会议信息

SIGCOMM 2026: Annual Conference of the ACM Special Interest Group on Data Communication

请登录查看会议网址
免费注册:查看官网链接、跟踪截稿日期,并接收邮件提醒。
嵌入截止倒计时徽章
SIGCOMM
用 API 获取这条数据
搜索与榜单列表完全无需凭证;本页的完整详情需要一把免费 API 密钥。详见开发者接入页。
截稿日期:
2026-02-06
通知日期:
会议日期:
2026-08-17
会议地点:
Denver, Colorado, USA
届数:
40
CCF: A   ICORE: A*   QUALIS: A1   浏览: 258797   关注: 255   参加: 18

会伴指数 (CP-I)

93.7 / 100
全站第 22 名 / 共 5,693 个会议 · 前 1%

网络与通信 第 5 / 865

学术认可 (35%)
100
投稿选择性 (20%)
95
会议传承 (20%)
100
社区关注 (10%)
77
资料公开度 (15%)
80

用到的输入: 收录等级:CCF A, QUALIS A1 · 录用率:16.2%(有记录的 5 届的均值) · 有据可查的届次:43 · 在会伴关注它的研究者:255 人 · 过去 24 个月打开过本页的研究者:22 人

公开资料里还缺: 历届信息 (+3.0)
主办方认领本会议后,可直接在这一页补上;分数每晚重算。如何提升这个分数

置信度 100% —— 分数中有多大比例来自实际观测到的数据,而不是中性基准。 这个分数是怎么算出来的 · 查看完整榜单 · 算法版本 1.1 · 算于 2026-10-04

征稿

SIGCOMM 2026 (Annual Conference of the ACM Special Interest Group on Data Communication) is a CCF A / ICORE A* / QUALIS A1 conference held in Denver, Colorado, USA on 2026-08-17. The paper submission deadline is 2026-02-06.

The ACM SIGCOMM 2026 conference seeks papers describing significant research contributions or significant deployment experiences in communication networks and networked systems. SIGCOMM takes a broad view of networking which includes (but is not limited to): All types of computer networks, including mobile, wide-area, data center, embedded, home, and enterprise networks. All types of wired and wireless technologies, including optics, radio, acoustic, and visible light-based communication. All aspects of networks and networked systems, such as network architecture, packet-switched and circuit-switched hardware and software, virtualization, mobility, resource management, performance, energy consumption and environmental impact, topology, robustness, security, diagnosis, verification, privacy, economics, evolution, and interactions with applications. All parts of the network life cycle, including planning, designing, building, operating, troubleshooting, migrations, and end-of-life. All approaches and techniques applied to networking, including theory, analysis, experimentation, and AI/machine learning. SIGCOMM 2026 will accept submissions in two tracks: research and experience. Research track submissions should significantly advance the state of the art in networking by, for instance, proposing and developing novel ideas or by rigorously evaluating or re-evaluating existing ideas. Experience track submissions will present key insights found in the course of executing deployments of networking techniques, especially in settings that most in the community cannot duplicate (for instance, for reasons of scale). Please note there are significant changes to the experience track which are described below in the "new this year" section. Survey and tutorial papers are out of scope. All submissions must be anonymous, i.e., not reveal author names. Experience submissions, however, may reveal the name of the deploying organization or the deployed system. All authors must be listed in HotCRP before the submission deadline so that reviewer conflicts are handled properly. At paper registration time, authors must explicitly choose in the submission form whether their paper is to be considered for the research or experience track. Each submission will only be considered for the one track identified at submission time.
由 Dou Sun 最后更新于

录用率

平均录用率: 20.2% 33 年间 (1983–2016).

年份提交数录用数录用率(%)
20162313916.9%
20152424016.5%
20142424518.6%
20132403815.8%
20122353113.2%
20112233214.3%
20102763312%
20092702710%
20082883512.2%
20072583513.6%
20062983712.4%
20052552710.6%
2004340319.1%
20033193310.3%
2002300258.3%
20012032311.3%
20002382610.9%
19991902412.6%
19982262711.9%
19972132411.3%
19961622716.7%
19951433021%
1994942930.9%
19931492818.8%
19921262721.4%
19911282821.9%
19901023130.4%
1989942930.9%
19881163227.6%
1987944244.7%
19861254536%
1984703347.1%
1983503468%

最佳论文

年份最佳论文
2025Mosaic: Breaking the Optics versus Copper Trade-off with a Wide-and-Slow Architecture and MicroLEDs
2024Expresso: Comprehensively Reasoning About External Routes Using Symbolic Simulation
2024The Next Generation of BGP Data Collection Platforms
2024Understanding the Host Network
2023Memory Management in ActiveRMT: Towards Runtime-programmable Switches
2022Software-Defined Network Assimilation: Bridging the Last Mile Towards Centralized Network Configuration Management with NAssim
2021Seven Years in the Life of Hypergiants' Off-Nets
2020Routing on Multiple Optimality Criteria
2019Underwater backscatter networking
2019PicNIC: predictable virtualized NIC
2018Inferring Persistent Interdomain Congestion
2017Language-directed hardware design for network performance monitoring
2017Re-architecting datacenter networks and stacks for low latency and high performance
2016Eliminating Channel Feedback in Next-Generation Cellular Networks
2016Inter-Technology Backscatter: Towards Internet Connectivity for Implanted Devices
2016Don't Mind the Gap: Bridging Network-wide Objectives and Device-level Configurations
2015Central Control Over Distributed Routing
2014CONGA: Distributed Congestion-Aware Load Balancing for Datacenters
2014Balancing Accountability and Privacy in the Network
2013Ambient Backscatter: Wireless Communication Out of Thin Air
2012Multi-Resource Fair Queueing for Packet Processing
2011They Can Hear Your Heartbeats: Non-Invasive Security for Implanted Medical Devices
2010Efficient Error Estimating Coding: Feasibility and Applications
2009White Space Networking with Wi-Fi like Connectivity
2008ZigZag Decoding: Combating Hidden Terminals in Wireless Networks
2001A scalable content-addressable network
2001Chord: A scalable peer-to-peer lookup service for internet applications
1988Congestion avoidance and control

看过这个的人也在看

评论 0

暂无评论。

请登录后发表评论