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Detecting Heads using Feature Refine Net and Cascaded Multi-Scale Architecture

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arxiv 1803.09256 v4 pith:NK46A5IT submitted 2018-03-25 cs.CV

classification cs.CV
keywords headsmethodmulti-scalearchitecturecascadeddetectiondetectorglobal
verification ladder T0 review T1 audit T2 compute T3 formal
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This paper presents a method that can accurately detect heads especially small heads under the indoor scene. To achieve this, we propose a novel method, Feature Refine Net (FRN), and a cascaded multi-scale architecture. FRN exploits the multi-scale hierarchical features created by deep convolutional neural networks. The proposed channel weighting method enables FRN to make use of features alternatively and effectively. To improve the performance of small head detection, we propose a cascaded multi-scale architecture which has two detectors. One called global detector is responsible for detecting large objects and acquiring the global distribution information. The other called local detector is designed for small objects detection and makes use of the information provided by global detector. Due to the lack of head detection datasets, we have collected and labeled a new large dataset named SCUT-HEAD which includes 4405 images with 111251 heads annotated. Experiments show that our method has achieved state-of-the-art performance on SCUT-HEAD.

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  1. RPEE-HEADS: A Novel Benchmark for Pedestrian Head Detection in Crowd Videos

    cs.CV 2024-11 conditional novelty 6.0 of 10

    A new crowd-head detection benchmark for railway platforms and event entrances, with 109,913 annotated heads across 1,886 images, shows YOLOv9 and RT-DETR reach about 91% mAP while models trained on existing datasets ...

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