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Process Overview
This is an example of the Beetle cleaning robot installed by Big Wave Robotics (Marosol) for floor cleaning management of the LX Pantos Cheongna Center, covering a total area of 1,000 pyeong (1 floor).
We implemented automated cleaning and maintenance management for the floors of a logistics warehouse of approximately 1,000 pyeong using Beetle, and have implemented an unmanned automatic system through the Beetle's outstanding cleaning performance and the automatic charging station.
Project Background and Objective
Unmanned cleaning using autonomous driving, cameras, sensors, etc.
A cleaning robot that performs cleaning according to a set schedule
Increased cleaning efficiency due to cleaning staff and division of labor
Remote control using SOLlink
Components
| Robot | Industrial Cleaning Robot beetle |
|---|---|
| Peripherals | SOLlink Remote Monitoring and Job Reporting System |
Workflow
| STEP 1. | Select a designated cleaning zone |
|---|---|
| STEP 2. | Set the wet cleaning mode |
| STEP 3. | Start cleaning |
| STEP 4. | Return to the charging dock after job |
| STEP 5. | Set a desired cleaning time schedule |
| STEP 6. | Start cleaning |
| STEP 7. | Return to the charging dock after job. |
โป The content provided by Bigwave Robotics is protected under U.S. and Canadian copyright and intellectual property laws. Unauthorized reproduction, distribution, or use of this content is strictly prohibited.
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Process Overview Two cleaning robots in Terminal 1 and six in Terminal 2, operating in each area of Incheon Airport, were verified for operational stability. Based on the verification of operational stability, the goal is to expand the introduction of cleaning robots across all areas of Incheon Airport. Warranty Period 1 Year Performance Year 2024 Project Duration 30 days Project Background and Objectives Disadvantages of Previous Robots The robot does not have an automatic water supply and drainage system, so personnel must manually carry and dispose of the water. When full, the robot can weigh hundreds of pounds, making it difficult to manage because of the heavy load. Proposed water supply and drainage options include workstation and SOLlink remote control. The Gausium cleaning robot supports automatic charging and features automatic water supply and drainage through the workstation. If the water supply and drainage functions are unavailable due to insufficient facility coordination, the kitchenette can be set as a maintenance point via SOLlink, allowing the robot to be remotely moved to that location for easier management.
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Process Overview
This is an example of the Beetle cleaning robot installed by Big Wave Robotics (Marosol) for floor cleaning management of the LX Pantos Cheongna Center, covering a total area of 1,000 pyeong (1 floor).
We implemented automated cleaning and maintenance management for the floors of a logistics warehouse of approximately 1,000 pyeong using Beetle, and have implemented an unmanned automatic system through the Beetle's outstanding cleaning performance and the automatic charging station.
Project Background and Objective
Unmanned cleaning using autonomous driving, cameras, sensors, etc.
A cleaning robot that performs cleaning according to a set schedule
Increased cleaning efficiency due to cleaning staff and division of labor
Remote control using SOLlink
Components
| Robot | Industrial Cleaning Robot beetle |
|---|---|
| Peripherals | SOLlink Remote Monitoring and Job Reporting System |
Workflow
| STEP 1. | Select a designated cleaning zone |
|---|---|
| STEP 2. | Set the wet cleaning mode |
| STEP 3. | Start cleaning |
| STEP 4. | Return to the charging dock after job |
| STEP 5. | Set a desired cleaning time schedule |
| STEP 6. | Start cleaning |
| STEP 7. | Return to the charging dock after job. |
โป The content provided by Bigwave Robotics is protected under U.S. and Canadian copyright and intellectual property laws. Unauthorized reproduction, distribution, or use of this content is strictly prohibited.










