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	<title>Robort learning &#8211; UAEGAMERS</title>
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		<title>Into the Omniverse: Open-Source Physics Engine and OpenUSD Advance Robot Learning</title>
		<link>https://uaegamers.com/into-the-omniverse-open-source-physics-engine-and-openusd-advance-robot-learning-2/</link>
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		<dc:creator><![CDATA[UAE Gamers]]></dc:creator>
		<pubDate>Tue, 30 Sep 2025 06:45:58 +0000</pubDate>
				<category><![CDATA[Technology & Innovation]]></category>
		<category><![CDATA[Robort learning]]></category>
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					<description><![CDATA[The Newton physics engine and enhanced NVIDIA Isaac GR00T models enable developers to accelerate robot learning through unified OpenUSD simulation]]></description>
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					<p>The Newton physics engine and enhanced NVIDIA Isaac GR00T models enable developers to accelerate robot learning through unified OpenUSD simulation workflows.</p>				</div>
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			<p><em>Editor’s note: This blog is a part of </em><strong><a href="https://www.nvidia.com/en-us/omniverse/news/" target="_blank" rel="noreferrer noopener"><em>Into the Omniverse</em></a></strong><em>, a series focused on how developers, 3D practitioners and enterprises can transform their workflows using the latest advances in OpenUSD and NVIDIA Omniverse.</em></p><p>Building robots that can effectively operate alongside human workers in factories, hospitals and public spaces presents an enormous technical challenge. These robots require humanlike dexterity, perception, cognition and whole-body coordination to navigate unpredictable real-world environments in real time.</p><p>A <strong><a href="https://www.nvidia.com/en-us/use-cases/robotics-simulation/" target="_blank" rel="noreferrer noopener">“sim-first” approach</a></strong> unlocks these critical skills by enabling parallel training of hundreds or thousands of robot instances using real robot-captured data and <strong><a href="https://www.nvidia.com/en-us/glossary/synthetic-data-generation/" target="_blank" rel="noreferrer noopener">synthetic data</a></strong> in simulation environments. <strong><a href="https://www.nvidia.com/en-us/omniverse/usd/" target="_blank" rel="noreferrer noopener">Universal Scene Description</a></strong> (OpenUSD) provides the foundational framework for this advanced robot development, serving as a scalable, interoperable data standard that enables developers to build physically accurate virtual worlds where robots can practice and perfect their skills before transferring them to real-world applications.</p>
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				<h4 class="woodmart-title-container title wd-fontsize-xl">Accelerating Physical AI Development</h4> 
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			<p>NVIDIA announced at the Conference on Robot Learning this week groundbreaking advances in open-source physics simulation, open foundation models and development frameworks, including:</p><p><a href="https://developer.nvidia.com/newton-physics" target="_blank" rel="noreferrer noopener"><strong>Newton Physics Engine</strong></a>: While robots learn faster and safer in <a href="https://www.nvidia.com/en-us/use-cases/robotics-simulation/" target="_blank" rel="noreferrer noopener">simulation</a>, <a href="https://www.nvidia.com/en-us/glossary/humanoid-robot/" target="_blank" rel="noreferrer noopener">humanoid robots</a> — with complex joints, balance and movements — are pushing today’s physics engines to the limit.</p><p>Codeveloped by Google DeepMind, Disney Research and NVIDIA, and <a href="https://www.linuxfoundation.org/press/linux-foundation-announces-contribution-of-newton-by-disney-research-google-deepmind-and-nvidia-to-accelerate-open-robot-learning" target="_blank" rel="noreferrer noopener">managed by the Linux Foundation</a>, <a href="https://github.com/newton-physics" target="_blank" rel="noreferrer noopener">Newton</a> is an open-source, GPU-accelerated physics engine to advance robot learning.</p><p>Built on <a href="https://developer.nvidia.com/warp-python" target="_blank" rel="noreferrer noopener">NVIDIA Warp</a> and <a href="https://www.nvidia.com/en-us/omniverse/usd/" target="_blank" rel="noreferrer noopener">OpenUSD</a>, Newton enables robots to learn complex tasks more precisely while working seamlessly with <a href="https://www.nvidia.com/en-us/glossary/robot-learning/" target="_blank" rel="noreferrer noopener">robot learning</a> frameworks like MuJoCo Playground and <a href="https://developer.nvidia.com/isaac/lab" target="_blank" rel="noreferrer noopener">NVIDIA Isaac Lab</a>.</p>
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			<p><em>Tune in to an upcoming </em><a href="https://www.addevent.com/event/pi26720934" target="_blank" rel="noreferrer noopener"><em>livestream for a Newton beta demonstration</em></a><em> to learn about Newton’s core features and how to get started on Newton with NVIDIA Isaac Lab.</em></p><p><a href="https://developer.nvidia.com/isaac/gr00t" target="_blank" rel="noreferrer noopener"><strong>Isaac GR00T N1.6</strong></a>: To perform humanlike tasks in the physical world, humanoids must understand ambiguous instructions and navigate unforeseen scenarios. The latest Isaac GR00T N1.6 open robot foundation model, available soon on Hugging Face, integrates <a href="https://github.com/nvidia-cosmos/cosmos-reason1" target="_blank" rel="noreferrer noopener">NVIDIA Cosmos Reason</a>, an open reasoning vision language model built for <a href="https://www.nvidia.com/en-us/glossary/generative-physical-ai/" target="_blank" rel="noreferrer noopener">physical AI</a>. Cosmos Reason serves as the robot’s deep-thinking brain and transforms vague instructions into step-by-step action plans using prior knowledge, common sense and physics understanding.</p><p><a href="https://github.com/isaac-sim/IsaacLab/tree/release/2.3.0" target="_blank" rel="noreferrer noopener"><strong>NVIDIA Isaac Lab</strong></a><strong>:</strong> The latest version of Isaac Lab, an open-source, modular robot learning framework built on NVIDIA Isaac Sim and OpenUSD, is now available as an early developer release. Version 2.3 brings a host of new features to robotics researchers and developers, including advanced whole-body control and expanded teleoperation for data collection.</p><p>OpenUSD’s interoperability ensures these advanced physics simulations, foundation models and learning frameworks work together seamlessly, enabling developers to build unified <a href="https://www.nvidia.com/en-us/use-cases/robot-learning/" target="_blank" rel="noreferrer noopener">robot learning</a> pipelines that scale across different platforms and deployment scenarios.</p>
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					<h2 class="elementor-heading-title elementor-size-default">See How Developers Are Accelerating Robot Learning</h2>				</div>
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			<p>Leading humanoid and robotics developers, including Agility Robotics, Lightwheel, Mentee, Universal Robots and Wandelbots are adopting simulation technologies and libraries to accelerate physical AI development and deployment.</p><ul class="wp-block-list"><li><a href="https://www.nvidia.com/en-us/customer-stories/agility-robotics-digit-humanoid-robot/" target="_blank" rel="noreferrer noopener"><strong>Agility Robotics</strong></a> uses NVIDIA Isaac Lab to train a whole-body control foundation model for its Digit robot. Isaac Sim and OpenUSD enable precise digital twin creation of customer facilities, delivering a scalable way to optimize the robot’s operation before deployment.</li><li><a href="https://www.nvidia.com/en-us/customer-stories/lightwheel/" target="_blank" rel="noreferrer noopener"><strong>Lightwheel</strong></a> developed the Lightwheel Simulation Platform, built on <a href="https://www.nvidia.com/en-us/omniverse/" target="_blank" rel="noreferrer noopener">NVIDIA Omniverse</a>. Lightwheel is also building <a href="https://www.nvidia.com/en-us/glossary/simready/" target="_blank" rel="noreferrer noopener">simulation-ready assets</a> that use the NVIDIA USD Search application programming interface to streamline asset discovery and assemble accurate digital twins to help robotics developers accelerate their training and simulation workflows.</li><li><a href="https://www.nvidia.com/en-us/customer-stories/mentee-robotics/" target="_blank" rel="noreferrer noopener"><strong>Mentee Robotics</strong></a> harnesses <a href="https://blogs.nvidia.com/blog/three-computers-robotics/" target="_blank" rel="noopener">NVIDIA’s three-computer architecture</a> to develop MenteeBot’s sophisticated learning capabilities, using OpenUSD as the foundation for developing synthetic data generation pipelines in Isaac Sim.</li><li><a href="https://www.nvidia.com/en-us/customer-stories/universal-robots-accelerates-cobot-development-with-nvidia/" target="_blank" rel="noreferrer noopener"><strong>Universal Robots</strong></a> uses the NVIDIA Isaac platform for comprehensive robot simulation and learning, tapping OpenUSD to create interoperable digital twins of manufacturing environments that validate cobot safety protocols and optimize human-robot interaction across diverse industrial settings. Inbolt, a partner in the Universal Robots ecosystem, delivers dynamic vision guidance systems that enable robots to adapt to their environment on the fly, handling production variations with ease.</li><li><a href="https://www.nvidia.com/en-us/customer-stories/volkswagen-with-wandelbots-nova-and-isaac-sim/" target="_blank" rel="noreferrer noopener"><strong>Wandelbots</strong></a>, a German robotics software company, is helping Volkswagen shorten automation projects at its Transparent Factory in Dresden. Using Wandelbots NOVA — an Isaac Sim–integrated, no-code teaching platform — assembly workers can train robots to pick-and-place in a virtual twin, before deployment.</li></ul><p>NVIDIA’s open frameworks and libraries are also being adopted by developers within the robotics community. Community member and NVIDIA Omniverse ambassador Dylan Tobin <a href="https://www.linkedin.com/posts/dylan-tobin313_nvidiaomniverse-nvidiarobotics-physicalai-activity-7363201316753444864-PrfD?utm_source=share&amp;utm_medium=member_desktop&amp;rcm=ACoAAAo-ztUBZUDYK16N3mS3qkG-ohtZe11AbGc" target="_blank" rel="noreferrer noopener">created an AI chatbot</a> trained on Isaac Sim workflows to help developers navigate Omniverse more efficiently.</p>
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