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Large Language Models for Captioning and Retrieving Remote Sensing Images
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Image captioning and cross-modal retrieval are examples of tasks that involve the joint analysis of visual and linguistic information. In connection to remote sensing imagery, these tasks can help non-expert users in extracting relevant Earth observation information for a variety of applications. Still, despite some previous efforts, the development and application of vision and language models to the remote sensing domain have been hindered by the relatively small size of the available datasets and models used in previous studies. In this work, we propose RS-CapRet, a Vision and Language method for remote sensing tasks, in particular image captioning and text-image retrieval. We specifically propose to use a highly capable large decoder language model together with image encoders adapted to remote sensing imagery through contrastive language-image pre-training. To bridge together the image encoder and language decoder, we propose training simple linear layers with examples from combining different remote sensing image captioning datasets, keeping the other parameters frozen. RS-CapRet can then generate descriptions for remote sensing images and retrieve images from textual descriptions, achieving SOTA or competitive performance with existing methods. Qualitative results illustrate that RS-CapRet can effectively leverage the pre-trained large language model to describe remote sensing images, retrieve them based on different types of queries, and also show the ability to process interleaved sequences of images and text in a dialogue manner.
Forward citations
Cited by 4 Pith papers
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Multimodal Large Language Models for Remote Sensing Image Understanding: Domain-Specific or General-Purpose?
Under one zero-shot protocol, general-purpose MLLMs match or outperform remote-sensing-specific MLLMs on several RS benchmarks, while RS-MLLMs keep advantages in visual grounding, RS-VQA, and ultra-high-resolution und...
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WeaveEarth: Structured Evidence Construction and Reasoning for Training-Free UHR Remote Sensing Understanding
A training-free evidence-selection and topology-preserving packaging pipeline improves frozen VLMs on ultra-high-resolution remote sensing VQA without multi-round search.
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GeoMag: A Vision-Language Model for Pixel-level Fine-Grained Remote Sensing Image Parsing
A remote sensing vision-language model that uses task-aware resolution adjustment and attention-based cropping to perform pixel-level segmentation alongside image- and region-level tasks.
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