
2026 7th International Conference on Robotics Systems and Automation Engineering (RSAE 2026)
🎯 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 7th International Conference on Robotics Systems and Automation Engineering (RSAE 2026) — the best‑fit companies to target, the exact decision‑maker job titles, and the industry filters that fit what you sell.
About this event
2026 7th International Conference on Robotics Systems and Automation Engineering (RSAE 2026)
Dates: June 26-28, 2026
Venue: Shanghai, China
Organized by: Co-sponsored by IEEE and Shanghai University of Engineering Science (SUES), hosted by School of Mechanical and Automotive Engineering, SUES, China
About the Conference
The 2026 7th International Conference on Robotics Systems and Automation Engineering (RSAE 2026) is a premier academic and industrial event focused on advancing the field of robotics and automation. Robots, in their various forms such as agricultural robots, autonomous mobile robots, industrial robots, and surgical robots, have seen tremendous growth in recent years. This conference aims to bridge the gap between academia and industry by providing a platform for academicians, professionals, and researchers to exchange innovative ideas, research results, and practical solutions in all aspects of robotics systems and automation engineering.
Conference Objectives
The main objectives of RSAE 2026 are:
- To strengthen collaboration between academia and industry.
- To provide a forum for exchanging research results, innovative ideas, and solutions.
- To cover a wide range of topics including Control Theory and Applications, Intelligent Mechatronics, Control Devices and Instruments, Semi-Autonomous Systems, Humanoid Robots, and more.
Conference Features
RSAE 2026 will feature:
- Plenary and panel sessions.
- Technical papers presented in parallel sessions.
- Opportunities for laboratory visits and discussions.
Target Audience
Who attends: The event attracts a diverse group of attendees, including:
- Academicians and researchers in robotics, automation, and related fields.
- Professionals and engineers from industries involved in robotics and automation.
- Students and educators in mechanical and automotive engineering, computer science, and artificial intelligence.
- Representatives from organizations focused on control systems, machine learning, and advanced manufacturing.
Geographic Reach
Location: Shanghai, China
Attendee Geographic Origin: While the conference is held in China, it has a global reach with participants from academia and industry worldwide. The event is expected to draw attendees from Asia, Europe, North America, and other regions, given its affiliation with IEEE and its focus on international collaboration.
Estimated Attendance
Expected Total Footfall: The conference is anticipated to attract several hundred participants, including researchers, professionals, and students. The exact number may vary, but similar international conferences in this field typically draw between 300 to 500 attendees.
Key Focus Areas and Buyer Engagement
Key Focus Areas:
- Robotics Systems and Automation Engineering.
- Control Theory and Applications.
- Intelligent Mechatronics and Control Devices.
- Semi-Autonomous Systems and Humanoid Robots.
- Artificial Intelligence, Machine Learning, and Mechanical Engineering.
Buyer Engagement Angle: The conference offers a unique opportunity for companies and organizations to engage with potential buyers, including:
- Academic institutions seeking partnerships for research and development.
- Industry professionals looking for innovative solutions and technologies.
- Students and educators interested in the latest advancements and career opportunities.
- Organizations focused on automation and robotics in various sectors such as manufacturing, healthcare, and services.
Sample Buyer Companies
| Priority | Company | Website | Best Title to Target | Why This is a Good Buyer Fit |
|---|---|---|---|---|
| 1 | Toyota Motor Corporation | https://www.toyota.com/ | Robotics and Automation Manager | Major player in robotics and automation for manufacturing. |
| 2 | Siemens AG | https://www.siemens.com/global/en.html | Automation Solutions Director | Leader in industrial automation and control systems. |
| 3 | ABB Ltd | https://www.abb.com/ | Robotics Division Manager | Global provider of robotics and automation solutions. |
| 4 | Universal Robots | https://www.universal-robots.com/ | Product Development Manager | Specializes in collaborative robots for various industries. |
| 5 | Intel Corporation | https://www.intel.com/ | AI and Robotics Research Lead | Invests heavily in AI and robotics research and development. |
| 6 | John Deere | https://www.deere.com/ | Agricultural Robotics Manager | Integrates robotics in agricultural equipment and solutions. |
| 7 | Medtronic | https://www.medtronic.com/ | Medical Robotics Director | Develops robotic solutions for medical and healthcare applications. |
| 8 | Fanuc Corporation | https://www.fanuc.com/ | Industrial Robotics Manager | World leader in industrial robotics and automation systems. |
| 9 | General Electric | https://www.ge.com/ | Automation and Control Systems Manager | Provides automation solutions for various industrial sectors. |
| 10 | BMW Group | https://www.bmwgroup.com/en.html | Manufacturing Automation Manager | Utilizes advanced robotics in automotive manufacturing processes. |
Job Profiles, Industries, and Event Type
Best Job Profiles to Target:
- Robotics and Automation Engineers
- Control Systems Engineers
- Research Scientists in AI and Machine Learning
- Academic Researchers and Professors
- Industry Professionals in Manufacturing and Healthcare
- Students in Mechanical, Automotive, and Computer Engineering
Best Industries to Target (Based on Apollo Industry List):
- Industrial Automation
- Mechanical or Industrial Engineering
- Computer Software
- Biotechnology
- Healthcare / Medical Devices
- Manufacturing
- Education Management
- Higher Education
Event Type: International Academic and Industrial Conference focused on Robotics Systems and Automation Engineering.
Client Product Fit Note
To provide a tailored list of potential buyers, please share your client's website. This will help us understand the specific products or services offered and align them with the most relevant attendees at RSAE 2026. For example:
- If your client offers robotics and automation solutions for manufacturing, we would target companies like Toyota, Siemens, and FANUC.
- If your client specializes in AI and machine learning for robotics, we would focus on companies like Intel and research institutions.
- If your client provides educational software or tools for robotics, we would target academic institutions and educators.
Final Recommendation
RSAE 2026 is a highly relevant event for companies and organizations involved in robotics, automation, and related technologies. With its global audience and focus on both academic and industrial applications, it offers a unique platform for networking, collaboration, and business development. We recommend participating in the conference to engage with potential buyers, showcase your products or services, and stay updated on the latest advancements in the field.
Data sheet
| Event Name | 2026 7th International Conference on Robotics Systems and Automation Engineering (RSAE 2026) |
| Event Date | June 26–28, 2026 |
| Event Status | Upcoming |
| Venue | Shanghai University of Engineering Science (host institution referenced by event materials). Specific on-campus room/building not publicly confirmed in the provided official website text. |
| City | Shanghai |
| State / Region | Shanghai Municipality |
| Country | China |
| Organizer | Co-sponsored by IEEE and Shanghai University of Engineering Science (SUES); hosted by School of Mechanical and Automotive Engineering, SUES |
| Official Event Website | rsae.org |
| Event Type | International academic and industry conference |
| Primary Category | Industrial Engineering |
| Secondary Applicable Categories | IT & Technology; Science & Research; Electric & Electronics |
| Audience Reach | Global, with strong China-based academic and engineering participation expected |
| Estimated Attendance / Expected Footfall | Attendance figure not publicly confirmed by the organizer. |
| Attendance Data Reliability | Low for numeric attendance; high for event dates, host city, sponsor/host institutions, and topical scope based on official event website |
| Main Purpose of Event | To provide a forum for researchers, academicians, and professionals to exchange research results, practical solutions, and collaboration opportunities across robotics systems and automation engineering. |
RSAE 2026 is an international conference focused on robotics systems, automation engineering, control theory, intelligent mechatronics, control devices, semi-autonomous systems, and humanoid robotics. Based on the official event website, it is co-sponsored by IEEE and Shanghai University of Engineering Science, with hosting support from the School of Mechanical and Automotive Engineering at SUES in Shanghai, China.
The event matters primarily as a research-to-industry networking platform rather than a mass-market trade show. Its value for business development lies in identifying academic labs, engineering departments, robotics researchers, automation solution developers, industrial innovation teams, and technical decision-makers who influence future technology adoption, pilot programs, publications, collaboration partnerships, and advanced component or systems procurement.
| Buyer / Attendee Segment | Typical Organizations | Buying Role or Influence | Relevance to Exhibitors / Suppliers |
|---|---|---|---|
| University researchers and professors | Engineering schools, robotics laboratories, automation institutes | Influence research equipment, lab systems, software, sensors, and collaboration choices | Strong for lab equipment vendors, simulation tools, motion control, sensing, and AI platforms |
| PhD students and postdoctoral researchers | Academic departments and research centers | Technical evaluators and hands-on users; often recommend tools and platforms | Useful for early adoption, trial usage, and technical community penetration |
| Automation engineering professionals | Industrial automation firms, robotics integrators, manufacturing R&D teams | Technical evaluators, project leads, solution specifiers | Relevant for components, controls, embedded systems, test systems, and integration support |
| Industry-academia collaboration managers | Universities, innovation offices, technology transfer units | Influence partnerships, sponsored research, pilot deployments, and joint development | High value for partnership-driven outreach and co-development offers |
| Mechanical and automotive engineering faculty | Host and peer engineering schools | Influence curriculum tools, research purchasing, and demonstration platforms | Good fit for robotics kits, instrumentation, digital twins, controllers, and software licenses |
| AI and machine learning researchers | AI labs, control systems groups, intelligent systems programs | Shape technical stack preferences and evaluation criteria | Relevant for compute platforms, AI software, machine vision, data platforms, and simulation |
| Technical paper authors and presenters | Universities, institutes, corporate R&D groups | High subject-matter influence, moderate direct budget authority | Best for thought-leadership outreach, demos, and specialist solution messaging |
| Professional associations and publication stakeholders | IEEE-related communities, academic publishing stakeholders | Influence visibility, standards awareness, and technical ecosystem relationships | Useful for credibility-building and ecosystem positioning rather than direct short-cycle sales |
| Geographic Area | Likely Attendee Origin | Buyer Concentration | Notes |
|---|---|---|---|
| Shanghai | Local universities, engineering schools, robotics labs, innovation teams | High | Host-city concentration likely strongest due to university venue and lower travel barriers |
| Yangtze River Delta | Attendees from Jiangsu, Zhejiang, and neighboring industrial corridors | High | Major manufacturing and automation cluster relevant to robotics engineering |
| Other China technology hubs | Researchers and engineers from Beijing, Shenzhen, Guangzhou, Wuhan, Chengdu, Xi'an and similar centers | Medium to High | Likely national participation due to conference scope and IEEE-linked positioning |
| Asia-Pacific | Regional academics, researchers, and technical authors | Medium | International designation and visa information suggest non-China participation |
| Global research community | Paper authors, peer reviewers, presenters, and collaboration-seeking professionals | Medium | International reach is credible; exact country mix not publicly confirmed in provided materials |
| Reach Level | Assessment | Explanation |
|---|---|---|
| Global | Primary classification | The event is explicitly positioned as an international conference and includes visa information, IEEE-related publication visibility, and international paper solicitation. |
| National | Secondary practical reach | China-based researchers and engineering institutions are likely to make up a substantial share of physical attendees given host location and university backing. |
| Buyer Company / Organization | Buyer Type | Why It Is Relevant | Website | Best Job Titles to Target | Evidence Level |
|---|---|---|---|---|---|
| Shanghai University of Engineering Science (SUES) | Host university / institutional buyer | Confirmed co-sponsor and host ecosystem; relevant for research equipment, lab systems, robotics platforms, and academic partnerships | sues.edu.cn | Dean, Professor, Lab Director, Procurement Officer, Research Program Director | Confirmed Current-Year Participant |
| School of Mechanical and Automotive Engineering, SUES | Department-level technical buyer / host unit | Official hosting school directly aligned with robotics, automation, mechanical systems, and control engineering topics | sues.edu.cn | Department Chair, Professor, Laboratory Director, Research Coordinator | Confirmed Current-Year Participant |
| IEEE | Co-sponsoring professional organization | Confirmed co-sponsor; relevant mainly for standards visibility, publication ecosystem, and technical community engagement | ieee.org | Program Chair, Technical Committee Member, Conference Operations Manager | Confirmed Current-Year Participant |
| Priority | Job Title / Function | Department | Seniority Level | Why This Role Matters |
|---|---|---|---|---|
| 1 | Laboratory Director | Research / Engineering | Director | Direct influence over robotics platforms, instrumentation, software environments, and lab purchasing priorities |
| 2 | Professor / Principal Investigator | Research / Academic | Senior | Often controls research direction, grant usage, and preferred technical vendors or collaboration choices |
| 3 | Research Program Director | R&D / Innovation | Director | Relevant for sponsored research, joint development, and advanced systems procurement |
| 4 | Automation Engineer | Engineering | Manager / Individual Contributor | Key technical evaluator for control systems, actuators, integration, and testing tools |
| 5 | Robotics Engineer | Engineering / Product Development | Manager / Individual Contributor | Primary user and evaluator of robot subsystems, perception tools, simulation platforms, and middleware |
| 6 | Mechanical Engineering Department Chair | Academic Administration | Director / Head | Influences departmental vendor relationships, budgets, collaborations, and program-level technology adoption |
| 7 | Procurement Officer | Procurement / Administration | Manager | Important for institutional purchasing compliance and supplier onboarding |
| 8 | CTO / Head of R&D | Executive / R&D | C-Level / VP | Relevant where corporate R&D teams participate for technology scouting and research collaboration |
| Priority | Apollo Industry | Why It Fits the Event | Best Buyer Use Case |
|---|---|---|---|
| 1 | Mechanical or Industrial Engineering | Direct alignment with robotics systems, automation engineering, and mechatronics | Industrial robotics systems, controls, test platforms, engineering services |
| 2 | Industrial Automation | Core market for control devices, autonomous systems, and automation workflows | Automation hardware, motion control, integration software |
| 3 | Research | Academic and applied research institutions are primary participants | Lab instrumentation, grants-based selling, sponsored research partnerships |
| 4 | Higher Education | Host and peer universities are central to attendance | University procurement, department partnerships, curriculum and lab solutions |
| 5 | Electrical/Electronic Manufacturing | Sensors, embedded systems, controls, and electronics are relevant to conference topics | Component sourcing, controller systems, robotics electronics |
| 6 | Computer Software | Robotics control, simulation, AI, and autonomy rely heavily on software stacks | Simulation tools, robotics middleware, analytics, digital twins |
| 7 | Information Technology & Services | Supports AI, data processing, systems integration, and platform deployment | IT-enabled robotics solutions and integration partnerships |
| 8 | Machinery | Relevant to industrial robotics and mechanical systems deployment | Production robotics, test rigs, mechanical subassemblies |
| 9 | Automotive | Host school includes automotive engineering; robotics and automation are highly relevant to automotive systems | Automation pilots, intelligent manufacturing, autonomous systems R&D |
| 10 | Computer Hardware | Embedded and edge compute platforms support robotics research and deployment | GPU/edge devices, controllers, robotics compute kits |
| Metric | Figure | Status | Source / Basis | Notes |
|---|---|---|---|---|
| Estimated total footfall | Attendance figure not publicly confirmed by the organizer. | Not Confirmed | No numeric attendance data in provided official website text | No estimate stated to avoid unsupported claims |
| Exhibitor count | Not publicly confirmed | Not Confirmed | No exhibitor directory in provided official text | Conference appears content-led rather than expo-led |
| Buyer count | Not publicly confirmed | Not Confirmed | No buyer program, hosted buyer data, or attendee segmentation counts in provided source | Likely a mixed academic/professional audience rather than formal buyer delegation |
| Speaker count | Not publicly confirmed | Not Confirmed | Official text mentions plenary, panel, and parallel paper sessions only | No official speaker roster provided in the source text |
| Sponsor count | 2 confirmed co-sponsoring organizations named | Confirmed | Official website text | IEEE and Shanghai University of Engineering Science are explicitly named as co-sponsors |
| Historical attendance | Not available in provided source text | Historical / prior-year evidence unavailable | No prior-year count cited in supplied official content | Would require official history page details not included in the source extract |
| Focus Area | Typical Buyer Need | Buyer Engagement Opportunity | Relevant Supplier Offering |
|---|---|---|---|
| Robotics systems | Platform evaluation, subsystem research, experimentation, and prototyping | Technical demos, academic pilots, collaboration proposals | Robotics platforms, actuators, controllers, middleware, development kits |
| Automation engineering | Control systems optimization and engineering validation | Use-case workshops, engineering consultations, technical content outreach | Automation software, PLC-adjacent systems, control components, integration services |
| Control theory and applications | Modeling, algorithm testing, precision improvement | Research-grade software trials and benchmark collaboration | Simulation tools, control software, hardware-in-the-loop systems |
| Intelligent mechatronics | Integrated mechanical, electrical, and software system development | Cross-disciplinary engineering partnerships | Sensors, edge compute, embedded electronics, integration frameworks |
| Semi-autonomous systems | Decision support, navigation, autonomy testing, safety controls | Pilot programs and research co-authorship opportunities | Autonomy stacks, perception systems, navigation software, AI compute |
| Humanoid robots | Advanced actuation, perception, interaction, and control research | High-value thought leadership and technical partnership discussions | High-performance components, machine vision, simulation, AI software |
| Academic-industry collaboration | Joint research, sponsored projects, technology validation | Partnership outreach to labs, departments, and technical committees | Research sponsorships, lab deployments, developer programs, grants alignment |
| Factor | Assessment | Explanation |
|---|---|---|
| Buyer relevance | Medium | Strong for research-led and technical solution selling; weaker for short-cycle commercial purchasing compared with a pure trade show. |
| Decision-maker availability | Medium | Principal investigators, lab directors, and professors can be influential, though budget authority may sit with universities or corporate R&D structures. |
| Data collection potential | Low to Medium | No current-year attendee or exhibitor list was publicly confirmed in the provided source material. |
| Apollo targeting potential | High | The event maps well to technical roles in research, higher education, industrial automation, robotics, controls, and engineering organizations. |
| Geographic targeting potential | High | Shanghai and the Yangtze River Delta provide a strong regional engineering and manufacturing cluster for focused outreach. |
| Best outreach approach | High | Use technical thought leadership, collaboration offers, pilot proposals, and research-use messaging rather than generic product pitches. |
| Overall lead quality | Medium to High | Best for innovation pipeline building, academic partnerships, and future technical buyer development. |
| Best use case | High | Ideal for targeted B2B outreach into robotics research, engineering labs, university departments, and advanced automation R&D teams. |
| Limitations / risks | Medium | Limited public attendee disclosure reduces direct attendee-list building confidence. This is more suitable for buyer profiling and Apollo-based prospecting than for guaranteed attendee confirmation. |
| Filter Type | Recommended Filters | Purpose |
|---|---|---|
| Apollo industries | Mechanical or Industrial Engineering; Industrial Automation; Research; Higher Education; Electrical/Electronic Manufacturing; Computer Software; Information Technology & Services; Machinery; Automotive; Computer Hardware | Build a robotics and automation-focused prospect universe aligned to event themes |
| Departments | Engineering; Research; Information Technology; Operations; Procurement; Education | Prioritize technical evaluators and institutional decision influencers |
| Seniority | C-Level; VP; Director; Head; Manager; Senior | Focus on budget holders, lab leaders, and strategic technical buyers |
| Job titles | Laboratory Director, Professor, Principal Investigator, Research Director, Robotics Engineer, Automation Engineer, Control Systems Engineer, Mechatronics Engineer, Head of R&D, CTO, Department Chair, Procurement Officer | Reach the strongest-fit technical and procurement-side stakeholders |
| Geography | Shanghai; China; East China; Jiangsu; Zhejiang; broader APAC where relevant | Mirror likely event travel radius and high-density automation clusters |
| Employee size | 51–200; 201–500; 501–1,000; 1,001–5,000; 5,001+ | Capture both university-scale institutions and established engineering organizations |
| Keywords | robotics, automation, intelligent mechatronics, control systems, autonomous systems, humanoid robots, machine learning, motion control, industrial robot, robot lab | Refine toward event-relevant organizations and roles |
| Technologies | Use if available: AI/ML stack, simulation software, CAD/CAE, embedded systems, industrial control technologies | Identify advanced technical environments with stronger robotics maturity |
| Revenue range | Use selectively for commercial targets; not essential for higher education and research institutions | Useful when segmenting corporate automation and hardware buyers |
| Company type | Public Company; Private Company; Educational Institution; Nonprofit where applicable | Separate university partnership targets from commercial engineering buyers |
| Source | Type | What It Verified | Reliability |
|---|---|---|---|
| RSAE 2026 Official Website | Official event website | Confirmed conference name, dates, city, country, co-sponsors, hosting institution, event scope, publication information, and general conference structure | 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 7th International Conference on Robotics Systems and Automation Engineering (RSAE 2026) — the best‑fit companies to target, the exact decision‑maker job titles, and the industry filters that fit what you sell.