Humanoid Robot MATRIX-1
The future of humanoid robotics
Advanced artificial intelligence in action
MATRIX-1 - Precision and agility of movement
Modern technology from Matrix Robotics
Next-generation humanoid robot
MATRIX-1 - Versatility in applications
MATRIX-1 is a humanoid robot developed by Matrix Robotics, measuring 180 cm and weighing 67 kg. Equipped with advanced artificial intelligence and a 22-degree dexterous hand, it can precisely manipulate objects. Thanks to flexible joints and an innovative housing design, MATRIX-1 mimics human movements with high precision, making it ideal for use in automation and data collection.
Contact us Watch the videoMATRIX-1 - Matrix Hyperintelligence
Humanoid Robot MATRIX-1
The MATRIX-1 robot is the latest humanoid project developed by Matrix Robotics, which in 2025 will leverage its experience gained in educational, service, and logistics projects to create a versatile robotic platform. The goal of the project is to combine advanced bipedal mechanics with modern artificial intelligence solutions so that the robot can function effectively in environments designed for humans - such as offices, hotels, warehouses, or customer service points.
According to the latest materials from the manufacturer, MATRIX-1 is characterized by stable and energy-efficient movement, achieved thanks to lightweight electric actuators placed in the joints and advanced dynamic balance algorithms that process data from sensors such as cameras, accelerometers, and gyroscopes. Basic manipulation functions, designed for carrying documents, handing out leaflets, and opening doors, are optimized for everyday use in service and logistics environments.
Matrix Robotics announces further development of MATRIX-1, which will include the implementation of advanced AI algorithms enabling voice command interpretation, object recognition, and simple interactions with the environment. Thanks to this, MATRIX-1 is to become a universal platform that will successfully support operational processes in many sectors, from education to customer service.
History and Development
Humanoid Robot MATRIX-1
Matrix Robotics is a team of specialists in the fields of mechatronics, automation and artificial intelligence, which has been developing the concept of humanoid robots since 2019. In its early years, Matrix Robotics focused on research into the stabilization of bipedal structures, using lightweight electric actuators and advanced dynamic balancing algorithms. During this period, the project mainly involved creating educational and demonstration robots, which allowed it to gain valuable experience in robot-human interaction.
Early Work on Humanoid Robotics
- In 2019-2020, Matrix Hyperintelligence conducted intensive research into the stabilization of bipedal structures, focusing on the development of lightweight actuators and algorithms that enabled maintaining balance in dynamic conditions.
- The acquired competencies in AI and user interaction evolved into the idea of creating a humanoid that could be used not only in education, but also for commercial and research purposes.
The Birth of the MATRIX-1 Robot and Development Directions
- In 2021, the company officially announced the MATRIX-1 project, presenting the first prototype video materials demonstrating the robot's ability to perform short sequences of movements and maintain balance on small ramps in controlled laboratory conditions.
- From that moment on, the project was systematically developed, and in 2025, MATRIX-1 underwent a series of updates. New iterations include expanding the manipulators, which increases grip precision and enables carrying a wider range of objects. In addition, AI functions have been expanded to include speech recognition and gesture interpretation, and the system for integration with management tools, such as WMS and ERP, has been optimized.
Matrix Robotics plans further work on MATRIX-1, aiming to make the humanoid robot a universal support platform in assistive, reception and logistics environments, as well as a research tool in academic and industrial R&D projects.
Technical Specifications
Technical Specification of the Iron Humanoid Robot
The following information is based on official materials from Matrix Hyperintelligence regarding the MATRIX-1 humanoid robot.
MATRIX-1 is an advanced humanoid robot designed to perform a variety of tasks in dynamic work environments, integrating artificial intelligence and advanced perception systems. Thanks to its modular design, precise actuators, and machine learning algorithms, MATRIX-1 can adapt to various tasks, from automating industrial processes to applications in education and research.
| Parameter | Value | Notes |
|---|---|---|
| Height | 180 cm | Similar to the height of an average person. |
| Weight | 67 kg | Suitable for the robot's stability and mobility. |
| Single arm lifting capacity | 10 kg | Enables the transport of moderately heavy objects. |
| Battery life | Up to 5 hours | Ensures long-lasting autonomous operation. |
| Maximum speed | 7.6 km/h | Enables efficient movement in a human environment. |
| Drive system | Fully electric | Quiet and energy-efficient. |
| AI system | AI inference module with an 8-core processor and integrated GPU | Enables advanced data processing and decision making. |
| Hand | Third generation five-finger hand with 22 degrees of freedom | Provides precise manipulation and the ability to perform complex tasks. |
| Sensors | 8 RGB cameras, optional LIDAR and ultrasonic sensors | Enable advanced perception of the environment and interaction with users. |
| Voice interface | Speech recognition and synthesis, facial expression display | Facilitates communication and issuing commands. |
| Battery | Custom battery pack with a capacity of 2.28 kWh; autonomous charging station | Enables long-lasting operation and easy charging. |
| Microphones | Active noise reduction, echo cancellation | Improves the quality of voice interactions. |
| AI Model | Built-in Vision-Language Model (VLM) | Enables fast visual inference and natural language understanding. |
| Wiring | Integrated cabling | Facilitates modularity and adaptation to various applications. |
| Manipulation model | Fully autonomous manipulation model that learns spatial positions | Enables self-correcting behavior and learning in the environment. |
| Application | Universal humanoid robot | Versatility in various industrial sectors. |
MATRIX-1 is designed for versatile applications in various sectors, offering advanced manipulation capabilities and interaction in a human environment.
MATRIX-1
Applications and Examples of Use
According to Matrix Robotics, the MATRIX-1 robot is intended to bridge the gap between traditional automation based on stationary or wheeled robots and the need for mobility similar to humans. Current solutions in 2025 confirm that MATRIX-1 finds application in various sectors, streamlining daily operational processes thanks to its bipedal mobility and basic manipulation functions. Below are the main areas of application:
Customer Service and Reception.
Greeting Guests and Assisting Staff: MATRIX-1 can function as a reception assistant in hotels, offices, and shopping centers, greeting visitors, handing out flyers, and directing guests to the appropriate departments, which relieves staff and enhances the company's modern image.
Increasing the Attractiveness of the Place: The presence of a humanoid at the reception is also a marketing asset, attracting customers' attention and emphasizing the organization's innovation.
Office and Warehouse Work
Transport of Small Items: Thanks to its bipedal design, MATRIX-1 moves efficiently between building levels, overcoming stairs and narrow passages. The robot can carry documents, envelopes, and small packages, streamlining workflow in offices and warehouses.
Integration with Management Systems: Planned integration with WMS and ERP systems enables automatic receipt of transport orders and reporting of progress, which increases operational efficiency.
Education and R&D Projects
Research Platform: Thanks to the open API interface, MATRIX-1 can be used in academic and research environments, enabling testing of AI algorithms, control systems, and human-robot interaction.
Demonstrations and Workshops: The humanoid attracts attention at conferences and educational events, demonstrating modern technologies and inspiring future engineers and researchers.
Service and Retail Industry
Support in Stores and Service Points: MATRIX-1 can assist staff in moving small products, replenishing goods on shelves, and providing basic information to customers, which contributes to improving the quality of service and operational efficiency.
Marketing Tasks: As a "host" at trade shows and events, the robot can engage visitors, distribute promotional materials, and present the company's offer, strengthening its modern image.
Possible Care Applications (Prospective)
Assistance in Care Centers: In future versions, after expanding AI functions and manipulators, MATRIX-1 may support simple care tasks, such as delivering medication or moving small items in care facilities.
Rehabilitation Support: The robot can assist patients in performing basic rehabilitation exercises to a limited extent, serving as a motivational element in movement therapy.
Thanks to its flexibility, Robot MATRIX-1 is gradually adapted to various working environments. Continuous updates of AI functions, improvements to manipulators, and integration with cloud systems enable ongoing enhancement of its perceptual and communication capabilities. This approach ensures that it MATRIX-1 can effectively support operations in offices, warehouses, service centers, and educational environments, bringing measurable benefits in terms of time savings and increased work efficiency.
Technology and Innovation, Safety
MATRIX-1
Robot MATRIX-1, developed by Matrix Robotics, combines lightweight bipedal mechanics with basic artificial intelligence functions to ensure efficient operation in everyday office and service environments. In 2025, Matrix Robotics introduced a series of updates that enhance the operational efficiency of the humanoid and strengthen its manipulative capabilities. The following presents key technological elements and the manufacturer's approach to safety:
Bipedal Mechanics and Gait Stabilization
- Electric Actuators: The lower limbs of MATRIX-1 use lightweight, efficient electric actuators, enabling stable navigation of stairs, ramps, and narrow corridors. The new generation of actuators is characterized by low energy consumption and high adaptability to changing ground conditions.
- Dynamic Balance: The robot continuously analyzes data from accelerometers, gyroscopes, and depth sensors, dynamically correcting its posture in real time. This allows MATRIX-1 to smoothly react to small obstacles and irregularities, minimizing the risk of falls.
Manipulators and Grippers
- Lightweight Manipulation Functions: The current version of MATRIX-1 is designed to carry light objects such as documents, brochures, or small packages, which is sufficient for performing basic tasks in service and warehouse environments.
- Planned Force Sensors: Matrix Robotics plans to further develop the manipulators, integrating pressure sensors that will enable precise adjustment of grip force to the type of objects being carried, especially when working with delicate objects.
AI Algorithms and Machine Learning
- Environment and Object Recognition: MATRIX-1 uses built-in cameras and machine learning algorithms to identify obstacles and objects in its field of vision. In subsequent versions, the implementation of advanced computer vision functions is planned, enabling a more detailed analysis of the environment.
- Voice Interaction (in development): The company is working on a voice command recognition module that will enable the robot to perform simple commands in one or more languages, which will improve communication in reception and educational environments.
Safe Coexistence with Humans
- Joint Force Limiters: Special safety mechanisms automatically reduce torque in the event of contact with a human, minimizing the risk of injury and damage.
- Collision Detection and E-Stop System: MATRIX-1 monitors any unexpected resistance in limb movement, which enables immediate stopping of the robot. A standard emergency stop button (E-Stop) allows the operator to quickly shut down the drives in critical situations.
Thanks to these advanced technological solutions, Robot MATRIX-1 in 2025 it offers high performance and safety, making it an ideal tool for working in human-designed environments such as offices, warehouses or service spaces.
MATRIX-1
Integration and Compatibility, Personalization and Customization of Solutions
Matrix Robotics focuses on flexible implementation of the MATRIX-1 Robot in various sectors - from services and trade, through education, to light logistics. Current solutions in 2025 confirm that MATRIX-1 was designed with ease of integration with existing IT infrastructure and rapid adaptation to specific operational requirements in mind. Below are the main assumptions regarding the integration, personalization and further development of the humanoid platform:
Open Programming Interface (API)
- Developer Tools: Matrix Robotics plans to provide a rich set of SDKs and comprehensive documentation, which will enable the creation of dedicated applications for controlling MATRIX-1's movement, defining custom task scenarios and integrating with external AI services, such as speech recognition or image analysis, operating in the cloud.
- Flexible Cloud Updates: The robot can regularly receive software updates over the network, which allows for continuous improvement of control algorithms, AI functions and peripheral device support, extending the hardware's life cycle.
Connectivity and Integration with IT Systems
- Wi-Fi, Ethernet: MATRIX-1 is equipped with standard network interfaces, enabling remote monitoring, automatic updating and synchronization with local databases and management systems, such as WMS or ERP.
- Integration with WMS/ERP: It is planned that the robot will be able to receive and execute tasks from warehouse and resource management systems, which automates logistics processes and improves operational efficiency.
Hardware-Software Personalization
- Interchangeable Grippers: MATRIX-1 can be adapted to the specifics of the objects being transported - from small packages, through documents, to small industrial components - thanks to various variants of grippers with variable precision.
- Configurable Sensors: Depending on the customer's needs and the nature of the tasks performed, the robot can be expanded with additional sensors, such as depth sensors, thermal cameras or ultrasonic sensors, which allows for better adaptation to specific operating conditions.
Visual Personalization
- Housing and Branding: In environments where image is highly important (e.g., hotels, events, shopping centers), it is possible to customize the appearance of MATRIX-1 by modifying the color scheme of the housing and adding logos, which strengthens the visual consistency of the company.
- Interactive Panels: Optional touch panels, placed for example in the chest area, allow for the presentation of informational or marketing content, facilitating direct communication with users.
Pilot Programs and Implementation Support
- Tests in Real Conditions: Matrix Robotics cooperates with partners who test MATRIX-1 in real operational scenarios, which allows for continuous adaptation of the robot's functions to actual needs.
- Service and Training: As part of implementations, the company offers support with installation, configuration and dedicated training for operators, enabling a smooth integration of the humanoid into daily work.
Thanks to these solutions, Robot MATRIX-1 It can be easily integrated with existing IT systems and adapted to the specific needs of an organization or research project. This approach enables versatile deployments - from service and logistics applications to educational projects - and supports effective collaboration with personnel while minimizing infrastructure adaptation costs.
MATRIX-1
Benefits for Customers
The MATRIX-1 robot is designed to support employees in their daily, often repetitive or physically demanding tasks, while maintaining human-like mobility. Updates in 2025 confirm that the implementation of MATRIX-1 brings the following benefits in various industries and sectors:
Increased Efficiency and Reduced Staff Workload
- MATRIX-1 takes over tasks related to transporting small items, distributing documents, handing out flyers, and performing simple warehouse operations, allowing employees to focus on more creative and specialized tasks.
- The bipedal design allows the robot to operate effectively in multi-story buildings (e.g., navigating stairs, ramps, narrow corridors) without the need for additional infrastructure installation, which reduces adaptation costs.
Improved Customer Service
- In hotels, receptions, shopping centers, and trade fairs, MATRIX-1 can function as an assistant, greeting guests, providing basic information, directing them to the appropriate departments, and supporting event organization, which enhances the company's modern image.
- Planned speech and image recognition features (implemented gradually in subsequent versions) will enable the robot to conduct elementary interactions with customers, further increasing service appeal and customer engagement.
Integration with IT Systems
- Thanks to the open API interface, MATRIX-1 can be easily integrated with resource management systems (WMS, ERP), enabling automatic order receipt, logistics task execution, and real-time operational report transmission.
- Analysis of data related to robot operation (e.g., distance traveled, number of items transported, task completion time) allows for process optimization and better human resource management.
Education and R&D Platform
- MATRIX-1, equipped with open-source software, is an excellent research platform for universities and laboratories, enabling the testing of artificial intelligence algorithms, motion control, and human-robot interaction.
- The presence of a humanoid robot at scientific conferences and educational events attracts attention, promoting innovative technological solutions and inspiring young engineers and researchers.
Safe Human Interaction
- The use of force limiters in joints, an advanced collision detection system, and an emergency stop button guarantees that MATRIX-1 reacts immediately to unexpected contact, minimizing the risk of injury and property damage.
- The robot, capable of rapidly decelerating its movement within fractions of a second, can comfortably work with personnel in a shared environment without the need for infrastructure upgrades.
Thanks to these solutions, the implementation of the Robot MATRIX-1 This allows for significant optimization of operational processes, improved service quality, and increased work efficiency, which translates into real time and resource savings in various sectors of the economy.
FAQ - 9 frequently asked questions
Humanoid Robot MATRIX-1
Below, we present brief answers to the most frequently asked questions about the MATRIX-1 Robot. If you need additional information, please contact Matrix Robotics or review the full FAQ section.
Currently, the MATRIX-1 project is in the development phase. Matrix Robotics is conducting pilot projects in collaboration with selected partners. Widespread commercial deployment will occur after the completion of testing phases and finalization of the design.
The official price list has not yet been released. The price depends on the configuration, which includes: price depends on the type of grippers, sensors, and AI modules, as well as the scope of implementation support. Please contact Matrix Robotics directly for a detailed offer.
Prototype information indicates that MATRIX-1 can operate for several hours under standard load. The company is working on optimizing energy management and upgrading batteries to extend autonomous operation time.
The current version of MATRIX-1 has been designed to carry light loads, typically weighing up to a few kilograms. The development of a version with greater lifting capacity is being considered, but the current project focuses on precise manipulation of lightweight objects.
The speech recognition functionality is currently in the development phase. The prototype offers basic capabilities for interpreting voice commands (mainly in Chinese and English), and further updates will expand these capabilities.
MATRIX-1 is equipped with joint force limitation systems and collision detection, which automatically react to unintended contact, minimizing the risk of injury. In addition, the robot has an emergency stop button (E-Stop), which allows for immediate shutdown of the drives in critical situations. However, operators should follow basic safety procedures.
MATRIX-1 has been optimized for operation in indoor environments such as offices, warehouses, and service centers. Operation in harsh terrain or extreme weather conditions is not supported in the current version.
Yes, Matrix Robotics offers visual customization options, such as adjusting the color scheme of the housing, adding logos, and the ability to install interactive touch panels, which is especially important in environments with high image requirements.
The implementation of an open API interface is planned, which will allow MATRIX-1 to receive orders and automatically report operational progress in warehouse management (WMS) and enterprise resource planning (ERP) systems.
More questions?
If you would like to learn more about humanoid robots, we invite you to browse our complete FAQ section. You will find additional questions, detailed instructions, and helpful tips there.
Why NexaRob?
Your Trusted Partner in the Field of Humanoid Robotics - Knowledge, Passion, and Innovation
NexaRob closely monitors the progress and projects carried out by Matrix Robotics, including the MATRIX-1 robot. Our goal is to help companies and institutions fully utilize humanoid robotics so that it brings real business benefits in practice and supports personnel in their daily activities. Thanks to a team of specialists in mechatronics, AI, system integration, and project management, NexaRob provides comprehensive services - from needs assessment and implementation planning to service support and further development of solutions.
- Expertise in Humanoid Robotics NexaRob collaborates with numerous manufacturers and research centers, which allows us to thoroughly evaluate the range of humanoid robots and identify the most suitable models depending on the work environment and customer objectives. In the context of the MATRIX-1 robot, we can assist in adapting the robot to specific tasks, providing expert knowledge and practical guidance.
- Individual Approach to Projects We carefully analyze the processes and conditions prevailing in a given organization to propose an optimal strategy for implementing the robot. We customize the functions of manipulators, AI tools, or communication systems so that the humanoid effectively supports the team while remaining safe and intuitive to operate.
- Implementation Support and Service NexaRob provides comprehensive implementation support: from robot installation and configuration to training and service. We are ready to answer questions about the operation of the humanoid, solve potential technical problems, and ensure continuous software updates.
- Innovation and Further Development - Through participation in projectsIf you are considering introducing the MATRIX-1 robot into your environment or have an idea for pilot projects with humanoids, contact NexaRob. Our experts will assess the potential benefits and challenges, present ready-made solutions, and propose an implementation plan tailored to the specifics of your business and organizational processes.
NexaRob is constantly looking for new partnerships and customers interested in implementing bipedal robots, such as MATRIX-1, in various sectors of the economy. We believe that by combining the knowledge and resources of companies, manufacturers, and technology providers, we can achieve a real breakthrough in the area of human-machine collaboration.
Automate Your Business with NexaRob - Contact Us!
Join NexaRob and Together Let's Develop Humanoid Robotics
Do you want to become our Partner?
Together with humanoid robot manufacturers, we create turnkey solutions that include hardware, software, and comprehensive support. Our joint projects deliver measurable results in the service, education, and light logistics sectors.
United States
China
Japan
Germany
India
United Kingdom
France
Italy
Canada
South Korea
Brazil
Australia
Spain
Mexico
Indonesia
Netherlands
Saudi Arabia
Turkey
Switzerland
Taiwan
Poland
Sweden
Belgium
Thailand
Ireland
Austria
Norway
Israel
United Arab Emirates
Argentina
South Africa
Denmark
Philippines
Singapore
Malaysia
Colombia
Bangladesh
Egypt
Chile
Finland
Vietnam
Portugal
Czech Republic
Romania
New Zealand
Peru
Greece
Ukraine
Slovakia
Hungary
Slovenia
Croatia
Serbia
Bulgaria
Estonia
Latvia
Lithuania
Iceland
Luxembourg
Malta
Cyprus
Morocco
Algeria
Tunisia
Nigeria
Kenya
Ethiopia
Ghana
Tanzania
Uganda
Angola
Senegal
Qatar
Kuwait
Oman
Pakistan
Sri Lanka
Nepal
Kazakhstan
Uzbekistan
Mongolia
Russia
Cambodia
Myanmar
Laos
Fiji
Papua New Guinea
Venezuela
Ecuador
Uruguay
Paraguay
Bolivia
Costa Rica
Panama
Dominican Republic
Guatemala
Cuba
Jordan
Lebanon
Iran
Additional countries in Europe
These countries are hidden in readable mode so that the map is not cluttered. Click on a country to open contact information, email, and a description of the area of cooperation.
Additional countries in Asia
These countries are hidden in readable mode so that the map is not cluttered. Click on a country to open contact information, email, and a description of the area of cooperation.
Additional countries in the Americas
These countries are hidden in readable mode so that the map is not cluttered. Click on a country to open contact information, email, and a description of the area of cooperation.
Additional countries in Africa
These countries are hidden in readable mode so that the map is not cluttered. Click on a country to open contact information, email, and a description of the area of cooperation.
Additional countries in Oceania
These countries are hidden in readable mode so that the map is not cluttered. Click on a country to open contact information, email, and a description of the area of cooperation.
Albania
Andorra
Belarus
Bosnia and Herzegovina
Montenegro
Liechtenstein
North Macedonia
Monaco
Moldova
San Marino
Afghanistan
Armenia
Azerbaijan
Bahrain
Bhutan
Brunei
Georgia
Iraq
Yemen
Kyrgyzstan
North Korea
Maldives
Syria
Tajikistan
East Timor
Turkmenistan
Antigua and Barbuda
Bahamas
Barbados
Belize
Dominica
Grenada
Guyana
Haiti
Honduras
Jamaica
Nicaragua
Saint Kitts and Nevis
Saint Lucia
Saint Vincent and the Grenadines
El Salvador
Suriname
Trinidad and Tobago
Benin
Botswana
Burkina Faso
Burundi
Cape Verde
Chad
Democratic Republic of the Congo
Djibouti
Eritrea
Eswatini
Gabon
Gambia
Guinea
Guinea-Bissau
Equatorial Guinea
Cameroon
Comoros
Congo
Lesotho
Liberia
Libya
Madagascar
Malawi
Mali
Mauritania
Mauritius
Mozambique
Namibia
Niger
Central African Republic
Rwanda
Seychelles
Sierra Leone
Somalia
Sudan
South Sudan
Togo
Ivory Coast
Sao Tome and Principe
Zambia
Zimbabwe
Kiribati
Micronesia
Nauru
Palau
Samoa
Tonga
Tuvalu
Vanuatu
Marshall Islands
Solomon Islands
Why Partner with NexaRob?
Joint Investments in Innovation
Together with humanoid manufacturers, we create turnkey solutions that include hardware, software, and comprehensive support. Our joint projects deliver measurable results in the service, education, and light logistics sectors.
Synergy of Competencies
NexaRob brings together specialists in engineering, AI, IT integration, and project management. This allows us to cover the entire implementation chain - from selecting appropriate solutions, through installation, to maintenance and robot development.
Global Perspectives
We operate in cooperation with partners from different parts of the world, adapting humanoids to local requirements and market specifics. We can also help scale projects, supporting subsequent implementations and additional robots in the client's network.
We are Looking for Partners in the Following Areas:
- Production and Distribution of Humanoid Robots Through joint efforts, we create tailored solutions - combining the manufacturer's capabilities, NexaRob's development and service expertise, and the requirements of end-users.
- AI and IoT Technologies We integrate humanoids with cloud services, speech and image recognition algorithms, which allows robots to achieve an increasingly high level of autonomy and interaction with people.
- Automation and Logistics Systems Humanoid robots, in combination with classic automation methods, can fill the gap wherever human-like mobility and the ability to navigate through difficult areas are needed.
Let's Join Forces
If you are planning to implement a humanoid robot in your organization or want to expand your knowledge about the capabilities of the PX5 Robot and other Xpeng Motors solutions, we invite you to collaborate with NexaRob. Together, we will define an implementation scenario, assist with integration, and provide the necessary service support so that you can fully leverage the potential of humanoid robotics. Introduce your company to the future by focusing on innovation and safe automation with NexaRob!
Interesting facts from around the world
The OTTO robot received the prestigious IERA 2025 award for innovation in factory logistics.
The pioneering OTTO robot, developed by Rockwell Automation, was awarded the IERA 2025 Award for its groundbreaking achievement.
TIAGo Base: A flexible mobile robot for transforming internal logistics
TIAGo Base, an autonomous mobile robot from PAL Robotics, offers flexible solutions for internal logistics. Thanks to
How does the industrial sector collaborate with the Oxford Robotics Institute?
Oxford Robotics Institute offers membership for companies in the industrial sector who want direct access
AI-powered robots help logistics combat labor shortages.
In the face of a global labor shortage, especially among truck drivers and warehouse workers, logistics is increasingly
How to study robotics at the Oxford Robotics Institute?
The Oxford Robotics Institute (ORI) offers doctoral and research studies in the field of autonomous robotics, with an emphasis on