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NVIDIA Announces Newton: Open-Source Physics Engine For Robotics Simulation

Digital Pulse by Digital Pulse
March 21, 2025
in Metaverse
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NVIDIA Announces Newton: Open-Source Physics Engine For Robotics Simulation
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by
Alisa Davidson


Revealed: March 21, 2025 at 11:14 am Up to date: March 21, 2025 at 11:14 am

by Ana


Edited and fact-checked:
March 21, 2025 at 11:14 am

To enhance your local-language expertise, generally we make use of an auto-translation plugin. Please observe auto-translation might not be correct, so learn authentic article for exact info.

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NVIDIA has unveiled Newton, an open-source and extensible physics engine developed in collaboration with Google DeepMind and Disney Analysis, geared toward enhancing robotic studying and improvement.

NVIDIA Announces Newton: Open-Source Physics Engine For Robotics Simulation

Expertise firm NVIDIA has unveiled Newton, an open-source and extensible physics engine developed in collaboration with Google DeepMind and Disney Analysis, geared toward enhancing robotic studying and improvement.

Primarily based on NVIDIA Warp, which permits robots to be taught advanced duties with improved accuracy, Newton is designed to work seamlessly with studying frameworks like MuJoCo Playground and NVIDIA Isaac Lab, an open-source platform for unified robotic studying.

Bodily AI fashions enable robots to autonomously perceive, analyze, motive, and interact with their environment. The development of robotics closely depends on accelerated computing and simulations to develop the subsequent technology of robotic programs. 

Physics is important in robotic simulation, because it types the premise for creating correct digital fashions that characterize how robots behave and work together in real-world environments. By these simulators, researchers and engineers are capable of practice, design, take a look at, and validate management algorithms and prototypes in a safe, environment friendly, and cost-effective approach.

Newton is designed to assist your entire robotics group, permitting roboticists to freely use, distribute, and contribute to its improvement with analysis. Constructed on NVIDIA Warp, a CUDA-X acceleration library, it affords builders an environment friendly solution to create GPU-accelerated, kernel-based applications for simulation, AI, robotics, and machine studying (ML). This framework offers high-performance capabilities for operating physics-based simulations, using the parallel processing energy of NVIDIA GPUs.

A notable function of Newton is its compatibility with Multi-Joint dynamics with Contact (MuJoCo), a longtime open-source physics engine utilized in robotics analysis for modeling advanced dynamics and contact-rich environments. This compatibility permits builders to reuse current fashions and code, lowering the time and assets required to adapt purposes for various physics engines.

Moreover, Google DeepMind has launched MuJoCo-Warp, an open-source robotics simulator accelerated by NVIDIA Warp, which delivers efficiency enhancements, reaching greater than a 70x speedup for humanoid simulations and a 100x speedup for in-hand manipulation duties. MuJoCo-Warp will probably be built-in as a main physics engine in Newton, providing builders enhanced efficiency and suppleness for his or her robotics purposes.

Extra Key Options Of Newton: Differentiable Physics, Extensibility, And OpenUSD Integration

Moreover, its skill to propagate gradients via simulation introduces new alternatives for robotics simulation and studying. Differentiable simulators are able to producing forward-mode outcomes whereas additionally calculating reverse-mode gradients of simulation outcomes, which may then be used for back-propagation to optimize system parameters.

As the sphere of robotics evolves, so does the complexity and number of eventualities that have to be simulated. Newton is designed to be extremely adaptable, supporting wealthy multiphysics simulations the place robots work together with a variety of supplies, together with meals, material, and different deformable objects. This flexibility is enabled by customized solvers, integrators, and numerical strategies. Newton additionally helps coupling several types of solvers, as demonstrated within the integration of a cloth level methodology (MPM) solver with inflexible physique dynamics for simulating interactions with sand.

Furthermore, Newton leverages the OpenUSD framework, which affords a flexible information mannequin and composition engine that aggregates the mandatory information to explain robots and their environments. Customized solvers and runtimes might be specialised for particular robotic capabilities and environments. Moreover, alongside Disney Analysis, Google DeepMind, Intrinsic, and NVIDIA, Newton helps to outline an OpenUSD asset construction for robotics. This construction goals to standardize robotic workflows by adopting greatest practices inside OpenUSD, making a unified information pipeline that gives a typical language for all information sources in robotics.

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About The Writer


Alisa, a devoted journalist on the MPost, makes a speciality of cryptocurrency, zero-knowledge proofs, investments, and the expansive realm of Web3. With a eager eye for rising tendencies and applied sciences, she delivers complete protection to tell and interact readers within the ever-evolving panorama of digital finance.

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Alisa Davidson










Alisa, a devoted journalist on the MPost, makes a speciality of cryptocurrency, zero-knowledge proofs, investments, and the expansive realm of Web3. With a eager eye for rising tendencies and applied sciences, she delivers complete protection to tell and interact readers within the ever-evolving panorama of digital finance.








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