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Paper Citation Record · LEDGER

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog

As of 18 August 2026, this Paper Citation Record lists 58 of 58 outbound references and 0 inbound Pith citation observations for arXiv:2607.05467.

A citation records a reference. It does not transfer a finding from one paper to another.

pith.paper-citation-record.v1
2607.05467 v1

Coverage vector

measured 58 of 58 reference resolution

Typed states for the displayed outbound observations.

Source: paper_references, paper_reference_links, observed 2026-07-11T14:27:37.519188Z

measured 58 of 58 standing notices

One-hop event checks from named stored sources.

Source: scholarly_work_events, retraction_status_cache, observed 2026-08-17T06:30:58.91139+00:00

measured 0 of 0 inbound itemization

Pith citing papers itemized under the disclosed page cap.

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measured 0 of 1 external citation measurements

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Reference resolution

58 of 58 outbound references displayed

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Outbound references

Observation 1e98fe76-6b4e-4e61-adc0-c672fe15845e · outbound

This paper cites Optics of the atmosphere: scattering by molecules and particles.New york, 1976.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Optics of the atmosphere: scattering by molecules and particles.New york, 1976

Reference 1

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source=pdf_text observed=2026-07-11T14:27:37.519188Z digest=sha256:55f2dce6cc844ce93f4c6e13475702ec17da5bbb64dd783636dd468ac21e73bc

Observation 2a4af60c-7191-4509-8762-5186f2ba3dac · outbound

This paper cites Vision transformers for single image dehazing.IEEE Transactions on Image Processing, 32:1927–1941, 2023.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Vision transformers for single image dehazing.IEEE Transactions on Image Processing, 32:1927–1941, 2023

Reference 2

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Observation 31069ca6-1fe3-4651-91dc-291eab86a73b · outbound

This paper cites Benchmarking single-image dehazing and beyond.IEEE transactions on image processing, 28(1):492–505, 2018.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Benchmarking single-image dehazing and beyond.IEEE transactions on image processing, 28(1):492–505, 2018

Reference 3

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Observation 97ad7c7e-1e56-4ca7-a1f8-d772b4ec3112 · outbound

This paper cites Anti-UAV: A Large Multi-Modal Benchmark for UAV Tracking.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Anti-UAV: A Large Multi-Modal Benchmark for UAV Tracking

Reference 4

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Observation d8f3e606-67bd-4459-8628-0a6eb0b3b9ad · outbound

This paper cites Vision-based anti-uav detection and tracking.IEEE Transactions on Intelligent Transportation Systems, 23(12):25323–25334, 2022.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Vision-based anti-uav detection and tracking.IEEE Transactions on Intelligent Transportation Systems, 23(12):25323–25334, 2022

Reference 5

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Observation 6bd36de5-674f-4c76-a6bd-a369c4a18953 · outbound

This paper cites Mmaud: A comprehensive multi-modal anti-uav dataset for modern miniature drone threats.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Mmaud: A comprehensive multi-modal anti-uav dataset for modern miniature drone threats

Reference 6

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Observation 8757721c-763a-4c42-a3ab-6c3dacf3a2fa · outbound

This paper cites Vision and the atmosphere.International journal of computer vision, 48(3):233–254, 2002.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Vision and the atmosphere.International journal of computer vision, 48(3):233–254, 2002

Reference 7

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Observation 2c71c7a9-f2d1-4c5d-86cf-d11c5231a324 · outbound

This paper cites Semantic foggy scene understanding with synthetic data.International Journal of Computer Vision, 126(9):973–992, 2018.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Semantic foggy scene understanding with synthetic data.International Journal of Computer Vision, 126(9):973–992, 2018

Reference 8

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Observation c8729a71-b334-4a60-ac24-5a19a595cd2d · outbound

This paper cites Model adaptation with synthetic and real data for semantic dense foggy scene understanding.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Model adaptation with synthetic and real data for semantic dense foggy scene understanding

Reference 9

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Observation 2f2fcb1b-9818-42a2-b3f2-1e25f9d5374a · outbound

This paper cites Foggy lane dataset synthesized from monocular images for lane detection algorithms.Sensors, 22(14): 5210, 2022.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Foggy lane dataset synthesized from monocular images for lane detection algorithms.Sensors, 22(14): 5210, 2022

Reference 10

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Observation e99dcf7f-6267-41ce-a2ad-4e6c0870f3fd · outbound

This paper cites A foggy weather simulation algorithm for traffic image synthesis based on monocular depth estimation.Sensors, 24(6):1966, 2024.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog A foggy weather simulation algorithm for traffic image synthesis based on monocular depth estimation.Sensors, 24(6):1966, 2024

Reference 11

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Observation ff5932b9-8b6d-4488-93a6-a458177d1ee9 · outbound

This paper cites Synfog: A photo- realistic synthetic fog dataset based on end-to-end imaging simulation for advancing real- world defogging in autonomous driving.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Synfog: A photo- realistic synthetic fog dataset based on end-to-end imaging simulation for advancing real- world defogging in autonomous driving

Reference 12

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Observation 7b7cf146-7fb0-495b-a6cb-14d4867e2905 · outbound

This paper cites Fog simulation on real lidar point clouds for 3d object detection in adverse weather.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Fog simulation on real lidar point clouds for 3d object detection in adverse weather

Reference 13

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Observation 29ef9d4f-929d-45f7-b99a-de01b9c3daec · outbound

This paper cites Foggy drone teacher: Domain adaptive drone detection under foggy conditions.Drones, 9(2):146, 2025.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Foggy drone teacher: Domain adaptive drone detection under foggy conditions.Drones, 9(2):146, 2025

Reference 14

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source=pdf_text observed=2026-07-11T14:27:37.519188Z digest=sha256:0b44261341391d5d8be6daeff180313a615639cbf6bccb3c5b33a95829e82687

Observation 7f1e7bfc-31d6-4996-b1ae-b01a91d10a27 · outbound

This paper cites Fifonet: fine-grained target focusing network for object detection in uav images.Remote Sensing, 14 (16):3919, 2022.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Fifonet: fine-grained target focusing network for object detection in uav images.Remote Sensing, 14 (16):3919, 2022

Reference 15

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Observation e8dbe14f-4854-4470-998c-27b7dde38366 · outbound

This paper cites Detection, tracking, and counting meets drones in crowds: A benchmark.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Detection, tracking, and counting meets drones in crowds: A benchmark

Reference 16

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source=pdf_text observed=2026-07-11T14:27:37.519188Z digest=sha256:6fc6d17dec0dc7093c87b7df1831a330a4a890f0d7bc41ec231aa9df757932ac

Observation a3280cc0-2b78-4e62-96d2-16a2e1c38993 · outbound

This paper cites Multi-task learning for uav aerial object detection in foggy weather condition.Remote Sensing, 15(18):4617, 2023.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Multi-task learning for uav aerial object detection in foggy weather condition.Remote Sensing, 15(18):4617, 2023

Reference 17

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Observation 81d14a81-869e-4786-ab60-64e6b35c13da · outbound

This paper cites HazyDet: Open-Source Benchmark for Drone-View Object Detection with Depth-Cues in Hazy Scenes.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog HazyDet: Open-Source Benchmark for Drone-View Object Detection with Depth-Cues in Hazy Scenes

Reference 18

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Observation d1bd352c-c66c-466b-9dde-b6fd75751f0f · outbound

This paper cites Aerial autonomy under adversity: Advances in obstacle and aircraft detection techniques for unmanned aerial vehicles.Drones, 9(8):549, 2025.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Aerial autonomy under adversity: Advances in obstacle and aircraft detection techniques for unmanned aerial vehicles.Drones, 9(8):549, 2025

Reference 19

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source=pdf_text observed=2026-07-11T14:27:37.519188Z digest=sha256:6e954e0a48e37d70eb11f856e4b310f933f402a8224ea953782231df4bb5381d

Observation e2c1c2be-a4a0-4978-871b-01f07025d3b5 · outbound

This paper cites Visibility in bad weather from a single image.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Visibility in bad weather from a single image

Reference 20

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source=pdf_text observed=2026-07-11T14:27:37.519188Z digest=sha256:6c9514f191c597bf8c1a1daf77963cc26442304b8d7e46b4448ca1a79089c990

Observation e86dcfc1-ed75-40ff-ac40-0a9053ff8883 · outbound

This paper cites Single image dehazing.ACM transactions on graphics (TOG), 27(3):1–9, 2008.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Single image dehazing.ACM transactions on graphics (TOG), 27(3):1–9, 2008

Reference 21

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Observation e99f789c-57bf-4cf2-b733-34074e9510ed · outbound

This paper cites Single image haze removal using dark channel prior.IEEE transactions on pattern analysis and machine intelligence, 33(12):2341–2353, 2010.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Single image haze removal using dark channel prior.IEEE transactions on pattern analysis and machine intelligence, 33(12):2341–2353, 2010

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Observation 7eb3580a-5d82-4efb-b565-9934b1186b3b · outbound

This paper cites Efficient image dehazing with boundary constraint and contextual regularization.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Efficient image dehazing with boundary constraint and contextual regularization

Reference 23

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Observation e23c88d4-c460-4ae7-b978-95919ebdebc6 · outbound

This paper cites A fast single image haze removal algorithm using color attenuation prior.IEEE transactions on image processing, 24(11):3522–3533, 2015.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog A fast single image haze removal algorithm using color attenuation prior.IEEE transactions on image processing, 24(11):3522–3533, 2015

Reference 24

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Observation 088f741d-fbe3-4986-935f-dbd0add2147c · outbound

This paper cites Non-local image dehazing.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Non-local image dehazing

Reference 25

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Observation a3738364-c3ab-43a1-882f-c1d234fe6b44 · outbound

This paper cites Single image dehazing using haze-lines.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Single image dehazing using haze-lines

Reference 26

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Observation 4e7ed93b-e550-452e-93e5-2ef39abb66fd · outbound

This paper cites Dehazenet: An end-to-end system for single image haze removal.IEEE transactions on image processing, 25(11):5187–5198, 2016.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Dehazenet: An end-to-end system for single image haze removal.IEEE transactions on image processing, 25(11):5187–5198, 2016

Reference 27

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Observation dc56e275-e73d-4502-bafb-0cde99702fc0 · outbound

This paper cites Single image dehazing via multi-scale convolutional neural networks.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Single image dehazing via multi-scale convolutional neural networks

Reference 28

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Observation a8567ac7-eaa7-4733-9025-679048cfe74a · outbound

This paper cites Aod-net: All-in-one dehazing network.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Aod-net: All-in-one dehazing network

Reference 29

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Observation 2c3b9001-66e4-4d03-8c51-6e39df71ac73 · outbound

This paper cites Griddehazenet: Attention-based multi-scale network for image dehazing.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Griddehazenet: Attention-based multi-scale network for image dehazing

Reference 30

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Observation 28b3cedb-40a2-46b7-b8c2-db596feae6d5 · outbound

This paper cites Multi-scale boosted dehazing network with dense feature fusion.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Multi-scale boosted dehazing network with dense feature fusion

Reference 31

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Observation adf6babb-d13c-4910-a7a7-06d054e0baf7 · outbound

This paper cites Ffa-net: Feature fusion attention network for single image dehazing.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Ffa-net: Feature fusion attention network for single image dehazing

Reference 32

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Observation 4b495b22-d876-461a-9a8d-318aebcf1e55 · outbound

This paper cites Contrastive learning for compact single image dehazing.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Contrastive learning for compact single image dehazing

Reference 33

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Observation 255a01d0-b65b-4fb7-b992-08c0e263fc24 · outbound

This paper cites Curricular contrastive regularization for physics-aware single image dehazing.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Curricular contrastive regularization for physics-aware single image dehazing

Reference 34

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Observation e72ff8f2-0afb-430f-8d44-108703ef713b · outbound

This paper cites Ridcp: Revitalizing real image dehazing via high-quality codebook priors.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Ridcp: Revitalizing real image dehazing via high-quality codebook priors

Reference 35

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Observation f3d05a73-6697-4a1d-8696-fecb2a3463a4 · outbound

This paper cites Dea-net: Single image dehazing based on detail-enhanced convolution and content-guided attention.IEEE transactions on image processing, 33:1002–1015, 2024.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Dea-net: Single image dehazing based on detail-enhanced convolution and content-guided attention.IEEE transactions on image processing, 33:1002–1015, 2024

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Observation b4c6c93a-a0d0-4fe8-899b-a0b31080c196 · outbound

This paper cites Image dehazing transformer with transmission-aware 3d position embedding.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Image dehazing transformer with transmission-aware 3d position embedding

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Observation 6befa903-d8ed-4a0a-ae99-d9cc92b22dce · outbound

This paper cites Interaction-guided two-branch image dehazing network.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Interaction-guided two-branch image dehazing network

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Observation c90a55cb-7eb2-4868-a4c6-e258e2d799f3 · outbound

This paper cites High-quality Image Dehazing with Diffusion Model.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog High-quality Image Dehazing with Diffusion Model

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Observation 860cca6a-a6cc-4505-a574-2ea7b51fdf9d · outbound

This paper cites Unleashing the potential of the semantic latent space in diffusion models for image dehazing.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Unleashing the potential of the semantic latent space in diffusion models for image dehazing

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Observation 10d524ea-1e73-40d2-a45b-abccfa81d0c5 · outbound

This paper cites Efficient image dehazing via temporal-aware diffusion.Expert Systems with Applications, 291:128565, 2025.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Efficient image dehazing via temporal-aware diffusion.Expert Systems with Applications, 291:128565, 2025

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Observation ba2b7524-196c-4e4b-993b-43ad0d240144 · outbound

This paper cites Latent space diffusion model for image dehazing.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Latent space diffusion model for image dehazing

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Observation e1ed64f4-8846-48db-8b01-e2f71e59b43f · outbound

This paper cites Robust object detection in challenging weather conditions.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Robust object detection in challenging weather conditions

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source=pdf_text observed=2026-07-11T14:27:37.519188Z digest=sha256:a8bd3a201dd68acca802e7f80e620266f3a694e3a11503767229e713f93bb703

Observation ecf9d7c9-1438-4056-846c-446528d7782b · outbound

This paper cites Auxiliary domain- guided adaptive detection in adverse weather conditions.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Auxiliary domain- guided adaptive detection in adverse weather conditions

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Observation 2a1933ec-dcaf-41a1-8e05-58a1bbb7d1b2 · outbound

This paper cites Erup-yolo: Enhancing object detection robustness for adverse weather condition by unified image-adaptive processing.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Erup-yolo: Enhancing object detection robustness for adverse weather condition by unified image-adaptive processing

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Observation 61c3f2ee-17ae-416a-8119-9419614e7f69 · outbound

This paper cites Evaluation of spatio-temporal small object detection in real-world adverse weather conditions.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Evaluation of spatio-temporal small object detection in real-world adverse weather conditions

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Observation 19509abf-347a-46eb-b253-b68e5814785f · outbound

This paper cites A two-stage method for aerial tracking in adverse weather conditions.Mathematics, 12(8):1216, 2024.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog A two-stage method for aerial tracking in adverse weather conditions.Mathematics, 12(8):1216, 2024

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Observation 9921f9f7-d9d5-4cf1-b328-2bec554c0b9e · outbound

This paper cites Improved deepsort-based object tracking in foggy weather for avs using sematic labels and fused appearance feature network.Sensors, 24(14): 4692, 2024.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Improved deepsort-based object tracking in foggy weather for avs using sematic labels and fused appearance feature network.Sensors, 24(14): 4692, 2024

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Observation cc57d3fd-380f-48ac-9c86-13e52ca9da40 · outbound

This paper cites Seeing through fog without seeing fog: Deep multimodal sensor fusion in unseen adverse weather.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Seeing through fog without seeing fog: Deep multimodal sensor fusion in unseen adverse weather

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Observation 4114698a-4e63-487c-927b-fdcfe9d6893c · outbound

This paper cites Vision transformers for dense prediction.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Vision transformers for dense prediction

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Observation b6d743d9-ca95-4305-92d8-1ec082e93d78 · outbound

This paper cites Image quality assessment: from error visibility to structural similarity.IEEE transactions on image processing, 13(4):600–612, 2004.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Image quality assessment: from error visibility to structural similarity.IEEE transactions on image processing, 13(4):600–612, 2004

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Observation cf173fc1-9e6f-46c7-9e2e-2e9fa8da2b2e · outbound

This paper cites Ultralytics yolo11.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Ultralytics yolo11

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Observation 709f6010-1d3f-4c42-98ca-c9a6e3173857 · outbound

This paper cites Infrared and visible camera integration for detection and tracking of small uavs: Systematic evaluation.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Infrared and visible camera integration for detection and tracking of small uavs: Systematic evaluation

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Observation 14a06fe3-277c-4c1b-9995-490f8a390d60 · outbound

This paper cites Bytetrack: Multi-object tracking by associating every detection box.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Bytetrack: Multi-object tracking by associating every detection box

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Observation ab4311d3-dc4e-4a21-abe3-d1dc2de90392 · outbound

This paper cites BoT-SORT: Robust Associations Multi-Pedestrian Tracking.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog BoT-SORT: Robust Associations Multi-Pedestrian Tracking

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Observation 27ac569a-0501-4204-a076-dab8919a2f5f · outbound

This paper cites The pascal visual object classes (voc) challenge.International journal of computer vision, 88(2):303–338, 2010.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog The pascal visual object classes (voc) challenge.International journal of computer vision, 88(2):303–338, 2010

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Observation 36572045-9157-4599-ae47-f9aee02d9d88 · outbound

This paper cites Evaluating multiple object tracking performance: the clear mot metrics.EURASIP Journal on Image and Video Processing, 2008(1):246309, 2008.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Evaluating multiple object tracking performance: the clear mot metrics.EURASIP Journal on Image and Video Processing, 2008(1):246309, 2008

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Observation 75b70cba-8fd0-41f3-8a58-38db460002ed · outbound

This paper cites Performance measures and a data set for multi-target, multi-camera tracking.

A Task-Driven Evaluation of UAV Detection and Tracking under Synthetic Fog Performance measures and a data set for multi-target, multi-camera tracking

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