成像先验驱动超分的倾斜视角目标检测
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1.国防科技大学 空天科学学院;2.湖南先进技术研究院

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中图分类号:

TP751

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国家自然科学基金资助项目(12472189),湖南省科技创新计划项目(2022RC1196)


Imaging Prior-Driven Super-Resolution for Object Detection under Oblique Views
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    摘要:

    目标检测是遥感图像智能解译的关键技术,现有方法主要针对卫星下视成像设计,且对成像先验信息利用不足,难以有效应对无人机倾斜成像导致的目标尺度显著变化问题。针对倾斜成像的高精度目标检测需求,提出成像先验驱动超分(imaging prior-driven super-resolution, IPSR)方法。该方法利用相机焦距、成像俯仰角和飞行高度等多参数构建成像距离估计模型,用于估计图像任意位置的成像距离;基于此距离信息实现了全图自适应超分,有效减小倾斜成像视角下的目标尺度差异。在多视角成像检测数据集VSAI和卫星图像数据集DOTA-v1.5 上的实验表明:IPSR可结合任意主流目标检测模型,并显著提升目标检测模型在倾斜成像条件下的检测精度(VSAI 上提升 6-7 mAP,DOTA-v1.5 上提升 3-4 mAP),同时展现了该方法在多场景下的通用性。

    Abstract:

    Object detection is a key technology for intelligent interpretation of remote sensing (RS) images. Existing object detection methods were primarily designed for nadir-imaging satellite RS images. Additionally, their insufficient utilization of imaging prior information makes them struggle to effectively address the significant object scale variations caused by UAV oblique imaging. To address the demand for high-accuracy object detection under oblique imaging perspectives, an imaging prior-driven super-resolution (IPSR) approach was proposed. An imaging distance model was established based on multiple parameters including camera focal length, flight altitude, and pitch angle, enabling the estimation of imaging distances at arbitrary positions in the image. Then, full-image adaptive SR reconstruction was performed based on distance estimation, effectively mitigating intra-image scale disparities under oblique imaging perspectives. Experiments on the UAV multi-view imaging dataset VSAI and satellite imagery dataset DOTA-v1.5 demonstrate that IPSR can be integrated with any mainstream object detection model. It significantly enhances the detection accuracy of these models under oblique imaging conditions (achieving gains of 6-7 mAP on VSAI and 3-4 mAP on DOTA-v1.5). Besides, it exhibits the versatility of the proposed method across multiple scenarios.

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  • 收稿日期:2025-06-06
  • 最后修改日期:2025-07-19
  • 录用日期:2025-07-21
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