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I2EBench: A Comprehensive Benchmark for Instruction-based Image Editing

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arxiv 2408.14180 v2 pith:VAAACY3T submitted 2024-08-26 cs.CV cs.AI

classification cs.CVcs.AI
keywords i2ebenchcomprehensiveimagesmodelsbenchmarkdimensionseditingevaluation
verification ladder T0 review T1 audit T2 compute T3 formal
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Significant progress has been made in the field of Instruction-based Image Editing (IIE). However, evaluating these models poses a significant challenge. A crucial requirement in this field is the establishment of a comprehensive evaluation benchmark for accurately assessing editing results and providing valuable insights for its further development. In response to this need, we propose I2EBench, a comprehensive benchmark designed to automatically evaluate the quality of edited images produced by IIE models from multiple dimensions. I2EBench consists of 2,000+ images for editing, along with 4,000+ corresponding original and diverse instructions. It offers three distinctive characteristics: 1) Comprehensive Evaluation Dimensions: I2EBench comprises 16 evaluation dimensions that cover both high-level and low-level aspects, providing a comprehensive assessment of each IIE model. 2) Human Perception Alignment: To ensure the alignment of our benchmark with human perception, we conducted an extensive user study for each evaluation dimension. 3) Valuable Research Insights: By analyzing the advantages and disadvantages of existing IIE models across the 16 dimensions, we offer valuable research insights to guide future development in the field. We will open-source I2EBench, including all instructions, input images, human annotations, edited images from all evaluated methods, and a simple script for evaluating the results from new IIE models. The code, dataset and generated images from all IIE models are provided in github: https://github.com/cocoshe/I2EBench.

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Cited by 1 Pith paper

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  1. ADIEE: Automatic Dataset Creation and Scorer for Instruction-Guided Image Editing Evaluation

    cs.CV 2025-07 conditional novelty 6.0 of 10

    An automatically generated training dataset and a fine-tuned LLaVA-NeXT model produce an image editing evaluation scorer that aligns with human preference and serves as a reward model for improving editing models.

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