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Poly Kernel Inception Network for Remote Sensing Detection

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arxiv 2403.06258 v2 pith:RCEZSW4N submitted 2024-03-10 cs.CV

classification cs.CV
keywords challengescontextconvolutiondetectionobjectpkinetremotesensing
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Object detection in remote sensing images (RSIs) often suffers from several increasing challenges, including the large variation in object scales and the diverse-ranging context. Prior methods tried to address these challenges by expanding the spatial receptive field of the backbone, either through large-kernel convolution or dilated convolution. However, the former typically introduces considerable background noise, while the latter risks generating overly sparse feature representations. In this paper, we introduce the Poly Kernel Inception Network (PKINet) to handle the above challenges. PKINet employs multi-scale convolution kernels without dilation to extract object features of varying scales and capture local context. In addition, a Context Anchor Attention (CAA) module is introduced in parallel to capture long-range contextual information. These two components work jointly to advance the performance of PKINet on four challenging remote sensing detection benchmarks, namely DOTA-v1.0, DOTA-v1.5, HRSC2016, and DIOR-R.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. MASF-YOLO: An Improved YOLOv11 Network for Small Object Detection on Drone View

    cs.CV 2025-04 conditional novelty 3.0 of 10

    MASF-YOLO, an improved YOLOv11 with multi-scale aggregation, attention, and selective fusion modules, raises VisDrone2019 validation mAP@0.5 from 44.6% to 49.2%.

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