

    ros-navigation/navigation2

    4,373View on GitHub↗

    Navigation2 is a ROS 2 navigation framework for autonomous mobile robots. It provides the core identity of a path planner, costmap management system, kinematic motion controller, and behavior tree orchestrator to compute collision-free routes and execute movement commands. The framework is distinguished by its use of behavior trees to coordinate modular task servers, enabling complex navigation routines and autonomous recovery actions. It supports a plugin-based architecture that allows planners and controllers to be swapped at runtime to adapt to different environments. The system covers a

    C++navigationroboticsros2
    View on GitHub↗4,373
  • ros-planning/navigation2ros-planning avatar

    ros-planning/navigation2

    4,386View on GitHub↗

    Navigation2 is a navigation stack for ROS 2 designed for autonomous robot navigation. It provides a framework for computing optimal paths from a starting position to a goal while avoiding static and dynamic obstacles. The system utilizes a behavior tree orchestrator to coordinate complex navigation tasks and trigger recovery actions. Its architecture is plugin-based, allowing planners, controllers, and costmap layers to be swapped at runtime without recompiling the core system. The project covers path planning, motion control, and environmental mapping. It generates occupancy grids and costm

    C++
    View on GitHub↗4,386

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  • atsushisakai/pythonroboticsAtsushiSakai avatar

    AtsushiSakai/PythonRobotics

    29,772View on GitHub↗

    PythonRobotics is a comprehensive collection of modular robotics algorithms and educational simulations designed for autonomous navigation, state estimation, and motion control. The project provides a library of standalone implementations for path planning, localization, mapping, and kinematics, serving as a resource for researchers and students to experiment with foundational and advanced robotic theories. The project distinguishes itself through an algorithm-centric design where each module functions as an isolated script, allowing for independent testing and clear pedagogical demonstration

    Pythonalgorithmanimationautonomous-driving
    View on GitHub↗29,772
  • zhm-real/pathplanningzhm-real avatar

    zhm-real/PathPlanning

    9,294View on GitHub↗

    PathPlanning is a library of animated path planning algorithms that includes implementations of A-star, Dijkstra, RRT, and spline-based trajectory generation for both 2D and 3D environments. The project provides a collection of motion planning algorithms that demonstrate how robots can find collision-free paths through continuous spaces, with each algorithm rendered as a step-by-step visual animation to show how the search or tree grows over time. The library covers three main categories of path planning: sampling-based methods like RRT, RRT-star, and BIT-star that grow trees by randomly samp

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    2,636View on GitHub↗

    OM1 is a multimodal AI agent runtime and orchestration framework designed to connect large language models to physical robot hardware and sensors. It provides an execution environment that processes audio, video, and sensor data to drive autonomous decisions and actions in real-world settings. The system integrates a robotics SLAM and navigation stack with a hardware abstraction layer, allowing high-level AI commands to be translated into low-level motor and actuator instructions. It distinguishes itself by incorporating blockchain-based governance to enforce immutable operational rules and p

    Pythonllmmultiagentrobotics
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    ClemensElflein/OpenMower

    6,566View on GitHub↗

    OpenMower is an autonomous lawn mower controller and firmware system that uses high-precision RTK GPS to navigate robotic mowers without the need for physical boundary wires. It functions as a GPS-based path planner and hardware management system that converts manual machines into autonomous units. The project includes a remote management application for monitoring and controlling mowers via a web or mobile interface. It integrates an obstacle avoidance system and safety layers that execute emergency stops when the device is lifted or crashes. The system manages robotic hardware through firm

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  • zhm-real/motionplanningzhm-real avatar

    zhm-real/MotionPlanning

    2,702View on GitHub↗

    MotionPlanning is a software library designed for autonomous navigation, providing a comprehensive suite of tools for path planning, trajectory generation, and vehicle control. It enables the calculation of collision-free routes and dynamic movement paths for autonomous vehicles operating in complex, changing environments. The project distinguishes itself by integrating hierarchical motion decomposition, which separates high-level route planning from low-level trajectory generation to manage computational complexity. It employs kinematic bicycle modeling and trailer dynamics simulation to ens

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    View on GitHub↗2,702
  • zju-fast-lab/ego-planner-swarmZJU-FAST-Lab avatar

    ZJU-FAST-Lab/ego-planner-swarm

    2,083View on GitHub↗

    Ego-planner-swarm is an autonomous drone swarm trajectory planner and decentralized multi-agent navigation system. It provides algorithmic software tools for calculating collision-free movement paths for single or multiple multicopters using decentralized onboard computing and local peer communication without relying on central ground stations or servers. The software encompasses algorithmic components for drone motion planning, including asynchronous background replanning loops that adapt flight paths immediately to newly perceived obstacles or moving agents. Movement paths are represented

    C++
    View on GitHub↗2,083
  • robotlocomotion/drakeRobotLocomotion avatar

    RobotLocomotion/drake

    3,910View on GitHub↗

    Drake is a robotics simulation framework and control system modeling tool used for designing, simulating, and verifying the dynamics of complex robotic systems. It functions as a multibody dynamics simulator and a mathematical optimization library, providing a suite of algorithms for trajectory optimization and the simulation of articulated robots. The framework is distinguished by its block-diagram system for composing dynamical subsystems and its ability to formulate and solve diverse mathematical programs, including linear, quadratic, and nonconvex nonlinear problems. It supports specializ

    C++drakerobotics
    View on GitHub↗3,910
  • atb033/multi_agent_path_planningatb033 avatar

    atb033/multi_agent_path_planning

    1,456View on GitHub↗

    This library is a comprehensive toolkit for autonomous robot navigation and multi-agent motion coordination. It provides a framework for calculating collision-free movement trajectories, enabling multiple robots to operate within shared environments while maintaining efficient and safe paths. The project distinguishes itself by supporting both global and decentralized control strategies. It offers global coordination techniques that resolve path conflicts across entire workspaces to ensure unified group movement, alongside decentralized methods that allow individual agents to react dynamicall

    Pythonmulti-agent-path-findingmulti-agent-systemsmulti-robot
    View on GitHub↗1,456
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    Genesis-Embodied-AI/Genesis

    29,362View on GitHub↗

    Genesis is an embodied AI simulation platform and parallelized robotics simulator designed for training general-purpose robotic agents. It integrates a physics engine for robotics that calculates collisions and movements for rigid bodies, soft tissues, and fluids, alongside a photorealistic 3D rendering engine. The platform features a domain randomization framework to vary environment parameters across parallel simulations, aiding in sim-to-real transfer. It supports the integration of real-world captured light fields and Gaussian splatting to provide photorealistic backgrounds within simulat

    Python
    View on GitHub↗29,362
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    cyberbotics/webots

    4,417View on GitHub↗

    Webots is a physics-based robot simulator and development environment used for modeling, programming, and testing the behavior of robots in a simulated 3D physical world. It serves as a virtual prototyping tool to verify mechanical and electronic systems through the creation of virtual robot models and control logic. The platform enables a full robotics simulation workflow, including the development of robot controllers and the programming of autonomous agent behaviors. It focuses on physical system modeling to represent the mechanical properties of hardware and simulate real-world interactio

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    4,620View on GitHub↗

    dm_control is a physics-based simulation framework and robot control simulation toolkit designed for creating and interacting with continuous control tasks. It serves as a suite of reinforcement learning environments and a benchmarking tool for evaluating autonomous agents within virtual physics spaces. The framework provides a collection of environments based on MuJoCo physics bindings to simulate rigid body dynamics and contact forces. It features hardware-accelerated rendering and interactive viewers for the visualization of physics environments and agent behavior. The system supports the

    Pythonartificial-intelligencedeep-learningmachine-learning
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    View on GitHub↗2,733
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    PCrnjak/PAROL6-Desktop-robot-arm

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    This project provides a complete set of design files and hardware specifications for a 3D-printable industrial-style robot arm. The system includes a CAN bus robot controller for managing stepper motors and sensors, a kinematics engine for calculating joint angles and poses, and a UDP-based Python API for sending motion commands and monitoring telemetry. The system features a force-controlled robotic gripper that utilizes field-oriented control on stepper motors to enable compliant grasping and precise force sensing. It also includes a 3D position visualization tool for real-time telemetry tr

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    C++caffecomputer-visiondeep-learning
    View on GitHub↗8,734
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    Cartographer is a cross-platform robotics library and framework for simultaneous localization and mapping in 2D and 3D spaces. It functions as a real-time mapping engine that constructs environmental maps while tracking a device's position and orientation using continuous sensor data processing. The system implements real-time SLAM to generate precise maps for autonomous navigation. It utilizes a localization system that determines a device's state within a mapped environment across different hardware platforms and sensor configurations. The framework covers spatial estimation through non-li

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    2,648View on GitHub↗

    This project is a framework for autonomous mobile robot navigation within the Robot Operating System ecosystem. It provides a suite of tools for calculating safe trajectories and movement commands, enabling mobile bases to reach specific destinations while avoiding obstacles in dynamic environments. The system utilizes a hierarchical planning approach that separates long-range path generation from short-range reactive obstacle avoidance. It maintains spatial awareness through a centralized coordinate tracking system and a grid-based representation that stores obstacle information and proximit

    C++navigationroboticsros
    View on GitHub↗2,648
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    XUAN is an autonomous vehicle control system that integrates microcontrollers and sensors to manage hardware drivers and AI module communication. It consists of embedded vehicle control firmware, microcontroller hardware designs, and a vehicle chassis CAD model. The project provides the electronic and physical specifications for a bicycle-based vehicle, including PCB schematics and hardware layouts for a controller that manages motor drivers via communication buses and motion sensors. It also includes a set of 3D design files and engineering data for the physical structural frame. The system

    View on GitHub↗5,587
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    Gobot is a robotics framework for the Go programming language designed for developing robotics, drones, and IoT applications. It provides a hardware abstraction layer with standardized drivers to interact with GPIO, I2C, SPI, and PWM interfaces across various single-board computers and microcontrollers. The framework functions as an IoT device orchestrator and BLE device manager, enabling the coordination of multiple sensors, actuators, and Bluetooth Low Energy peripherals. It includes specialized interfaces for drone control, allowing for the management of flight maneuvers and video streams

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    Dummy-Robot is a software platform designed for the real-time teleoperation of desktop robotic arms. It functions as a human-robot interaction interface, translating gestural input and sensor data into fluid mechanical motion to enable remote physical task execution. The system utilizes a specialized control framework to map human hand movements directly to robotic actuators. By integrating sensor fusion and kinematic mapping, the software maintains low-latency synchronization between an operator's spatial inputs and the physical assembly, allowing for precise manipulation through a dedicated

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