- Improved image quality
- Faster performance
- More immersive experience
nVidia is once again pushing the boundaries of rendering technology with the launch of NVIDIA DLSS 3.5 on September 21st. This new version introduces Ray Reconstruction, an AI-powered technique that enhances the quality of Ray Tracing in games and applications.
Traditionally, hand-tuned denoisers have been used to resolve sampled rays in a scene. However, these denoisers have limitations, such as introducing ghosting, removing dynamic effects, and reducing overall quality. They also struggle with upscaling, which is crucial for experiencing detailed games at fast frame rates.
DLSS 3.5 addresses these limitations by using an AI network trained with 5 times more data than its predecessor. This allows the AI to recognize different ray-traced effects and make smarter decisions about using temporal and spatial data. As a result, DLSS 3.5 retains high-frequency information for superior-quality upscaling.
One of the key benefits of Ray Reconstruction is its ability to accurately recreate lighting patterns in real-time games. This eliminates inaccuracies caused by hand-tuned denoisers and ensures a more immersive experience. For example, in Cyberpunk 2077, DLSS 3.5 accurately generates lighting effects, allowing players to see the beam of headlights and reflections on the environment.
DLSS 3.5 is not only beneficial for gamers but also for creators. In apps like Chaos Vantage and NVIDIA Omniverse USD Composer, DLSS 3.5 improves image quality during preview and real-time editing. It reduces noise while panning around a scene, providing a smoother editing experience.
Gamers can look forward to several upcoming titles with DLSS support, including Lies of P, Party Animals, Warhaven, and Witchfire. These games will offer enhanced performance and image quality for Geforce RTX users.
Overall, DLSS 3.5 with Ray Reconstruction is a significant upgrade that brings AI-powered enhancements to ray tracing in games and applications. It offers improved image quality, faster performance, and a more immersive experience for gamers and creators alike.
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Background Information
About nVidia:
NVIDIA has firmly established itself as a leader in the realm of client computing, continuously pushing the boundaries of innovation in graphics and AI technologies. With a deep commitment to enhancing user experiences, NVIDIA's client computing business focuses on delivering solutions that power everything from gaming and creative workloads to enterprise applications. for its GeForce graphics cards, the company has redefined high-performance gaming, setting industry standards for realistic visuals, fluid frame rates, and immersive experiences. Complementing its gaming expertise, NVIDIA's Quadro and NVIDIA RTX graphics cards cater to professionals in design, content creation, and scientific fields, enabling real-time ray tracing and AI-driven workflows that elevate productivity and creativity to unprecedented heights. By seamlessly integrating graphics, AI, and software, NVIDIA continues to shape the landscape of client computing, fostering innovation and immersive interactions in a rapidly evolving digital world.Latest Articles about nVidia
Technology Explained
DLSS: DLSS (Deep Learning Super Sampling) is an advanced AI-powered technology developed by NVIDIA that enhances real-time graphics rendering in video games and applications. DLSS utilizes deep learning algorithms to upscale lower-resolution images in real-time, resulting in higher-quality visuals while maintaining optimal performance. By harnessing the power of AI and deep neural networks, DLSS effectively boosts frame rates and image quality, enabling gamers to experience smoother gameplay and more immersive graphics without sacrificing computational efficiency. This technology has gained widespread recognition for its ability to deliver impressive visual fidelity and improved performance simultaneously, revolutionizing the way modern computer graphics are processed and displayed.
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Geforce: Geforce is a line of graphics processing units (GPUs) developed by Nvidia. It is the most popular GPU used in the computer industry today. Geforce GPUs are used in gaming PCs, workstations, and high-end laptops. They are also used in virtual reality systems, artificial intelligence, and deep learning applications. Geforce GPUs are designed to deliver high performance and power efficiency, making them ideal for gaming and other demanding applications. They are also capable of rendering high-resolution graphics and providing smooth, realistic visuals. Geforce GPUs are used in a variety of applications, from gaming to professional workstations, and are the preferred choice for many computer users.
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Ray Tracing: Ray tracing is an advanced rendering technique used in computer graphics to simulate the way light interacts with objects in a virtual environment. It traces the path of light rays as they travel through a scene, calculating how they interact with surfaces, materials, and lighting sources. By simulating the complex behaviors of light, ray tracing produces highly realistic and accurate visual effects, including lifelike reflections, shadows, and refractions. This technology enhances the overall visual quality of images and animations by accurately replicating how light behaves in the real world, resulting in a more immersive and visually stunning digital experience.
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