CVNov 12, 2018

M2Det: A Single-Shot Object Detector based on Multi-Level Feature Pyramid Network

arXiv:1811.04533v3863 citationsHas Code
Originality Incremental advance
AI Analysis

This addresses the limitation of existing feature pyramids in object detectors, offering improved performance for computer vision applications, though it is incremental as it builds on prior one-stage detectors like SSD.

The paper tackles the problem of scale variation in object detection by proposing a Multi-Level Feature Pyramid Network (MLFPN) to construct more effective feature pyramids, resulting in M2Det achieving state-of-the-art AP of 41.0 (single-scale) and 44.2 (multi-scale) on MS-COCO at 11.8 FPS.

Feature pyramids are widely exploited by both the state-of-the-art one-stage object detectors (e.g., DSSD, RetinaNet, RefineDet) and the two-stage object detectors (e.g., Mask R-CNN, DetNet) to alleviate the problem arising from scale variation across object instances. Although these object detectors with feature pyramids achieve encouraging results, they have some limitations due to that they only simply construct the feature pyramid according to the inherent multi-scale, pyramidal architecture of the backbones which are actually designed for object classification task. Newly, in this work, we present a method called Multi-Level Feature Pyramid Network (MLFPN) to construct more effective feature pyramids for detecting objects of different scales. First, we fuse multi-level features (i.e. multiple layers) extracted by backbone as the base feature. Second, we feed the base feature into a block of alternating joint Thinned U-shape Modules and Feature Fusion Modules and exploit the decoder layers of each u-shape module as the features for detecting objects. Finally, we gather up the decoder layers with equivalent scales (sizes) to develop a feature pyramid for object detection, in which every feature map consists of the layers (features) from multiple levels. To evaluate the effectiveness of the proposed MLFPN, we design and train a powerful end-to-end one-stage object detector we call M2Det by integrating it into the architecture of SSD, which gets better detection performance than state-of-the-art one-stage detectors. Specifically, on MS-COCO benchmark, M2Det achieves AP of 41.0 at speed of 11.8 FPS with single-scale inference strategy and AP of 44.2 with multi-scale inference strategy, which is the new state-of-the-art results among one-stage detectors. The code will be made available on \url{https://github.com/qijiezhao/M2Det.

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