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March 20, 20242 citationsOpen Access

RadSplat: Radiance Field-Informed Gaussian Splatting for Robust Real-Time Rendering with 900+ FPS

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MNMichael NiemeyerFMFabian ManhardtMRMarie‐Julie Rakotosaona

Key Points

  • RadSplat enables state-of-the-art view synthesis of complex scene captures while operating at rendering speeds exceeding 900 frames per second.
  • The framework sustains 900+ frames per second rendering by using radiance fields to guide and optimize point-based scene representations.
  • Optimization combines novel point pruning with test-time filtering, which supports scalable rendering across large house-sized environments.

Abstract

Recent advances in view synthesis and real-time rendering have achieved photorealistic quality at impressive rendering speeds. While Radiance Field-based methods achieve state-of-the-art quality in challenging scenarios such as in-the-wild captures and large-scale scenes, they often suffer from excessively high compute requirements linked to volumetric rendering. Gaussian Splatting-based methods, on the other hand, rely on rasterization and naturally achieve real-time rendering but suffer from brittle optimization heuristics that underperform on more challenging scenes. In this work, we present RadSplat, a lightweight method for robust real-time rendering of complex scenes. Our main contributions are threefold. First, we use radiance fields as a prior and supervision signal for optimizing point-based scene representations, leading to improved quality and more robust optimization. Next, we develop a novel pruning technique reducing the overall point count while maintaining high quality, leading to smaller and more compact scene representations with faster inference speeds. Finally, we propose a novel test-time filtering approach that further accelerates rendering and allows to scale to larger, house-sized scenes. We find that our method enables state-of-the-art synthesis of complex captures at 900+ FPS.

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Cite This Study

Niemeyer et al. (2024) studied this question.

synapsesocial.com/papers/68e732d9b6db6435876ac898https://doi.org/10.48550/arxiv.2403.13806
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