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R&D Area 06

Leadership, Education & Technology Transfer

Technical leadership that moves research capability into teams, laboratories, curricula, project-management systems, workshops and international engineering communities.

TECHNOLOGY TRANSFER SYSTEMLeadership & Transfer
01RESEARCHscience / engineering / emerging technology
02LABORATORYtools / experiments / simulation platforms
03CURRICULUMABET outcomes / project-based learning
04TEAMSmentoring / hybrid delivery / supervision
05DISSEMINATIONworkshops / talks / conferences
06IMPACTindustry collaboration / validated projects

Research capability is transferred through laboratories, teams, curricula and industry links.

2 primary systems

Problems, Methods and Outcomes

Telecommunications and research coordination, hybrid project supervision, project management, professional certificates, curriculum work, workshops, mentoring, IEEE-related project development, invited lectures, conferences, awards and service.

P132024-2026

Multidisciplinary Mechatronics Project Development

Problem
Multidisciplinary student engineering requires a repeatable path from requirements and models to working prototypes and defensible validation.
Solution
A hybrid project-development framework combining conventional engineering control, Agile practices, technical gates and ABET-aligned outcomes.
Evidence / result
35 multidisciplinary projects coordinated
hybrid deliveryABETprototypingtechnical supervision
View system
P212025-2026

Telecommunications Programme and Laboratory Modernization

Problem
Telecommunications education needed stronger alignment between modern RF systems, embedded technologies, computational engineering and industry outcomes.
Solution
A programme-modernization effort integrating curriculum, ABET-aligned outcomes, communications laboratories, student research and external collaboration.
Evidence / result
approximately 70% reported anechoic-panel cost reduction
telecommunicationsABETlaboratoriesindustry partnership
View system

Cross-Disciplinary Connections

Connected Work

Related work in which this area provides a supporting method, technology or scientific context.

P14NVIDIA Digital Twins, Simulation and Physical AIOmniverse, Isaac Sim and Jetson integrated into engineering simulation, workshops, project supervision and academic-industry collaboration.P15Smart Realities: Spatial Computing and Connected SystemsApplied R&D across intelligent sensing, spatial computing, AR/XR, IoT and hardware-software integration.P16NanoXR: Nanoscale Spatial Computing InitiativeAn XR direction connecting nanotechnology, scientific visualization and interactive engineering communication.P19Engineering Project Delivery at PetroEcuadorPMI-aligned feasibility, engineering coordination and technical documentation improved project workflow and software cost.P22Wireless Sensor Networks for Agricultural MonitoringA connected-sensing research contribution focused on epidemic monitoring in agricultural environments.P23Autonomous Mobile-Robot LogisticsDeep motion-planning research for autonomous mobile robots developed through engineering supervision and conference dissemination.P25AR-Enabled Educational PublicationA bilingual educational book connected print, augmented reality and cross-functional digital production.P27Applied AI, Machine Learning and Deep Learning for MechatronicsProject-based AI and digital-systems education connecting learning algorithms, scientific code, embedded hardware and real mechatronics scenarios.P28Sand-Walking Robotic Turtle PrototypeA conservative mechatronics concept/prototype for terrain mobility using bio-inspired turtle locomotion on sand.P29Deep Learning Cycling Posture and Sports Computer VisionAI, deep learning and computer-vision work for posture and movement analysis in cycling and sports scenarios.