arXivDaily arXiv每日学术速递 周一至周五更新

AI 大模型

AI Agent

智能体、工具调用、规划、工作流、多智能体和自主任务执行。

2026-01-15 至 2026-01-15 共收录 7 信号源:cs.AI, cs.CL, cs.LG, cs.SE

1. 工作流自动化 7 篇

2511.03697 2026-01-15 cs.LG cs.AI cs.AR 91%

AnaFlow: Agentic LLM-based Workflow for Reasoning-Driven Explainable and Sample-Efficient Analog Circuit Sizing

AnaFlow: 基于代理的LLM工作流:以推理驱动的可解释且样本高效的模拟电路尺寸设计

Mohsen Ahmadzadeh, Kaichang Chen, Georges Gielen

专题命中 工作流自动化 :workflow(title,abstract);agentic(title,abstract);agent(abstract);AI agent(abstract)

AI总结 AnaFlow通过基于代理的LLM工作流实现高效、可解释的模拟电路尺寸设计,利用人类可理解的推理和自适应仿真策略,提升设计效率和透明度。

Comments This article was accepted by 2025 International Conference on Computer-Aided Design (ICCAD 2025) and was presented in Munich, October 2025

Journal ref Proc. 2025 IEEE/ACM International Conference on Computer-Aided Design (ICCAD) 2025

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2508.14957 2026-01-15 cs.LG physics.ao-ph 57%

CuMoLoS-MAE: A Masked Autoencoder for Remote Sensing Data Reconstruction

CuMoLoS-MAE:一种用于遥感数据重建的屏蔽自动编码器

Anurup Naskar, Nathanael Zhixin Wong, Sara Shamekh

机构 * Courant Institute of Mathematical Sciences, New York University(纽约大学Courant数学科学研究所)

专题命中 工作流自动化 :workflow(abstract);分类 cs.LG

AI总结 CuMoLoS-MAE通过课程引导的蒙特卡洛随机集合屏蔽自动编码器,实现遥感数据的细尺度特征恢复和像素级不确定性量化,提升对流诊断与气候再分析精度。

Comments Accepted for poster presentation at the NeurIPS 2025 workshop on Tackling Climate Change with Machine Learning. 5 pages, 2 figures

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2506.06311 2026-01-15 eess.SP cs.LG 57%

Shape-Aware Topological Representation for Pipeline Hyperbola Detection in GPR Data

面向形状的拓扑表示用于GPR数据中管道双曲线检测

Meiyan Kang, Shizuo Kaji, Sang-Yun Lee, Taegon Kim, Hee-Hwan Ryu, Suyoung Choi

机构 * Department of mathematics, Ajou University, 206, World cup-ro, Yeongtong-gu, Suwon 16499, Republic of Korea Institute of Mathematics for Industry, Kyushu University, Fukuoka, 819-0395, Japan Graduate School of Science, Kyoto University, Kyoto, 606-8502, Japan Construction Environment System Research Institute, Inha University, Incheon, 22212, Republic of Korea Transmission \& Substation Laboratory, Korea Electric Power Corporation (KEPCO) Research Institute, Daejeon, 34056, Republic of Korea

专题命中 工作流自动化 :planning(abstract);分类 cs.LG

AI总结 本研究提出一种结合拓扑数据分析与YOLOv5的框架,用于提升GPR数据中管道双曲线检测的精度与鲁棒性。

Comments 15 pages, 6 figures

Journal ref IEEE Sensors Journal, 2025

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2601.09387 2026-01-15 astro-ph.GA 50%

New Estimate for the Cosmic Ray-Induced $\rm H_2$ Photodissociation Rate in the Interstellar Medium

星际介质中宇宙射线诱导H₂光解离率的新估计

O. Sipilä, P. Caselli, M. Padovani, D. Galli, T. Grassi, H. R. Hrodmarsson, S. S. Jensen, E. Roueff

专题命中 工作流自动化 :agent(abstract)

AI总结 本文推导了星际介质中宇宙射线诱导H₂光解离的新速率模型,修正了先前高估的值,对化学模拟结果有重要影响。

Comments Accepted to ACS Earth & Space Chemistry "Eric Herbst Festschrift" Special Issue

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2601.08934 2026-01-15 physics.ins-det hep-ex nucl-ex 50%

Hybrid-Contact Planar HPGe Process Vehicle Toward Ring-Contact Designs

混合接触平面高纯锗过程车向环形接触设计

Kunming Dong, Dongming Mei, Shasika Panamaldeniya, Anupama Karki, Patrick Burns, Sanjay Bhataarai

专题命中 工作流自动化 :workflow(abstract)

AI总结 本文提出一种混合接触平面HPGe工艺,用于制造高纯锗探测器,验证了锂悬浮涂料与薄膜a-Ge/Al接触的兼容性,实现了低噪声和高能量分辨率的探测性能。

Comments 25 pages and 13 Figures

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2601.08863 2026-01-15 cs.OH 50%

WheatAI v1.0: An AI-Powered High Throughput Wheat Phenotyping Platform

WheatAI v1.0: 一种基于人工智能的高通量小麦表型平台

Maitiniyazi Maimaitijiang, Hillson Ghimire, Subash Thapa, Mohammad Maruf Billah, Shaurya Sehgal, Mandeep Singh, Swas Kaushal, Kushal Poudel, Santosh Subedi, Ubaid Ur Rehman Janjua, Lise-Olga Makonga, Jyotirmoy Halder, Harsimardeep S. Gill, Mazhar Sher, Jagdeep Singh Sidhu, Sunish K. Sehgal

专题命中 工作流自动化 :workflow(abstract)

AI总结 WheatAI v1.0通过人工智能技术实现高通量小麦表型分析,提供多尺度数据输入和自动化处理,支持田间到实验室的快速决策。

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2503.04038 2026-01-15 cs.RO cs.SY eess.SY 50%

Autonomous Robotic Bone Micro-Milling System with Automatic Calibration and 3D Surface Fitting

自主机器人骨微铣系统与自动校准及3D表面拟合

Enduo Zhao, Xiaofeng Lin, Yifan Wang, Kanako Harada

机构 * Department of Mechanical Engineering, Graduate School of Engineering, The University of Tokyo(东京大学工学研究生院机械工程系) School of Biomedical Engineering, Tsinghua University(清华大学生物医学工程学院) Center for Disease Biology and Integrative Medicine, Graduate School of Medicine, The University of Tokyo(东京大学医学研究生院疾病生物学与整合医学中心)

专题命中 工作流自动化 :workflow(abstract)

AI总结 本研究提出了一种自主机器人骨微铣系统,通过集成微立体相机和CNN关键点检测,实现自动校准和3D表面拟合,显著提升小鼠颅窗创建的自动化水平和精度。

Comments 8 pages, 8 figures, accepted by RA-L. Please refer to the DOI to access the accepted version

Journal ref IEEE Robotics and Automation Letters, vol. 11, no. 2, pp. 2250-2257 (2026)

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