This paper presents a new large scale multi-person tracking dataset -- \texttt{PersonPath22}, which is over an order of magnitude larger than currently available high quality multi-object tracking datasets such as MOT17, HiEve, and MOT20 datasets. The lack of large scale training and test data for this task has limited the community's ability to understand the performance of their tracking systems on a wide range of scenarios and conditions such as variations in person density, actions being performed, weather, and time of day. \texttt{PersonPath22} dataset was specifically sourced to provide a wide variety of these conditions and our annotations include rich meta-data such that the performance of a tracker can be evaluated along these different dimensions. The lack of training data has also limited the ability to perform end-to-end training of tracking systems. As such, the highest performing tracking systems all rely on strong detectors trained on external image datasets. We hope that the release of this dataset will enable new lines of research that take advantage of large scale video based training data.
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由于卷积神经网络(CNN)在过去的十年中检测成功,多对象跟踪(MOT)通过检测方法的使用来控制。随着数据集和基础标记网站的发布,研究方向已转向在跟踪时在包括重新识别对象的通用场景(包括重新识别(REID))上的最佳准确性。在这项研究中,我们通过提供专用的行人数据集并专注于对性能良好的多对象跟踪器的深入分析来缩小监视的范围)现实世界应用的技术。为此,我们介绍SOMPT22数据集;一套新的,用于多人跟踪的新套装,带有带注释的简短视频,该视频从位于杆子上的静态摄像头捕获,高度为6-8米,用于城市监视。与公共MOT数据集相比,这提供了室外监视的MOT的更为集中和具体的基准。我们分析了该新数据集上检测和REID网络的使用方式,分析了将MOT跟踪器分类为单发和两阶段。我们新数据集的实验结果表明,SOTA远非高效率,而单一跟踪器是统一快速执行和准确性的良好候选者,并具有竞争性的性能。该数据集将在以下网址提供:sompt22.github.io
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多目标跟踪(MOT)的典型管道是使用探测器进行对象本地化,并在重新识别(RE-ID)之后进行对象关联。该管道通过对象检测和重新ID的最近进展部分而部分地激励,并且部分地通过现有的跟踪数据集中的偏差激励,其中大多数物体倾向于具有区分外观和RE-ID模型足以建立关联。为了响应这种偏见,我们希望重新强调多目标跟踪的方法也应该在对象外观不充分辨别时起作用。为此,我们提出了一个大型数据集,用于多人跟踪,人类具有相似的外观,多样化的运动和极端关节。由于数据集包含主要组跳舞视频,我们将其命名为“DanceTrack”。我们预计DanceTrack可以提供更好的平台,以开发更多的MOT算法,这些算法依赖于视觉识别并更依赖于运动分析。在我们的数据集上,我们在数据集上基准测试了几个最先进的追踪器,并在与现有基准测试中遵守DanceTrack的显着性能下降。 DataSet,项目代码和竞争服务器播放:\ url {https://github.com/danceTrack}。
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Multi-animal tracking (MAT), a multi-object tracking (MOT) problem, is crucial for animal motion and behavior analysis and has many crucial applications such as biology, ecology and animal conservation. Despite its importance, MAT is largely under-explored compared to other MOT problems such as multi-human tracking due to the scarcity of dedicated benchmarks. To address this problem, we introduce AnimalTrack, a dedicated benchmark for multi-animal tracking in the wild. Specifically, AnimalTrack consists of 58 sequences from a diverse selection of 10 common animal categories. On average, each sequence comprises of 33 target objects for tracking. In order to ensure high quality, every frame in AnimalTrack is manually labeled with careful inspection and refinement. To our best knowledge, AnimalTrack is the first benchmark dedicated to multi-animal tracking. In addition, to understand how existing MOT algorithms perform on AnimalTrack and provide baselines for future comparison, we extensively evaluate 14 state-of-the-art representative trackers. The evaluation results demonstrate that, not surprisingly, most of these trackers become degenerated due to the differences between pedestrians and animals in various aspects (e.g., pose, motion, and appearance), and more efforts are desired to improve multi-animal tracking. We hope that AnimalTrack together with evaluation and analysis will foster further progress on multi-animal tracking. The dataset and evaluation as well as our analysis will be made available at https://hengfan2010.github.io/projects/AnimalTrack/.
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对人类对象相互作用的理解在第一人称愿景(FPV)中至关重要。遵循相机佩戴者操纵的对象的视觉跟踪算法可以提供有效的信息,以有效地建模此类相互作用。在过去的几年中,计算机视觉社区已大大提高了各种目标对象和场景的跟踪算法的性能。尽管以前有几次尝试在FPV域中利用跟踪器,但仍缺少对最先进跟踪器的性能的有条理分析。这项研究差距提出了一个问题,即应使用当前的解决方案``现成''还是应进行更多特定领域的研究。本文旨在为此类问题提供答案。我们介绍了FPV中单个对象跟踪的首次系统研究。我们的研究广泛分析了42个算法的性能,包括通用对象跟踪器和基线FPV特定跟踪器。分析是通过关注FPV设置的不同方面,引入新的绩效指标以及与FPV特定任务有关的。这项研究是通过引入Trek-150(由150个密集注释的视频序列组成的新型基准数据集)来实现的。我们的结果表明,FPV中的对象跟踪对当前的视觉跟踪器构成了新的挑战。我们强调了导致这种行为的因素,并指出了可能的研究方向。尽管遇到了困难,但我们证明了跟踪器为需要短期对象跟踪的FPV下游任务带来好处。我们预计,随着新的和FPV特定的方法学会得到研究,通用对象跟踪将在FPV中受欢迎。
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Datasets drive vision progress, yet existing driving datasets are impoverished in terms of visual content and supported tasks to study multitask learning for autonomous driving. Researchers are usually constrained to study a small set of problems on one dataset, while real-world computer vision applications require performing tasks of various complexities. We construct BDD100K 1 , the largest driving video dataset with 100K videos and 10 tasks to evaluate the exciting progress of image recognition algorithms on autonomous driving. The dataset possesses geographic, environmental, and weather diversity, which is useful for training models that are less likely to be surprised by new conditions. Based on this diverse dataset, we build a benchmark for heterogeneous multitask learning and study how to solve the tasks together. Our experiments show that special training strategies are needed for existing models to perform such heterogeneous tasks. BDD100K opens the door for future studies in this important venue.
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智能城市应用程序(例如智能交通路由或事故预防)依赖计算机视觉方法来确切的车辆定位和跟踪。由于精确标记的数据缺乏,从多个摄像机中检测和跟踪3D的车辆被证明是探索挑战的。我们提出了一个庞大的合成数据集,用于多个重叠和非重叠摄像头视图中的多个车辆跟踪和分割。与现有的数据集不同,该数据集仅为2D边界框提供跟踪地面真实,我们的数据集还包含适用于相机和世界坐标中的3D边界框的完美标签,深度估计以及实例,语义和泛型细分。该数据集由17个小时的标记视频材料组成,从64个不同的一天,雨,黎明和夜幕播放的340张摄像机录制,使其成为迄今为止多目标多型多相机跟踪的最广泛数据集。我们提供用于检测,车辆重新识别以及单摄像机跟踪的基准。代码和数据公开可用。
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我们介绍了Caltech Fish计数数据集(CFC),这是一个用于检测,跟踪和计数声纳视频中鱼类的大型数据集。我们将声纳视频识别为可以推进低信噪比计算机视觉应用程序并解决多对象跟踪(MOT)和计数中的域概括的丰富数据来源。与现有的MOT和计数数据集相比,这些数据集主要仅限于城市中的人和车辆的视频,CFC来自自然世界领域,在该域​​中,目标不容易解析,并且无法轻易利用外观功能来进行目标重新识别。 CFC允许​​研究人员训练MOT和计数算法并评估看不见的测试位置的概括性能。我们执行广泛的基线实验,并确定在MOT和计数中推进概括的最新技术的关键挑战和机会。
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由于其前所未有的优势,在规模,移动,部署和隐蔽观察能力方面,空中平台和成像传感器的快速出现是实现新的空中监测形式。本文从计算机视觉和模式识别的角度来看,全面概述了以人为本的空中监控任务。它旨在为读者提供使用无人机,无人机和其他空中平台的空中监测任务当前状态的深入系统审查和技术分析。感兴趣的主要对象是人类,其中要检测单个或多个受试者,识别,跟踪,重新识别并进行其行为。更具体地,对于这四项任务中的每一个,我们首先讨论与基于地面的设置相比在空中环境中执行这些任务的独特挑战。然后,我们审查和分析公共可用于每项任务的航空数据集,并深入了解航空文学中的方法,并调查他们目前如何应对鸟瞰挑战。我们在讨论缺失差距和开放研究问题的讨论中得出结论,告知未来的研究途径。
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Despite the numerous developments in object tracking, further development of current tracking algorithms is limited by small and mostly saturated datasets. As a matter of fact, data-hungry trackers based on deep-learning currently rely on object detection datasets due to the scarcity of dedicated large-scale tracking datasets. In this work, we present TrackingNet, the first large-scale dataset and benchmark for object tracking in the wild. We provide more than 30K videos with more than 14 million dense bounding box annotations. Our dataset covers a wide selection of object classes in broad and diverse context. By releasing such a large-scale dataset, we expect deep trackers to further improve and generalize. In addition, we introduce a new benchmark composed of 500 novel videos, modeled with a distribution similar to our training dataset. By sequestering the annotation of the test set and providing an online evaluation server, we provide a fair benchmark for future development of object trackers. Deep trackers fine-tuned on a fraction of our dataset improve their performance by up to 1.6% on OTB100 and up to 1.7% on TrackingNet Test. We provide an extensive benchmark on TrackingNet by evaluating more than 20 trackers. Our results suggest that object tracking in the wild is far from being solved.
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无人驾驶飞机(UAV)跟踪对于诸如交货和农业等广泛应用具有重要意义。该领域的先前基准分析主要集中在小规模的跟踪问题上,同时忽略了数据模式的类型,目标类别和方案的多样性以及所涉及的评估协议的数量,从而极大地隐藏了深度无人机跟踪的巨大功能。在这项工作中,我们提出了迄今为止最大的公共无人机跟踪基准Webuav-3M,以促进深度无人机跟踪器的开发和评估。 Webuav-3M在4,500个视频中包含超过330万帧,并提供223个高度多样化的目标类别。每个视频都通过有效且可扩展的半自动目标注释(SATA)管道密集注释。重要的是,要利用语言和音频的互补优势,我们通过提供自然语言规格和音频描述来丰富Webuav-3M。我们认为,这种增加将大大促进未来的研究,以探索语言功能和音频提示,用于多模式无人机跟踪。此外,构建了scenario约束(UTUSC)评估协议和七个具有挑战性的场景子测验集,以使社区能够开发,适应和评估各种类型的高级跟踪器。我们提供了43个代表性跟踪器的广泛评估和详细分析,并设想了深度无人机跟踪及其他领域的未来研究方向。数据集,工具包和基线结果可在\ url {https://github.com/983632847/webuav-3m}中获得。
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近年来,人员检测和人类姿势估计已经取得了很大的进步,通过大规模标记的数据集帮助。但是,这些数据集没有保证或分析人类活动,姿势或情境多样性。此外,隐私,法律,安全和道德问题可能会限制收集更多人类数据的能力。一个新兴的替代方案,用于减轻这些问题的一些问题是合成数据。然而,综合数据生成器的创建令人难以置信的具有挑战性,并防止研究人员探索他们的实用性。因此,我们释放了一个以人为本的合成数据发生器PeoplesAnspeople,它包含模拟就绪3D人类资产,参数化照明和相机系统,并生成2D和3D边界框,实例和语义分段,以及Coco姿态标签。使用PeoplesAnspeople,我们使用Detectron2 KeyPoint R-CNN变体进行基准合成数据训练[1]。我们发现,使用合成数据进行预培训网络和对目标现实世界数据的微调(几次传输到Coco-Person Rain的有限子集[2])导致了60.37 $ 60.37 $的关键点AP( Coco Test-Dev2017)使用相同的实际数据培训的型号优于同一实际数据(35.80美元的Keypoint AP),并使用Imagenet预先培训(Keypoint AP为57.50美元)。这种自由可用的数据发生器应使其在人用于人工以人为主的计算机视野中的临界领域进行实际转移学习的新兴仿真领域。
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多摄像机跟踪系统在需要高质量跟踪结果的应用中获得普及,例如摩擦结账,因为单眼多物体跟踪(MOT)系统由于闭塞而在杂乱和拥挤的环境中经常失败。通过恢复部分3D信息,多个高度重叠的相机可以显着减轻问题。但是,使用不同的相机设置和背景创建高质量多摄像头跟踪数据集的成本在该域中的数据集比例限制了数据集尺度。在本文中,我们在自动注释系统的帮助下提供了五种不同环境的大型密集标记的多摄像头跟踪数据集。该系统使用重叠和校准的深度和RGB相机来构建高性能3D跟踪器,可自动生成3D跟踪结果。使用摄像机参数将3D跟踪结果投影到每个RGB摄像头视图以创建2D跟踪结果。然后,我们手动检查并更正3D跟踪结果以确保标签质量,比完全手动注释便宜得多。我们使用两个实时多相机跟踪器和具有不同设置的人重新识别(REID)模型进行了广泛的实验。该数据集在杂乱和拥挤的环境中提供了更可靠的多摄像头,多目标跟踪系统的基准。此外,我们的结果表明,在此数据集中调整跟踪器和REID模型显着提高了它们的性能。我们的数据集将在接受这项工作后公开发布。
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卫星摄像机可以为大型区域提供连续观察,这对于许多遥感应用很重要。然而,由于对象的外观信息不足和缺乏高质量数据集,在卫星视频中实现移动对象检测和跟踪仍然具有挑战性。在本文中,我们首先构建一个具有丰富注释的大型卫星视频数据集,用于移动对象检测和跟踪的任务。该数据集由Jilin-1卫星星座收集,并由47个高质量视频组成,对象检测有1,646,038兴趣的情况和用于对象跟踪的3,711个轨迹。然后,我们引入运动建模基线,以提高检测速率并基于累积多帧差异和鲁棒矩阵完成来减少误报。最后,我们建立了第一个用于在卫星视频中移动对象检测和跟踪的公共基准,并广泛地评估在我们数据集上几种代表方法的性能。还提供了综合实验分析和富有魅力的结论。数据集可在https://github.com/qingyonghu/viso提供。
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The 1$^{\text{st}}$ Workshop on Maritime Computer Vision (MaCVi) 2023 focused on maritime computer vision for Unmanned Aerial Vehicles (UAV) and Unmanned Surface Vehicle (USV), and organized several subchallenges in this domain: (i) UAV-based Maritime Object Detection, (ii) UAV-based Maritime Object Tracking, (iii) USV-based Maritime Obstacle Segmentation and (iv) USV-based Maritime Obstacle Detection. The subchallenges were based on the SeaDronesSee and MODS benchmarks. This report summarizes the main findings of the individual subchallenges and introduces a new benchmark, called SeaDronesSee Object Detection v2, which extends the previous benchmark by including more classes and footage. We provide statistical and qualitative analyses, and assess trends in the best-performing methodologies of over 130 submissions. The methods are summarized in the appendix. The datasets, evaluation code and the leaderboard are publicly available at https://seadronessee.cs.uni-tuebingen.de/macvi.
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The problem of tracking multiple objects in a video sequence poses several challenging tasks. For tracking-bydetection, these include object re-identification, motion prediction and dealing with occlusions. We present a tracker (without bells and whistles) that accomplishes tracking without specifically targeting any of these tasks, in particular, we perform no training or optimization on tracking data. To this end, we exploit the bounding box regression of an object detector to predict the position of an object in the next frame, thereby converting a detector into a Tracktor. We demonstrate the potential of Tracktor and provide a new state-of-the-art on three multi-object tracking benchmarks by extending it with a straightforward re-identification and camera motion compensation.We then perform an analysis on the performance and failure cases of several state-of-the-art tracking methods in comparison to our Tracktor. Surprisingly, none of the dedicated tracking methods are considerably better in dealing with complex tracking scenarios, namely, small and occluded objects or missing detections. However, our approach tackles most of the easy tracking scenarios. Therefore, we motivate our approach as a new tracking paradigm and point out promising future research directions. Overall, Tracktor yields superior tracking performance than any current tracking method and our analysis exposes remaining and unsolved tracking challenges to inspire future research directions.
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In this paper, we present the Multi-view Extended Videos with Identities (MEVID) dataset for large-scale, video person re-identification (ReID) in the wild. To our knowledge, MEVID represents the most-varied video person ReID dataset, spanning an extensive indoor and outdoor environment across nine unique dates in a 73-day window, various camera viewpoints, and entity clothing changes. Specifically, we label the identities of 158 unique people wearing 598 outfits taken from 8, 092 tracklets, average length of about 590 frames, seen in 33 camera views from the very large-scale MEVA person activities dataset. While other datasets have more unique identities, MEVID emphasizes a richer set of information about each individual, such as: 4 outfits/identity vs. 2 outfits/identity in CCVID, 33 viewpoints across 17 locations vs. 6 in 5 simulated locations for MTA, and 10 million frames vs. 3 million for LS-VID. Being based on the MEVA video dataset, we also inherit data that is intentionally demographically balanced to the continental United States. To accelerate the annotation process, we developed a semi-automatic annotation framework and GUI that combines state-of-the-art real-time models for object detection, pose estimation, person ReID, and multi-object tracking. We evaluate several state-of-the-art methods on MEVID challenge problems and comprehensively quantify their robustness in terms of changes of outfit, scale, and background location. Our quantitative analysis on the realistic, unique aspects of MEVID shows that there are significant remaining challenges in video person ReID and indicates important directions for future research.
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多个现有基准测试涉及视频中的跟踪和分割对象,例如,视频对象细分(VOS)和多对象跟踪和分割(MOTS)(MOTS),但是由于使用不同的基准标准数据集和指标,它们之间几乎没有相互作用(例如J&F,J&F,J&F,J&F,地图,smotsa)。结果,已发表的作品通常针对特定的基准,并且不容易相互媲美。我们认为,可以解决多个任务的广义方法的发展需要在这些研究子社区中更大的凝聚力。在本文中,我们旨在通过提出爆发来促进这一点,该数据集包含数千个带有高质量对象掩码的视频,以及一个相关的基准标准,其中包含六个任务,涉及视频中的对象跟踪和细分。使用相同的数据和可比较的指标对所有任务进行评估,这使研究人员能够一致考虑它们,因此更有效地从不同任务的不同方法中汇集了知识。此外,我们为所有任务展示了几个基线,并证明可以将一个任务的方法应用于另一个任务,并具有可量化且可解释的性能差异。数据集注释和评估代码可在以下网址获得:https://github.com/ali2500/burst-benchmark。
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TU Dresden www.cityscapes-dataset.net train/val -fine annotation -3475 images train -coarse annotation -20 000 images test -fine annotation -1525 images
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虽然深度学习方法近年来取得了高级视频对象识别性能,但在视频中感知封闭对象仍然是一个非常具有挑战性的任务。为促进遮挡理解的发展,我们在遮挡方案中收集一个名为OVIS的大规模数据集,用于遮挡方案中的视频实例分段。 ovis由296K高质量的屏幕和901个遮挡场景组成。虽然我们的人类视觉系统可以通过语境推理和关联来感知那些遮挡物体,但我们的实验表明当前的视频了解系统不能。在ovis数据集上,所有基线方法都遇到了大约80%的大约80%的大约80%,这表明仍然有很长的路要走在复杂的真实情景中理解模糊物体和视频。为了促进对视频理解系统的新范式研究,我们基于OVI数据集启动了挑战。提交的顶级执行算法已经比我们的基线实现了更高的性能。在本文中,我们将介绍OVIS数据集,并通过分析基线的结果和提交的方法来进一步剖析。可以在http://songbai.site/ovis找到ovis数据集和挑战信息。
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