Robotic Street Sweeper
Sweeping Width: 1580mm
Working Efficiency: 9000-15000 m²/h
Working Time: 4-6h
Garbage Bin Capacity: 160 L
Parameter
|
Dimensions: |
L: 1800mm W: 1540mm H: 930mm |
|
Sweeping Width: |
1580mm |
|
Working Efficiency: |
9000-15000 m²/h |
|
Working Time: |
4-6h |
|
Garbage Bin Capacity: |
160 L |
|
Travel Speed: |
0-14 km/h |
|
Battery Capacity |
48V 100Ah Lithium Battery (Maximum Support for 10 kWh of Electricity) |
|
Tracking Distance: |
No |
|
Fuel: |
Electro |
Product Description
The robotic street sweeper represents a new generation of intelligent cleaning solutions, combining advanced autonomous technology with industrial-grade cleaning performance. Built around a self-developed Vehicle Control Unit (VCU) that seamlessly integrates with autonomous driving systems, this robotic cleaner delivers precision movement control and rapid response capabilities. The platform features generously proportioned liquid and waste storage systems, enabling extended operation cycles between service intervals.
Designed with flexible expansion capabilities, the AutoSweep can be equipped with optional automated charging, water refilling, and waste disposal systems. Available in customizable sizes from 1.2 to 2.2 meters, the platform adapts to various operational environments while maintaining consistent cleaning performance and autonomous navigation reliability.
Feature
|
Advanced Control Architecture |
Proprietary VCU enables precise vehicle dynamics control and low-latency response to navigation commands |
|
Extended Operation Capability |
High-capacity 200L water tank and 160L waste compartment support prolonged cleaning missions |
|
Modular Expansion System |
Pre-configured interfaces support automated maintenance systems for continuous operation |
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Adaptive Size Configuration |
Scalable platform design accommodates different width requirements for varied access limitations |
|
Intelligent Cleaning System |
Multi-mode cleaning with adjustable pressure, brush speed, and suction power based on surface conditions |
|
Comprehensive Navigation Suite |
Multi-sensor perception system ensures safe operation in dynamic environments |
Design Philosophy
- Unified Control Foundation: We developed an integrated VCU that serves as the platform's nervous system, ensuring perfect synchronization between mobility functions and cleaning operations while providing upward compatibility for autonomous driving systems.
- Operational Duration Optimization: Rather than maximizing cleaning speed, we prioritized operational continuity through large-capacity systems and automated maintenance options, significantly reducing human intervention requirements.
- Configurable Footprint Strategy: The scalable platform architecture allows the same core technology to adapt to narrow pathways and expansive areas without performance compromise, providing right-sized solutions for each environment.
Application Scenarios

Industrial Park Maintenance
Scheduled cleaning of roadways, parking areas, and pedestrian pathways in manufacturing and business parks
Nighttime operation with minimal human supervision for uninterrupted daytime activities
Municipal Street Cleaning
Sidewalk and bicycle lane maintenance in urban areas with pedestrian traffic adaptation
Residential street cleaning with noise-optimized operation for early morning hours
Large Estate & Campus Management
Grounds maintenance for university campuses, corporate headquarters, and institutional facilities
Integrated cleaning of sports facilities, recreational areas, and connecting pathways
Tourism & Hospitality Venues
Resort and theme park cleaning during off-hours to maintain aesthetic standards
Large outdoor shopping complex maintenance with crowd-aware navigation
Transportation Infrastructure
Station platform cleaning in public transit systems with precise schedule adherence
Airport apron and ground service area maintenance with strict safety protocol compliance
Frequently Asked Questions
Q: What surfaces can the cleaning system handle?
A: The adjustable system accommodates concrete, asphalt, pavers, and composite surfaces with appropriate pressure and brush settings for each material.
Q: How is the robot deployed and programmed for new areas?
A: Initial deployment uses manual teaching or digital mapping, with web-based management tools for route optimization and schedule adjustments.
Q: What weather conditions can the system operate in?
A: The platform functions in light rain and moderate winds, with automatic return-to-base protocol activated during severe weather alerts.
Q: What maintenance is required for continuous operation?
A: Daily waste disposal and water refilling, weekly component inspections, and monthly comprehensive system checks ensure optimal performance.
Q: How does the automated charging and maintenance system work?
A: Optional docking stations provide conductive charging, pressurized water refill, and waste evacuation through standardized interfaces without human intervention.
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