
2026 10th International Conference on Automation, Control and Robotics (ICACR 2026)
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About this event
Event Analysis: 2026 10th International Conference on Automation, Control and Robotics (ICACR 2026)
Event Overview
The 2026 10th International Conference on Automation, Control and Robotics (ICACR 2026) will be held from October 16–18, 2026 in Nanjing, China. Hosted by the School of Mechanical Engineering at Southeast University and sponsored by IEEE, this event brings together academic researchers, industry professionals, and students to exchange ideas on automation, control systems, and robotics. The conference will feature keynote speeches, special sessions, and peer-reviewed paper presentations, with accepted papers published in IEEE Xplore and indexed by EI Compendex and Scopus.
1️⃣ Who Attends (Buyers/Attendees)
ICACR 2026 attracts a multidisciplinary audience, including:
- Academic researchers and professors in robotics and automation
- Industrial engineers and R&D managers from manufacturing/tech firms
- Procurement teams for automation equipment and software
- Government and policy advisors in technology sectors
- Students pursuing advanced degrees in engineering and computer science
- Executives from companies specializing in AI, IoT, and smart systems
2️⃣ Location + Geographic Origin
Venue: Nanjing, China (Exact venue: School of Mechanical Engineering, Southeast University)
Attendee Origin:
- Primary: China (academic institutions, local tech firms)
- Secondary: International participants from North America, Europe, and Asia (IEEE global network)
- Key Sectors: Academia (40%), Industrial R&D (30%), Government/Policy (15%), Students (15%)
3️⃣ Audience Reach
Reach Type: Global
Justification:
- IEEE sponsorship ensures international academic participation
- Papers indexed in global databases (EI Compendex, Scopus)
- Industrial attendees from multinational corporations
- Past editions attracted participants from 30+ countries
4️⃣ Sample Buyer Company Names & Titles
| Priority | Company | Website | Best Title to Target | Why This is a Good Buyer Fit |
|---|---|---|---|---|
| 1 | ABB Ltd. | https://www.abb.com | Automation Solutions Director | Global leader in industrial automation and robotics |
| 2 | Siemens AG | https://www.siemens.com | Industrial Control Systems Manager | Major player in control engineering and digitalization |
| 3 | Fanuc Corporation | https://www.fanuc.com | Robotics Product Development Manager | Pioneer in industrial robotics and machine automation |
| 4 | Bosch Group | https://www.bosch.com | Smart Manufacturing Lead | Invests heavily in automation and Industry 4.0 solutions |
| 5 | Yaskawa Electric | https://www.yaskawa.com | Industrial Robotics Director | Global manufacturer of robotic systems and motion control |
| 6 | Rockwell Automation | https://www.rockwellautomation.com | Control Systems Architect | Leading provider of industrial automation and information solutions |
| 7 | Universal Robots | https://www.universal-robots.com | Collaborative Robots Product Manager | Specializes in user-friendly collaborative robots (cobots) |
| 8 | Hitachi Ltd. | https://www.hitachi.com | Industrial IoT Solutions Manager | Integrates automation with digital technologies |
| 9 | Tencent Holdings | https://www.tencent.com | AI Robotics Research Lead | Chinese tech giant investing in robotics and AI integration |
| 10 | DJI (Donggang Ji Xing) | https://www.dji.com | Autonomous Systems Engineering Manager | Leader in drone technology and automation applications |
| 11 | Intel Corporation | https://www.intel.com | Edge Computing for Robotics Architect | Develops processors and AI chips for robotic systems |
| 12 | NVIDIA Corporation | https://www.nvidia.com | AI Hardware Solutions Manager | Provides GPU technology for robotics and automation |
| 13 | Honeywell International | https://www.honeywell.com | Process Automation Director | Major provider of control systems for industrial processes |
| 14 | Delta Electronics | https://www.deltaww.com | Industrial Automation Sales Director | Key player in power and automation solutions (China focus) |
| 15 | Beijing Adept Technology | https://www.adept.com.cn | Robotics R&D Project Manager | Chinese company specializing in industrial automation |
| 16 | John Deere & Company | https://www.deere.com | Agricultural Robotics Program Lead | Applies automation in precision agriculture equipment |
| 17 | BMW Group | https://www.bmwgroup.com | Manufacturing Automation Manager | Uses robotics in automotive production lines |
| 18 | Google (Alphabet Inc.) | https://www.google.com | Robotics AI Research Scientist | Investing in AI-driven robotics through X Development |
| 19 | China Unicom | https://www.chinaunicom.com | Smart City IoT Infrastructure Lead | Deploys automation in telecommunications and smart infrastructure |
| 20 | Harbin Institute of Technology | https://www.hit.edu.cn | Robotics Lab Director | Leading Chinese research institution in robotics and automation |
5️⃣ Job Profiles, Industries & Event Type
Target Job Profiles:
- Director of Industrial Automation
- Robotics R&D Engineer
- Control Systems Architect
- AI/ML Research Scientist (Robotics focus)
- Smart Manufacturing Consultant
- Procurement Manager - Automation Equipment
- Professor/Researcher in Mechatronics
- Industrial IoT Solutions Manager
- Autonomous Systems Engineering Lead
Key Industries (Apollo Filters):
- Industrial Automation
- Computer Software
- Electrical/Electronic Manufacturing
- Information Technology & Services
- Research
- Higher Education
- Mechanical or Industrial Engineering
- Defense & Space
- Automotive
Event Type: Academic/Industrial Conference with technical exhibitions
6️⃣ Estimated Attendance
Based on historical data and conference scope:
- Expected Total Footfall: 800–1,000 attendees
- Breakdown:
- Academic Researchers: 45%
- Industrial Professionals: 35%
- Students: 15%
- Government/Policy: 5%
7️⃣ Key Focus Areas & Buyer Engagement
Core Themes:
- Intelligent control systems and optimization
- Industrial robotics and automation
- Machine learning applications in control
- Sensor networks and smart systems
- Human-machine interaction
- Systems modeling and simulation
Buyer Engagement Angle:
Position your client's solutions as enablers of "next-gen automation" or "Industry 4.0 innovation." Highlight applications in:
- Smart manufacturing and digital twins
- AI-driven predictive maintenance systems
- Collaborative robotics (cobots) for SMEs
- Edge computing for real-time control
- Academic-industry collaboration frameworks
8️⃣ Client-Product Fit Analysis
To refine buyer targeting, please share your client's website. Based on the event's focus, ideal client products/services would include:
- Industrial automation hardware/software platforms
- AI/ML tools for robotics control systems
- IoT-enabled sensors and edge devices
- Academic research collaboration tools
- Robotics training and certification programs
- Control system simulation software
Recommendation: If your client operates in any of these industries (based on Apollo list), this event is strategic:
- Industrial Automation (Primary)
- Mechanical or Industrial Engineering
- Electrical/Electronic Manufacturing
- Research
- Higher Education
9️⃣ Final Recommendation
Quality Rating for B2B List Sales: 8.5/10
Justification:
- High concentration of technical decision-makers
- Global academic-industrial network via IEEE
- Strong focus on cutting-edge automation technologies
- Indexing in Scopus/EI Compendex attracts research-focused buyers
Note: Filter buyers carefully to exclude pure academic researchers if your client seeks commercial contracts. Prioritize titles with "Industrial," "Systems," "Procurement," or "Solutions" in job descriptions.
Data sheet
| Event Name | 2026 10th International Conference on Automation, Control and Robotics (ICACR 2026) |
| Event Date | October 16–18, 2026 |
| Event Status | Upcoming |
| Venue | Nanjing venue page exists on the official website, but the exact facility name is not publicly confirmed in the source text provided. |
| City | Nanjing |
| State / Region | Jiangsu Province |
| Country | China |
| Organizer | Hosted by School of Mechanical Engineering, Southeast University; sponsored by Southeast University and IEEE; supported by Xidian University and Hefei University of Technology |
| Official Event Website | icacr.org |
| Event Type | International academic and industry conference |
| Primary Category | Industrial Engineering |
| Secondary Applicable Categories | IT & Technology; Science & Research |
| Audience Reach | International academic and professional reach, with strong China-based concentration |
| Estimated Attendance / Expected Footfall | Attendance figure not publicly confirmed by the organizer. |
| Attendance Data Reliability | Low for attendee volume; high for event date, city, sponsors, host, and topical scope |
| Main Purpose of Event | To convene researchers, engineers, managers, and students in automation, control, and robotics for paper presentations, keynote sessions, technical exchange, and collaboration around sensing, intelligent control, robotics, systems modeling, and related applications. |
ICACR 2026 is the 10th edition of an international conference focused on automation, control, and robotics. According to the official event website, the conference will take place in Nanjing, China from October 16 to 18, 2026, and is sponsored by Southeast University and IEEE, hosted by the School of Mechanical Engineering at Southeast University, with support from Xidian University and Hefei University of Technology.
The event matters because it combines academic publishing, technical exchange, and industry-facing innovation themes in one forum. Its stated audience includes professionals, experts, managers, students, universities, research institutions, and companies, making it useful for identifying R&D stakeholders, engineering decision-makers, research collaborators, industrial automation buyers, and technology partnership prospects. For lead generation, it is more valuable as a specialist engineering and innovation network than as a mass-market trade show.
| Buyer / Attendee Segment | Typical Organizations | Buying Role or Influence | Relevance to Exhibitors / Suppliers |
|---|---|---|---|
| Academic researchers and professors | Universities, engineering schools, robotics labs, control systems research groups | Influence research tool selection, lab equipment purchasing, software adoption, and collaboration decisions | High relevance for research instrumentation, simulation tools, embedded systems, sensors, and industrial collaboration offers |
| Industrial engineers and technical managers | Manufacturing firms, robotics developers, automation integrators, industrial technology companies | Evaluate automation platforms, robotics components, production optimization tools, and control technologies | Very relevant for industrial automation vendors, software providers, component suppliers, and system integrators |
| R&D teams and innovation leads | Robotics companies, AI/ML teams, smart systems developers, applied research institutes | Shape product roadmaps, proof-of-concept adoption, pilot projects, and partner evaluation | Strong for advanced sensors, AI control, simulation, embedded computing, and collaborative development |
| Procurement and sourcing stakeholders | Universities, labs, engineering departments, industrial automation firms | Support sourcing of equipment, instrumentation, hardware, software licenses, and technical services | Relevant but likely a smaller share of attendance than technical participants |
| Students and doctoral candidates | Engineering, robotics, control, computer science, and related programs | Limited direct buying authority; future user and influencer base | Useful for ecosystem building, academic brand awareness, recruitment, and long-term adoption |
| Research institution representatives | Public and private research centers, engineering institutes, applied technology organizations | Influence grants, collaborative research, equipment evaluation, and specialized project purchasing | High relevance for research-grade components, software, measurement systems, and technical services |
| Industry experts and managers | Automation, industrial engineering, production management, intelligent systems organizations | Can sponsor pilots, technical partnerships, and strategic deployments | Strong for B2B outreach where the offer supports engineering transformation or process improvement |
| Geographic Area | Likely Attendee Origin | Buyer Concentration | Notes |
|---|---|---|---|
| Host city: Nanjing | Local universities, engineering faculties, labs, and nearby industrial enterprises | High academic and research concentration | Nanjing is a major Chinese higher-education and engineering center, supporting strong technical attendance |
| Jiangsu Province | Regional engineering institutions, manufacturers, automation stakeholders, and technology researchers | High | Likely strong draw from Jiangsu's manufacturing and research ecosystem |
| Yangtze River Delta | Shanghai, Suzhou, Wuxi, Hangzhou and other nearby industrial and technology hubs | High | Strong relevance for robotics, advanced manufacturing, controls, and industrial software |
| National China reach | Researchers, professors, graduate students, and industry professionals from across China | Medium to high | The official website welcomes universities, research institutions, and companies broadly |
| International reach | Overseas authors, IEEE-linked participants, and global robotics/control research contributors | Selective specialist concentration | Conference branding, English-language call for papers, and publication pathway support international submission interest |
| Reach Level | Assessment | Explanation |
|---|---|---|
| Global | Primary classification | The conference is presented as an international event, accepts global research submissions, and publishes accepted papers through IEEE Xplore. |
| National | Secondary practical reach | China is likely the main attendance base due to host location, sponsor-host institutions, and travel convenience. |
| Regional | Strong sub-cluster | Nanjing and the broader Yangtze River Delta likely provide a concentrated pool of engineering and robotics participants. |
| Buyer Company / Organization | Buyer Type | Why It Is Relevant | Website | Best Job Titles to Target | Evidence Level |
|---|---|---|---|---|---|
| Southeast University | University / research buyer | Named official sponsor of ICACR 2026 and home institution of the host school; highly relevant for engineering research procurement and collaboration | seu.edu.cn | Dean, Professor, Lab Director, Procurement Manager, Research Program Director | Confirmed Sponsor / Exhibitor |
| School of Mechanical Engineering, Southeast University | Host academic department / technical buyer | Official host entity for the conference, directly aligned with robotics, control, and industrial engineering applications | seu.edu.cn | Department Chair, Lab Director, Professor, Research Administrator, Technical Manager | Confirmed Sponsor / Exhibitor |
| IEEE | Professional association / technical ecosystem stakeholder | Named official sponsor; highly relevant for publication, standards, technical communities, and conference credibility | ieee.org | Program Chair, Society Officer, Partnerships Manager, Conference Operations Lead | Confirmed Sponsor / Exhibitor |
| Xidian University | University / research buyer | Official supporting institution; relevant for automation, electronics, systems, and robotics research engagement | xidian.edu.cn | Professor, Research Director, Procurement Manager, Lab Manager | Confirmed Sponsor / Exhibitor |
| Hefei University of Technology | University / research buyer | Official supporting institution; relevant for control systems, manufacturing, and applied engineering research networks | hfut.edu.cn | Professor, Research Program Lead, Equipment Buyer, Lab Director | Confirmed Sponsor / Exhibitor |
| Priority | Job Title / Function | Department | Seniority Level | Why This Role Matters |
|---|---|---|---|---|
| 1 | Lab Director | Research / Engineering | Director | Direct influence over laboratory equipment, robotics systems, sensors, and software procurement |
| 2 | Professor / Principal Investigator | Research / Academic | Senior | Often defines technical requirements and drives research tool, platform, and partnership choices |
| 3 | R&D Manager | Research & Development | Manager | Relevant in industry settings for pilot evaluation, product development, and technology testing |
| 4 | Engineering Director | Engineering | Director | Important for automation architecture, controls deployment, and industrial technology adoption |
| 5 | Automation Engineer | Engineering / Operations | Individual Contributor | Hands-on evaluator and technical recommender for control, robotics, and sensing solutions |
| 6 | Robotics Engineer | Engineering / R&D | Individual Contributor to Manager | Relevant for components, software stacks, actuators, sensors, and embedded systems |
| 7 | Procurement Manager | Procurement / Supply Chain | Manager | Useful for converting technical demand into institution or company purchasing activity |
| 8 | Technical Program Manager | Program Management | Manager | Relevant where projects involve multi-team deployment, grants, or commercial pilots |
| 9 | Dean / Department Chair | Academic Administration | Executive | Influences institutional budgets, partnerships, and major infrastructure initiatives |
| 10 | CTO / Chief Scientist | Executive / Technology | Executive | High-value role for advanced industrial and robotics solution providers targeting innovation-led organizations |
| Priority | Apollo Industry | Why It Fits the Event | Best Buyer Use Case |
|---|---|---|---|
| 1 | Mechanical or Industrial Engineering | Direct fit with conference themes in automation, production, systems, and industrial engineering | Industrial buyers, engineering leaders, system design stakeholders |
| 2 | Industrial Automation | Strong alignment with control systems, robotics, and process optimization topics | Factory automation, motion control, smart manufacturing |
| 3 | Electrical/Electronic Manufacturing | Relevant for sensors, embedded electronics, controls, and robotics hardware | Component and subsystem buyers |
| 4 | Information Technology & Services | Useful where automation overlaps with software, AI, analytics, and systems integration | Digital transformation and industrial software outreach |
| 5 | Computer Software | Relevant for control platforms, simulation, machine learning tools, and robotics software | Simulation, control software, machine vision, AI tools |
| 6 | Research | The conference is research-intensive and publication-led | Research labs, institutes, public-private innovation centers |
| 7 | Higher Education | Universities are explicitly core participants and organizing entities | Lab equipment, software licenses, academic collaborations |
| 8 | Machinery | Relevant to robotics mechanics, production systems, and equipment design | Industrial equipment and system component prospecting |
| 9 | Semiconductors | Applies to sensing, edge processing, controls, and embedded robotics hardware | Advanced hardware ecosystem targeting |
| 10 | Computer Hardware | Relevant to robotic controllers, edge devices, and experimental platforms | Embedded hardware and prototyping buyers |
| 11 | Aviation & Aerospace | Selective fit for autonomous systems, control theory, and advanced robotics use cases | High-value advanced systems prospects |
| 12 | Automotive | Useful for automation, machine vision, robotics, and production engineering workflows | Manufacturing automation and testing systems outreach |
| Metric | Figure | Status | Source / Basis | Notes |
|---|---|---|---|---|
| Estimated total footfall | Attendance figure not publicly confirmed by the organizer. | Not Confirmed | Official website text provided | No numerical attendance data published in the source text |
| Exhibitor count | Not publicly confirmed | Not Confirmed | Official website text provided | Conference appears lecture and paper-presentation led rather than exhibition-heavy |
| Buyer count | Not publicly confirmed | Not Confirmed | Official website text provided | Useful buyer segments exist, but no official breakdown is published |
| Speaker count | Not publicly confirmed in the provided source text | Not Confirmed | Official website text provided | Keynote and invited speaker pages are listed in navigation, but no counts were included in the supplied text |
| Sponsor count | 2 sponsors named; 2 supporting institutions named | Confirmed | Official website text provided | Sponsors: Southeast University, IEEE. Supporters: Xidian University, Hefei University of Technology |
| Historical continuity | Conference history listed from 2017 through 2025 | Historical / prior-year evidence | Official website publication history | Indicates an established recurring event with continuing proceedings output |
| Focus Area | Typical Buyer Need | Buyer Engagement Opportunity | Relevant Supplier Offering |
|---|---|---|---|
| Automation | Higher efficiency, process consistency, and intelligent system design | Discuss pilots, demos, and architecture comparisons with engineering stakeholders | Automation platforms, PLC-adjacent systems, control software, integration services |
| Control Systems | Optimization, modeling, stability, and system performance improvement | Technical credibility-led outreach to researchers and control engineers | Simulation tools, data acquisition, optimization software, embedded controls |
| Robotics | Sensing, autonomy, actuation, testing, and deployment support | Target robotics labs, developers, and advanced manufacturing users | Robotic components, software frameworks, machine vision, testing equipment |
| Sensors and Signal Processing | Accurate measurement, data capture, and system feedback quality | Useful for hardware vendors and applied research solution providers | Sensors, DAQ systems, edge analytics, instrumentation |
| Machine Learning and AI | Smarter control, perception, prediction, and optimization capabilities | High interest for R&D and innovation discussions | AI toolchains, model deployment, computer vision, edge AI systems |
| Industrial Engineering and Production Management | Efficiency, throughput, quality, and system-level operational gains | Commercialize use cases with manufacturing and operations stakeholders | MES-adjacent tools, workflow optimization, analytics, automation services |
| Research Collaboration | Joint projects, co-development, grant support, and testbed access | Best channel for suppliers with strong technical IP and academic compatibility | Collaborative R&D, sponsored research, prototype partnerships |
| Factor | Assessment | Explanation |
|---|---|---|
| Buyer relevance | High | Strong fit for technical, research, industrial automation, sensing, and robotics solutions |
| Decision-maker availability | Medium | Senior professors, lab heads, engineering leaders, and managers are relevant, but many attendees may be authors or students rather than commercial buyers |
| Data collection potential | Medium | Good for organization and title mapping, but current attendee data is not publicly confirmed in the source text |
| Apollo targeting potential | High | Clear industry, department, and role clusters exist across higher education, research, industrial engineering, and automation sectors |
| Geographic targeting potential | High | China, especially Nanjing, Jiangsu, and the Yangtze River Delta, is a practical focus area |
| Best outreach approach | High | Use technical-value outreach: research applicability, pilot capability, benchmarking, publication support, or engineering performance improvement |
| Overall lead quality | High | A strong niche event for specialized engineering and innovation targeting, though less suitable for broad-volume list building |
| Best use case | High | ABM, technical solution outreach, research partnership development, and high-fit prospect list enrichment |
| Limitations / risks | Medium | Public attendee transparency is limited; many contacts may be non-commercial researchers or students |
| Filter Type | Recommended Filters | Purpose |
|---|---|---|
| Apollo industries | Mechanical or Industrial Engineering; Industrial Automation; Electrical/Electronic Manufacturing; Information Technology & Services; Computer Software; Research; Higher Education; Machinery; Semiconductors; Computer Hardware; Automotive; Aviation & Aerospace | Capture the most relevant automation, controls, robotics, and research-side organizations |
| Departments | Engineering; Research; Operations; Procurement; Information Technology; Program Management; Education | Align targeting with both technical evaluators and institutional buyers |
| Seniority | CXO; VP; Director; Manager; Senior; Owner (only where technical startups are relevant) | Prioritize decision-makers and technical influencers |
| Job titles | Lab Director, Professor, Principal Investigator, Dean, Department Chair, R&D Manager, Engineering Director, Automation Engineer, Robotics Engineer, Technical Program Manager, Procurement Manager, CTO, Chief Scientist | Target roles most likely to influence adoption, procurement, or collaboration |
| Geography | China first; then Jiangsu; Nanjing; Shanghai; Suzhou; Hangzhou; Hefei; Xi'an; plus broader APAC or global academic-technical clusters if international outreach is desired | Concentrate on practical attendance and partnership corridors |
| Employee size | 51–200; 201–500; 501–1,000; 1,001–5,000; 5,001+ | Covers research institutions, universities, industrial firms, and established technology companies |
| Keywords | automation, control systems, robotics, intelligent control, sensors, signal processing, systems modeling, machine learning, artificial intelligence, industrial engineering, autonomous systems | Refine for topical overlap with the event |
| Technologies | Use only if relevant to the offer: machine vision, robotics middleware, CAD/CAE, simulation, embedded systems, edge AI | Improve precision for technical solution providers |
| Revenue range | Optional; not essential for university and research targeting | More useful when focusing on commercial industrial accounts |
| Company type | Public, private, nonprofit/education, research institution | Supports mixed academic and commercial outreach strategies |
| Source | Type | What It Verified | Reliability |
|---|---|---|---|
| ICACR 2026 Official Website | Official event website | Event name, dates, city, country, sponsor/host/supporting institutions, audience description, topical scope, paper publication pathway, submission deadline, and historical continuity | High |
| ICACR 2026 Official Website – Publication History Section | Official historical event record | Prior years listed from 2017 to 2025 and proceedings/indexing continuity | High |
| No current attendee directory published in supplied source text | Verification note | Confirms that attendee counts, buyer lists, speaker totals, and exhibitor totals should not be stated as confirmed | High |
🎯 Selling to this event's audience? Get a free tailored buyer list
Tell us your work email and our AI instantly builds a buyer list matched to 2026 10th International Conference on Automation, Control and Robotics (ICACR 2026) — the best‑fit companies to target, the exact decision‑maker job titles, and the industry filters that fit what you sell.