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Paper Citation Record · LEDGER

Coarse-to-Fine Hierarchical Alignment for UAV-based Human Detection using Diffusion Models

As of 6 August 2026, this Paper Citation Record lists 43 of 43 outbound references and 0 inbound Pith citation observations for arXiv:2512.13869.

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pith.paper-citation-record.v1
2512.13869 v3

Coverage vector

measured 43 of 43 reference resolution

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measured 43 of 43 standing notices

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43 of 43 outbound references displayed

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Outbound references

Observation d7dde8ff-37cc-428e-85b9-2a3f8333eda5 · outbound

This paper cites Belongie, James Hays, Pietro Perona, Deva Ramanan, Piotr Dollár, and C.

Coarse-to-Fine Hierarchical Alignment for UAV-based Human Detection using Diffusion Models Belongie, James Hays, Pietro Perona, Deva Ramanan, Piotr Dollár, and C

Reference 1

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Observation ca077e2b-bd40-4249-991f-e96bd041afd0 · outbound

This paper cites The open images dataset v4: Unified image classification, object detection, and visual relationship detection at scale.International journal of computer vision, 2020.

Coarse-to-Fine Hierarchical Alignment for UAV-based Human Detection using Diffusion Models The open images dataset v4: Unified image classification, object detection, and visual relationship detection at scale.International journal of computer vision, 2020

Reference 2

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Observation 40eb9fd9-5e27-4b1d-8ea4-235ef171f3e8 · outbound

This paper cites Training deep networks with synthetic data: Bridging the reality gap by domain randomization.

Coarse-to-Fine Hierarchical Alignment for UAV-based Human Detection using Diffusion Models Training deep networks with synthetic data: Bridging the reality gap by domain randomization

Reference 3

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Observation 6a89a36c-309c-44da-9a4c-03ba390bb94a · outbound

This paper cites Dreamsim: Learningnewdimensionsofhuman visual similarityusingsynthetic data.

Coarse-to-Fine Hierarchical Alignment for UAV-based Human Detection using Diffusion Models Dreamsim: Learningnewdimensionsofhuman visual similarityusingsynthetic data

Reference 4

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Observation 7344d17a-e923-4ab4-bdf9-a6865db0a7a6 · outbound

This paper cites Syn2Real: A New Benchmark forSynthetic-to-Real Visual Domain Adaptation.

Coarse-to-Fine Hierarchical Alignment for UAV-based Human Detection using Diffusion Models Syn2Real: A New Benchmark forSynthetic-to-Real Visual Domain Adaptation

Reference 5

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Observation cbe162ae-7bc2-4826-b46f-80c182ea1ee0 · outbound

This paper cites High- resolution image synthesis with latent diffusion models.

Coarse-to-Fine Hierarchical Alignment for UAV-based Human Detection using Diffusion Models High- resolution image synthesis with latent diffusion models

Reference 6

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Observation 0da282f8-2e7e-4d0b-ab00-a6f76165968b · outbound

This paper cites SDXL: improving latent diffusion models for high-resolution image synthesis.

Coarse-to-Fine Hierarchical Alignment for UAV-based Human Detection using Diffusion Models SDXL: improving latent diffusion models for high-resolution image synthesis

Reference 7

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Observation 0bac28f0-faf7-45c2-8dba-4e17fb7524d8 · outbound

This paper cites Convolution meets transformer: Efficient hybrid transformer for semantic segmentation with very high resolution imagery.

Coarse-to-Fine Hierarchical Alignment for UAV-based Human Detection using Diffusion Models Convolution meets transformer: Efficient hybrid transformer for semantic segmentation with very high resolution imagery

Reference 8

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Observation b38627d2-6ef9-438c-bf7c-af4faadc30d9 · outbound

This paper cites Uav- yolo: Small object detection on unmanned aerial vehicle perspective.Sensors, 2020.

Coarse-to-Fine Hierarchical Alignment for UAV-based Human Detection using Diffusion Models Uav- yolo: Small object detection on unmanned aerial vehicle perspective.Sensors, 2020

Reference 9

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Observation 3c55d415-9f15-4b3d-a22e-bd8c8505954b · outbound

This paper cites Progressive transformation learning for leveraging virtual images in training.

Coarse-to-Fine Hierarchical Alignment for UAV-based Human Detection using Diffusion Models Progressive transformation learning for leveraging virtual images in training

Reference 10

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Observation b8094a6d-1ba2-4033-a75f-fabb61b5deb8 · outbound

This paper cites Sim2real in reconstructive spectroscopy: Deep learning with augmented device-informed data simulation.APL Machine Learning, 2024.

Coarse-to-Fine Hierarchical Alignment for UAV-based Human Detection using Diffusion Models Sim2real in reconstructive spectroscopy: Deep learning with augmented device-informed data simulation.APL Machine Learning, 2024

Reference 11

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Observation e6462113-58d5-4e85-aa55-4bc7fdd44cba · outbound

This paper cites A closer look at model collapse: From a generalization-to-memorization perspective.Advances in Neural Information Processing Systems, 2025.

Coarse-to-Fine Hierarchical Alignment for UAV-based Human Detection using Diffusion Models A closer look at model collapse: From a generalization-to-memorization perspective.Advances in Neural Information Processing Systems, 2025

Reference 12

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Observation 1a2b2e7f-5ff8-4397-b035-b2f152bc9f38 · outbound

This paper cites Sim2air - synthetic aerial dataset for UAV monitoring.IEEE Robotics and Automation Letter, 2022.

Coarse-to-Fine Hierarchical Alignment for UAV-based Human Detection using Diffusion Models Sim2air - synthetic aerial dataset for UAV monitoring.IEEE Robotics and Automation Letter, 2022

Reference 13

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Observation fb3d87d4-0a50-4aa1-9330-03a4cc9d88ef · outbound

This paper cites Bi-directional domain adaptation for sim2real transfer of embodied navigation agents.IEEE Robotics Automation Letter, 2021.

Coarse-to-Fine Hierarchical Alignment for UAV-based Human Detection using Diffusion Models Bi-directional domain adaptation for sim2real transfer of embodied navigation agents.IEEE Robotics Automation Letter, 2021

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Coarse-to-Fine Hierarchical Alignment for UAV-based Human Detection using Diffusion Models Unresolved cited work

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Observation 63e3a316-c22d-4c32-b980-3ce68c990b0a · outbound

This paper cites The emergence of reproducibility and consistency in diffusion models.

Coarse-to-Fine Hierarchical Alignment for UAV-based Human Detection using Diffusion Models The emergence of reproducibility and consistency in diffusion models

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Observation 892bb782-2289-404a-b9a8-a00bf1a8d745 · outbound

This paper cites Denoising Diffusion Implicit Models.

Coarse-to-Fine Hierarchical Alignment for UAV-based Human Detection using Diffusion Models Denoising Diffusion Implicit Models

Reference 18

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This paper cites Vip: Versatile image outpainting empowered by multimodal large language model.

Coarse-to-Fine Hierarchical Alignment for UAV-based Human Detection using Diffusion Models Vip: Versatile image outpainting empowered by multimodal large language model

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Coarse-to-Fine Hierarchical Alignment for UAV-based Human Detection using Diffusion Models Repaint: Inpainting using denoising diffusion probabilistic models

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Coarse-to-Fine Hierarchical Alignment for UAV-based Human Detection using Diffusion Models Sdedit: Guided image synthesis and editing with stochastic differential equations

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This paper cites Exploring low- dimensional subspace in diffusion models for controllable image editing.Advances in neural information processing systems, 2024.

Coarse-to-Fine Hierarchical Alignment for UAV-based Human Detection using Diffusion Models Exploring low- dimensional subspace in diffusion models for controllable image editing.Advances in neural information processing systems, 2024

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This paper cites Lee, Jonathan Ho, Tim Salimans, David J.

Coarse-to-Fine Hierarchical Alignment for UAV-based Human Detection using Diffusion Models Lee, Jonathan Ho, Tim Salimans, David J

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Observation 21e6e07b-f506-492e-b858-9eb2c21c09ca · outbound

This paper cites ILVR: conditioning method for denoising diffusion probabilistic models.

Coarse-to-Fine Hierarchical Alignment for UAV-based Human Detection using Diffusion Models ILVR: conditioning method for denoising diffusion probabilistic models

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Observation eda410f3-db4d-4662-932f-57a930b0d9e7 · outbound

This paper cites Blended diffusion for text-driven editing of natural images.

Coarse-to-Fine Hierarchical Alignment for UAV-based Human Detection using Diffusion Models Blended diffusion for text-driven editing of natural images

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Coarse-to-Fine Hierarchical Alignment for UAV-based Human Detection using Diffusion Models LoRA: Low-rank adaptation of large language models

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This paper cites Compressible dynamics in deep overpa- rameterized low-rank learning & adaptation.

Coarse-to-Fine Hierarchical Alignment for UAV-based Human Detection using Diffusion Models Compressible dynamics in deep overpa- rameterized low-rank learning & adaptation

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Observation 25b60ff3-f669-42a1-ad42-f93187c806f0 · outbound

This paper cites Domain adaptive faster R-CNN for object detection in the wild.

Coarse-to-Fine Hierarchical Alignment for UAV-based Human Detection using Diffusion Models Domain adaptive faster R-CNN for object detection in the wild

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This paper cites Simultaneous deep transfer across domains and tasks.

Coarse-to-Fine Hierarchical Alignment for UAV-based Human Detection using Diffusion Models Simultaneous deep transfer across domains and tasks

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This paper cites ifan: Image-instancefull alignment networks for adaptive object detection.

Coarse-to-Fine Hierarchical Alignment for UAV-based Human Detection using Diffusion Models ifan: Image-instancefull alignment networks for adaptive object detection

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This paper cites Generative modeling by estimating gradients of the data distribution.

Coarse-to-Fine Hierarchical Alignment for UAV-based Human Detection using Diffusion Models Generative modeling by estimating gradients of the data distribution

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Observation 3dd54bca-3611-4cae-be3f-04d9c98fc3b6 · outbound

This paper cites Denoising diffusion probabilistic models.

Coarse-to-Fine Hierarchical Alignment for UAV-based Human Detection using Diffusion Models Denoising diffusion probabilistic models

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Observation 6beb66bc-2b70-4ead-82f7-3d4bfc25317a · outbound

This paper cites Ganstrainedbyatwotime-scaleupdateruleconvergetoalocalnashequilibrium.

Coarse-to-Fine Hierarchical Alignment for UAV-based Human Detection using Diffusion Models Ganstrainedbyatwotime-scaleupdateruleconvergetoalocalnashequilibrium

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Observation e56e1e77-3588-4a41-aa40-aa42f58894a2 · outbound

This paper cites Wilson, Meriem Ghrib, and Thomas Oberlin.

Coarse-to-Fine Hierarchical Alignment for UAV-based Human Detection using Diffusion Models Wilson, Meriem Ghrib, and Thomas Oberlin

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Observation f5958595-ce56-410a-942d-94aa55d8af5b · outbound

This paper cites One-step effective diffusion network for real-world image super-resolution.

Coarse-to-Fine Hierarchical Alignment for UAV-based Human Detection using Diffusion Models One-step effective diffusion network for real-world image super-resolution

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Observation 5d6ccbc5-225b-4acb-bbcc-d69e0354487f · outbound

This paper cites Learning transferable visual models from natural language supervision.

Coarse-to-Fine Hierarchical Alignment for UAV-based Human Detection using Diffusion Models Learning transferable visual models from natural language supervision

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This paper cites Synplay: Importing real-world diversity for a synthetic human dataset.arXiv preprint arXiv:2408.11814, 2024.

Coarse-to-Fine Hierarchical Alignment for UAV-based Human Detection using Diffusion Models Synplay: Importing real-world diversity for a synthetic human dataset.arXiv preprint arXiv:2408.11814, 2024

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Observation e411e5d9-39db-40f7-a1b1-b277aa01bb68 · outbound

This paper cites Okutama-action: An aerial view video dataset for concurrent human action detection.

Coarse-to-Fine Hierarchical Alignment for UAV-based Human Detection using Diffusion Models Okutama-action: An aerial view video dataset for concurrent human action detection

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source=pdf_text observed=2026-08-03T16:22:25.262078Z digest=sha256:f2d8361965a86112332e5d492f7fd1bc4cbfa949caa4c4df875f7d371ad6ae9c

Observation f80e9b02-f558-4d73-af5e-94d89c69bed4 · outbound

This paper cites Semantic Drone Dataset – ICG, TU Graz.http://dronedataset.icg.tugraz.at, 2019.

Coarse-to-Fine Hierarchical Alignment for UAV-based Human Detection using Diffusion Models Semantic Drone Dataset – ICG, TU Graz.http://dronedataset.icg.tugraz.at, 2019

Reference 39

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source=pdf_text observed=2026-08-03T16:22:25.375795Z digest=sha256:d854e99e0b9894ec6fc21815bdc1572dfbdd82a1c576f1271e5d22ff0a75157f

Observation 7a3d842a-679b-4fc6-8772-9176a28b1a45 · outbound

This paper cites Vision Meets Drones: A Challenge.

Coarse-to-Fine Hierarchical Alignment for UAV-based Human Detection using Diffusion Models Vision Meets Drones: A Challenge

Reference 40

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source=pdf_text observed=2026-08-03T16:22:25.500200Z digest=sha256:c0749bd95522197f02e8ade3f1be6877aaf4f95874624edcbe09c6617fd26494

Observation 27eae15b-675c-4f54-951e-b30ca14ea0bd · outbound

This paper cites Manipal-uav person detection dataset: A step towards benchmarking dataset and algorithms for small object detection.ISPRS Journal of Photogrammetry and Remote Sensing, 2023.

Coarse-to-Fine Hierarchical Alignment for UAV-based Human Detection using Diffusion Models Manipal-uav person detection dataset: A step towards benchmarking dataset and algorithms for small object detection.ISPRS Journal of Photogrammetry and Remote Sensing, 2023

Reference 41

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Observation 19565b4e-444d-4d11-9bf7-8416a0cac3a1 · outbound

This paper cites an unresolved cited work.

Coarse-to-Fine Hierarchical Alignment for UAV-based Human Detection using Diffusion Models Unresolved cited work

Reference 42

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source=pdf_text observed=2026-08-03T16:22:25.709319Z digest=sha256:5d15036dc637018d811f25d5cca103fc958c11878fc58976d24d209620116071

Observation 776737d7-83b7-46ea-a4b5-26b8ea626ba2 · outbound

This paper cites Data filtering networks, 2023.

Coarse-to-Fine Hierarchical Alignment for UAV-based Human Detection using Diffusion Models Data filtering networks, 2023

Reference 43

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Observation 93702ea9-0fdd-4788-954b-708baf7d9440 · outbound

This paper cites Openclip, 2021.

Coarse-to-Fine Hierarchical Alignment for UAV-based Human Detection using Diffusion Models Openclip, 2021

Reference 44

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source=pdf_text observed=2026-08-03T16:22:25.974575Z digest=sha256:4855f0ad372e2ed91faea1381dbfa577ac458b86e2769cf6d792ac3c2f911b98

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