当前位置:   article > 正文

哇,AAAI 2024 的投稿量接近14,000了!

aaai2024

编辑 | CVHub

点击下方卡片,关注“自动驾驶之心”公众号

ADAS巨卷干货,即可获取

本文只做学术分享,如有侵权,联系删文

导读

27e28223c32f900197582b62dc236272.png

今天不经意间看到这么一个激动人心的数字,此刻只能用一个字表达内心的感受:"卷"!为此,小编默默打开尘封许久的 CMT 后台。。。

5f6e8ec3d517c4324d972c25384da250.png

只能说要换成今年投稿,可能只有1篇能中,又或者全军覆没?国内这行情,现在无论是考公、考研、考教师编,亦或者送外卖、做网约车司机等,处处卷上天。可能这个时代最利好的人群便是整天“贩卖焦虑”转手又“卖服务”给你的那群人,把流量赚足了再顺便把你给收割了,留下一片绿油油的韭菜田子。。。

作为一名初入自媒体创作的新手,奶盖一直坚持利用工作学习之余的业余时间进行创作无私分享给大家,不求质量超群,只求问心无愧,做人还是要坚持底线。现在也慢慢察觉到,以前一些经常关注的技术号,现在几乎都沦陷成营销号了,实属可惜,可能这也是如今大内卷时代必然的产物。然而,笔者仍希望能在这个浮躁的社会风气下,保持初心,坚持创作。谁也不能预知未来会什么事情,可能某一天也停笔了,但人最重要的还是要活在当下,毕竟人生是一段旅程,在旅行中遇到的每一个人,做的每一件事,看过的每一个美丽景色,都有可能成为一生中难忘的回忆。

回到正文,投稿数量的激增会带来很多问题,显而易见的便是审稿人数量不足、工作量激增、部分审稿人资质不足等。当然,这不是我们应该考虑的问题,作为一名科(磕)研(盐)人(汪),我们首要掌握的核心秘诀便是——斐波那契投稿法。可以说,自从有了斐波那契投稿法,爸爸妈妈再也不用担心我们没有论文了。

斐波那契投稿法:
本次投稿的文章 = 上次被拒的文章 + 上上次被拒的文章

该法则得以成立的一个前提条件便是:“只要投出去的论文,总会在某一处被接收”。下面简单附上本届 AAAI 会议的相关信息以及往年的一些统计数据,希望大家都能有所收获。

会议信息

AAAI 2024: AAAI Conference on Artificial Intelligence

日期事件
2023.07.04AAAI-24 网站开放作者注册
2023.07.11AAAI-24 网站开放论文提交
2023.08.08截止日期:摘要提交(UTC-12 时区)
2023.08.15截止日期:完整论文提交(UTC-12 时区)
2023.08.18截止日期:补充材料和代码提交(UTC-12 时区)
2023.09.25截止日期:NeurIPS 快速通道提交的注册、摘要和完整论文(UTC-12 时区)
2023.09.27第一阶段拒绝通知
2023.09.28截止日期:NeurIPS 快速通道提交的补充材料和代码(UTC-12 时区)
2023.11.02-05作者反馈窗口
2023.12.09最终录取或拒绝通知
2023.12.19提交论文预印本以包含在电子会议材料中
2024.02.20-27AAAI-24 会议

今年 AAAI 也对使用 LLM 做出了相应规定:

  • 不允许提交包含如ChatGPT这类大型语言模型(LLM)生成的文本的论文,除非这些文本是作为论文实验分析的一部分。

  • 但可以使用LLM进行文本的编辑或润色。

  • 根据AAAI的政策,任何AI系统(包括Chat-GPT、BARD、DALL-E等生成模型)不满足AAAI论文的作者资格,也不能作为AAAI论文的可引用来源。作者需对内容承担全部责任,包括检查抄袭和文本的真实性

同往年一样,今年依旧采用双阶段评审:第一阶段两次评审,第一阶段未被拒绝的论文在第二阶段进行额外评审。仅第一阶段未被拒绝的论文在第二阶段后有作者回应。

录用率

8b22cdf36559feb07b1beaed43beca78.png
年份提交数录取数录取率(%)
20229020134915%
20217911169221.4%
20207737159120.6%
20197095115016.2%
2018380093324.6%
2017259063824.6%
2016213254925.8%
2015199153126.7%
2014140639828.3%
201197524224.8%
201098226426.9%
200893722724.2%
200792125327.5%
200677417122.1%
200580314818.4%
200445312126.7%
200246912125.8%
200043114333.2%
199940010927.3%
199847514430.3%
199732311736.2%
199664319730.6%
199478022228.5%
199352412624%
199263613320.9%
199160314223.5%
199089216118%
198885014817.4%
198771514920.8%
198681718722.9%

往年最佳论文

年份最佳论文
2022Online certification of preference-based fairness for personalized recommender systems
2021Exploration-Exploitation in Multi-Agent Learning: Catastrophe Theory Meets Game Theory
2021Informer: Beyond Efficient Transformer for Long Sequence Time-Series Forecasting
2021Mitigating Political Bias in Language Models Through Reinforced Calibration
2020A Distributed Multi-Sensor Machine Learning Approach to Earthquake Early Warning
2020WinoGrande: An Adversarial Winograd Schema Challenge at Scale
2020Fair Division of Mixed Divisible and Indivisible Goods
2019Zero Shot Learning for Code Education: Rubric Sampling with Deep Learning Inference
2019How to Combine Tree-Search Methods in Reinforcement Learning
2018Counterfactual Multi-Agent Policy Gradients
2018Memory-Augmented Monte Carlo Tree Search
2017The Option-Critic Architecture
2017Label-Free Supervision of Neural Networks with Physics and Domain Knowledge
2016Toward a Taxonomy and Computational Models of Abnormalities in Images
2016Bidirectional Search That Is Guaranteed to Meet in the Middle
2015Surpassing Human-Level Face Verification Performance on LFW with GaussianFace
2015From Non-Negative to General Operator Cost Partitioning
2014Recovering from Selection Bias in Causal and Statistical Inference
2013SMILe: Shuffled Multiple-Instance Learning
2013HC-Search: Learning Heuristics and Cost Functions for Structured Prediction
2012Learning SVM Classiiers with Indeinite Kernels
2012Document Summarization Based on Data Reconstruction
2011Complexity of and Algorithms for Borda Manipulation
2011Dynamic Resource Allocation in Conservation Planning
2010How Incomplete Is Your Semantic Web Reasoner?
2010A Novel Transition Based Encoding Scheme for Planning as Satisfiability
2008Optimal False-Name-Proof Voting Rules with Costly Voting
2008How Good is Almost Perfect?
2007PLOW: A Collaborative Task Learning Agent
2007Thresholded Rewards: Acting Optimally in Timed, Zero-Sum Games
2006Model Counting: A New Strategy for Obtaining Good Bounds
2006Towards an Axiom System for Default Logic
2005The Max K-Armed Bandit: A New Model of Exploration Applied to Search Heuristic Selection
2004Learning and Inferring Transportation Routines
2002On Computing all Abductive Explanations
2000The Game of Hex: An Automatic Theorem Proving Approach to Game Programming
1999PROVERB: The Probabilistic Cruciverbalist
1998Acceleration Methods for Numeric CSPs
1998The Interactive Museum Tour-Guide Robot
1998Learning Evaluation Functions for Global Optimization and Boolean Satisfiability
1997Statistical Parsing with a Context-Free Grammar and Word Statistics
1997A Practical Algorithm for Finding Optimal Triangulations
1997Building Concept Representations from Reusable Components
1997Fast Context Switching in Real-Time Propositional Reasoning
1996Verification of Knowledge Bases Based on Containment Checking
1996A Novel Application of Theory Refinement to Student Modeling
1996Pushing the Envelope: Planning, Propositional Logic and Stochastic Search
1994A Prototype Reading Coach that Listens
1993Equations for Part-of-Speech Tagging
1992Hard and Easy Distributions of SAT Problems
1991Improving Rule-Based Systems Through Case-Based Reasoning
1988Qualitative Results Concerning the Utility of Explanation-Based Learning
1988Approach to Qualitative Algebraic Reasoning
1987An Approach to Default Reasoning Based on a First-Order Conditional Logic
1987PROMPT: An Innovative Design Tool
1987Curing Anomalous Extensions
1987Non-Deterministic Lisp with Dependency-directed Backtracking
1987Defining Operationality for Explanation-based Learning
1987Word-Order Variation in Natural Language Generation
1987Energy Constraints on Deformable Models: Recovering Shape and Non-Rigid Motion
1987Incremental Causal Reasoning
1986Default Reasoning, Nonmonotonic Logics, and the Frame Problem
1986Generating Tests by Exploiting Designed Behavior
1984The Tractability of Subsumption in Frame-Based Description Languages
1984Choices without Backtracking
1984A Logic of Implicit and Explicit Belief
1984Shading into Texture

未完,待续。

① 全网独家视频课程

BEV感知、毫米波雷达视觉融合、多传感器标定、多传感器融合、多模态3D目标检测、点云3D目标检测、目标跟踪、Occupancy、cuda与TensorRT模型部署、协同感知、语义分割、自动驾驶仿真、传感器部署、决策规划、轨迹预测等多个方向学习视频(扫码学习)

079366e1694c19715f0b0a844d04e37e.png 视频官网:www.zdjszx.com

② 国内首个自动驾驶学习社区

近2000人的交流社区,涉及30+自动驾驶技术栈学习路线,想要了解更多自动驾驶感知(2D检测、分割、2D/3D车道线、BEV感知、3D目标检测、Occupancy、多传感器融合、多传感器标定、目标跟踪、光流估计)、自动驾驶定位建图(SLAM、高精地图、局部在线地图)、自动驾驶规划控制/轨迹预测等领域技术方案、AI模型部署落地实战、行业动态、岗位发布,欢迎扫描下方二维码,加入自动驾驶之心知识星球,这是一个真正有干货的地方,与领域大佬交流入门、学习、工作、跳槽上的各类难题,日常分享论文+代码+视频,期待交流!

138170a32bcc434f5d3a7f82dafc6c18.png

③【自动驾驶之心】技术交流群

自动驾驶之心是首个自动驾驶开发者社区,聚焦目标检测、语义分割、全景分割、实例分割、关键点检测、车道线、目标跟踪、3D目标检测、BEV感知、多模态感知、Occupancy、多传感器融合、transformer、大模型、点云处理、端到端自动驾驶、SLAM、光流估计、深度估计、轨迹预测、高精地图、NeRF、规划控制、模型部署落地、自动驾驶仿真测试、产品经理、硬件配置、AI求职交流等方向。扫码添加汽车人助理微信邀请入群,备注:学校/公司+方向+昵称(快速入群方式)

3fb93a2b9b16088e8bf0186cc6b830b3.jpeg

④【自动驾驶之心】平台矩阵,欢迎联系我们!

7c3fa904e0fcaad25b2dc92465aedd50.jpeg

声明:本文内容由网友自发贡献,不代表【wpsshop博客】立场,版权归原作者所有,本站不承担相应法律责任。如您发现有侵权的内容,请联系我们。转载请注明出处:https://www.wpsshop.cn/w/weixin_40725706/article/detail/697063
推荐阅读
相关标签
  

闽ICP备14008679号