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MARS: An Instance-aware, Modular and Realistic Simulator for Autonomous Driving

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arxiv 2307.15058 v1 pith:LICGX7HN submitted 2023-07-27 cs.CV

MARS: An Instance-aware, Modular and Realistic Simulator for Autonomous Driving

classification cs.CV
keywords simulatorautonomousdrivingmodularrealisticcasesinstance-awareinstances
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Nowadays, autonomous cars can drive smoothly in ordinary cases, and it is widely recognized that realistic sensor simulation will play a critical role in solving remaining corner cases by simulating them. To this end, we propose an autonomous driving simulator based upon neural radiance fields (NeRFs). Compared with existing works, ours has three notable features: (1) Instance-aware. Our simulator models the foreground instances and background environments separately with independent networks so that the static (e.g., size and appearance) and dynamic (e.g., trajectory) properties of instances can be controlled separately. (2) Modular. Our simulator allows flexible switching between different modern NeRF-related backbones, sampling strategies, input modalities, etc. We expect this modular design to boost academic progress and industrial deployment of NeRF-based autonomous driving simulation. (3) Realistic. Our simulator set new state-of-the-art photo-realism results given the best module selection. Our simulator will be open-sourced while most of our counterparts are not. Project page: https://open-air-sun.github.io/mars/.

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Cited by 1 Pith paper

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    DrivingGaussian++ reconstructs dynamic surround-view driving scenes and performs training-free multi-task editing (weather, texture, object manipulation) using Gaussians, diffusion models, and LLM-generated trajectories.