Short answer
Leverage existing commercial robotic platforms and focus on developing the necessary software and hardware interfaces for remote operation and data feedback.
- Field
- Commercial Production
- Source
- International Journal of Online and Biomedical Engineering (iJOE) (2014)
- Method
- System Integration and Customization
- Evidence
- Strong effect
Commercial off-the-shelf robots can be adapted for web-based remote operation, enabling broader access to hands-on experimental learning. This commercial production research insight is drawn from a 2014 study published in International Journal of Online and Biomedical Engineering (iJOE). Using System integration and customization, researchers explored how this design variable affects real-world outcomes. The key design takeaway: Leverage existing commercial robotic platforms and focus on developing the necessary software and hardware interfaces for remote operation and data feedback.
Web-enabled remote control of commercial robots enhances experimental accessibility
Commercial off-the-shelf robots can be adapted for web-based remote operation, enabling broader access to hands-on experimental learning.
International Journal of Online and Biomedical Engineering (iJOE) · 2014
Key Findings
- 01A commercial mobile robot (RoombaCreate®) can be successfully adapted for remote laboratory use.
- 02Integration requires customization for automated movement, obstacle avoidance, wireless control, and real-time video streaming.
- 03Web-based control allows for remote operation of physical experiments.
Application
Design takeaway
Leverage existing commercial robotic platforms and focus on developing the necessary software and hardware interfaces for remote operation and data feedback.
How to apply
Identify a commercial robot suitable for your experimental needs and research the available APIs or modification possibilities for wireless control, sensor integration, and data streaming.
Project actions
- 01Consider the processing power and communication capabilities of the base commercial product.
- 02Document all modifications and custom code thoroughly for reproducibility.
Method & Evidence
Variables
Strengths & Limitations
Strengths
- +Utilizes readily available commercial hardware, potentially reducing development costs.
- +Addresses the growing need for remote access to practical learning experiences.
Limitations
The proprietary nature of some commercial products might limit the extent of customization possible.
Reliability & validity
The study's validity relies on the successful implementation and demonstrated functionality of the customized system. Reliability would be assessed by the consistency of remote control and data transmission over multiple sessions.
Think critically
What are the ethical considerations when allowing remote control of physical hardware, especially in an educational context?
Design Principles
"Adaptability of Commercial Off-the-Shelf (COTS) hardware for specialized applications can accelerate development and reduce costs."
This approach democratizes access to specialized equipment, allowing students and researchers to conduct experiments remotely. It reduces the need for physical presence, saving time and resources while expanding educational opportunities beyond geographical limitations.
What This Means for Your Design
You can take a robot you can buy and change it so people can control it over the internet for experiments.
How to use in your project
- 1.Use this research to justify the selection of a commercial product as a base for your design, highlighting its adaptability for remote functionality.
Add to My Project
Quick Cite
Paragraph starter
The integration of commercial off-the-shelf hardware, such as the RoombaCreate® robot, into remote laboratory systems demonstrates a viable strategy for enhancing accessibility to practical experimentation. By customizing the robot for wireless control, automated navigation, and real-time feedback, complex experimental setups can be made available remotely, reducing the need for physical infrastructure and broadening participation in scientific and engineering education.
Source
International Journal of Online and Biomedical Engineering (iJOE)
RoombaCreate® for Remote Laboratories
journal · 2014
View sourceQuestions About This Research
- What does the research say about web-enabled remote control of commercial robots enhances experimental accessibility?
- Leverage existing commercial robotic platforms and focus on developing the necessary software and hardware interfaces for remote operation and data feedback. Evidence: International Journal of Online and Biomedical Engineering (iJOE) (2014).
- Why does "Web-enabled remote control of commercial robots enhances experimental accessibility" matter for design?
- This approach democratizes access to specialized equipment, allowing students and researchers to conduct experiments remotely. It reduces the need for physical presence, saving time and resources while expanding educational opportunities beyond geographical limitations.
- How can designers apply this research?
- Leverage existing commercial robotic platforms and focus on developing the necessary software and hardware interfaces for remote operation and data feedback.
- What were the main findings?
- A commercial mobile robot (RoombaCreate®) can be successfully adapted for remote laboratory use.. Integration requires customization for automated movement, obstacle avoidance, wireless control, and real-time video streaming.. Web-based control allows for remote operation of physical experiments.
- What research method was used?
- System Integration and Customization.
- How strong is the evidence?
- Evidence strength is rated Strong effect, based on a 2014 journal from International Journal of Online and Biomedical Engineering (iJOE).
- What should I do differently in my next project?
- Identify a commercial robot suitable for your experimental needs and research the available APIs or modification possibilities for wireless control, sensor integration, and data streaming.
- What are the limitations?
- The specific customizations required may vary significantly depending on the chosen commercial robot and the desired experimental functionalities.