PLUVA

Asia's First Cloud-Based Autonomous Driving Solution for Agricultural Machinery
an Autonomous Driving Solution that Leads Innovation in Agriculture.
As Asia's first cloud-based autonomous driving solution for agricultural machinery, it offers increased productivity, reduced working hours, lower operating costs, and maximum convenience.
It is an autonomous driving kit that can be easily installed on existing tractors, rice transplanters, and riding cultivators regardless of model or brand allowing farmers to perform farming tasks more efficiently.
It supports precise positioning using RTK-GPS and multiple driving modes (straight, reverse, turning, auto U-turn, etc.), and evolves continuously through cloud connectivity and OTA (Over-The-Air) updates.
PLUVA auto Key Point
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High reliability through domestic manufacturing
Research, production, and core component localization in Korea.
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Compatible with various agricultural machinery
Steering-wheel-based machines such as tractors, rice transplanters, and riding cultivators.
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Paid RTK-GPS service
Differentiated by uninterrupted ultra-high precision.
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Multiple functions for field operations
Automatic/semi-automatic turning, straight driving, and reverse driving.
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Precise control using satellite maps
Seamless operation even in flooded paddies and nighttime work.
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Nationwide dealership network established
Professional in-house managers providing after-sales service.
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Supports both low- and high-speed modes
Wide speed range—tractors: 0.77–14 km/h, rice transplanters: 0.77–6 km/h.
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Half-price for additional tractor installations
Cost-effective use with detachable main controller.
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It enables autonomous driving when installed on existing agricultural machinery.
- By installing the PLUVA auto kit, autonomous driving is possible regardless of brand or model.
- It can be used with various machinery such as tractors, rice transplanters, and riding cultivators.
- A custom bracket is provided, making it easy to attach to most agricultural machinery with steering wheels.
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It Enables Precise Operations Using RTK-GPS.
- By leveraging LTE-based network RTK technology, it performs highly precise operations with an error range of just 1–2 cm.
- It receives correction data from the national land information platform to generate even more accurate work paths.
- It provides more stable straight, reverse, turning, and auto U-turn functions compared to conventional autonomous agricultural machinery.
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IMU Sensors Ensure Stable Driving Performance.
- The machinery's current posture is monitored every 50ms, and the autonomous driving algorithm is adjusted accordingly.
- Stable driving is maintained even on slopes or uneven terrain.
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It supports OTA (Over-The-Air) wireless updates.
- Whenever new features are added, updates are provided wirelessly, ensuring optimal performance at all times.
- Through ongoing R&D, it continues to offer more advanced autonomous driving capabilities.
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High-precision straight driving
- RTK-GPS-based high-precision straight driving helps maintain consistent work patterns.
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Automatic U-turn and turning modes
- Even at the field edges, it automatically adjusts direction and finds the optimal route.
- It optimizes the work area to maximize land utilization.
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Reverse and multiple path options
- Various driving modes can be selected to match the task at hand.
- It goes beyond simple straight driving to apply more flexible movement patterns.
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With cloud integration, all data can be stored and analyzed.
- Work data is saved in real time, automatically generating optimal paths for repeated tasks.
- Work history analysis boosts productivity and maximizes operational efficiency.
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AWS cloud systems enable integrated data management.
- Operation records, work data, and maintenance history of agricultural machinery can all be viewed and analyzed in one place.
- Integrating data from various machinery supports more optimized operations.
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IoT-based smart farming management is possible.
- Various sensors enable real-time monitoring of machinery status.
- Functions include work deviation prevention, emergency detection, remote monitoring, and control.
Review
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It Maximizes Productivity.
- Automated machinery operation shortens working hours and increases productivity.
- It addresses labor shortages and helps build a smarter agricultural environment.
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It Reduces Operating Costs.
- Autonomous driving optimizes fuel consumption and reduces maintenance costs.
- Work data enhances the efficiency of farming operations.
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It Leads the Future of Agriculture.
- It transforms existing agricultural machinery into autonomous machines with innovative technology.
- Continuous updates unlock new possibilities for agricultural automation.
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