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Serbia | FJD ATS-C and GEOline Valve Improve Corn Herbicide Spraying Efficiency and Chemical Control

Serbia is one of Europe’s key corn-producing regions, where large-scale field operations require high efficiency and precise chemical application.


However, traditional herbicide spraying methods often struggle with inconsistent pressure control, variable working speeds, and chemical overuse — especially in large and uneven fields.


To address these challenges, Serbian farmers adopted the FJD ATS-C Precision Sprayer Controller, integrated with OEM valve systems such as GEOline, enabling closed-loop flow control and significantly improving spraying consistency across corn fields.


Operational Challenges in Traditional Spraying

Before adopting precision spraying technology, herbicide application in corn fields faced several key issues:

1. Inconsistent Application at Variable Speed

Spraying performance often fluctuated due to changing tractor speeds, leading to:

  • Uneven chemical distribution
  • Over-application in slow zones
  • Under-application in high-speed zones

2. Pressure Instability

Traditional spraying systems struggled to maintain stable pressure in real time, resulting in:

  • Irregular atomization quality
  • Reduced herbicide effectiveness
  • Higher chemical consumption

3. High Chemical Waste

Due to a lack of precise control, chemical usage efficiency remained low, resulting in significant cost losses in large-scale operations.


Solution: FJD ATS-C × GEOline Closed-Loop Control System

The integration of FJD ATS-C with GEOline Valve enables a fully automated closed-loop spraying system designed for precision agriculture applications.

Core Functions

  • Variable Rate Spraying Control: Automatically adjusts flow rate based on real-time vehicle speed to maintain consistent application per hectare.
  • Precise Flow Regulation: Maintains a stable target application rate of 180 L/ha, ensuring consistent output across all operating conditions.
  • Stable Pressure Management: The system maintains constant 4 bar pressure, ensuring uniform chemical atomization.
  • Real-Time Monitoring Interface: ATS-C displays key operational data including:
    • Flow rate
    • Pressure level
    • Sprayed area
    • Application status
  • 5-Section Independent Control: Supports simultaneous management of up to five spray sections, improving efficiency in large-field operations.
  • High Precision Control Accuracy: The system maintains application deviation within <3% under controlled test and field conditions, ensuring reliable consistency.



Performance Improvements in Field Operations

With the integration of ATS-C and GEOline Valve, corn herbicide spraying operations in Serbia achieved significant improvements:

  • Higher Application Consistency

Precise closed-loop control ensures uniform chemical distribution across varying terrain and speed conditions.

  • Reduced Chemical Consumption

Compared with traditional spraying methods, chemical usage was reduced by approximately 15%.

  • Improved Operational Efficiency

Automation of flow and section control reduces operator workload and improves field productivity.

  • Stable Spray Quality

Constant pressure control ensures uniform atomization, improving herbicide effectiveness.



Precision That Matters in Large-Scale Corn Production

In large corn fields, small inefficiencies can quickly scale into significant cost losses. By combining real-time flow adjustment with multi-section control, the ATS-C Precision Sprayer Controller ensures that every liter of herbicide is used effectively, improving both economic efficiency and agronomic outcomes.



Conclusion

The FJD ATS-C × GEOline system demonstrates how precision spraying technology can transform herbicide application into large-scale corn farming. By enabling real-time flow control, stable pressure management, and multi-section automation, the system helps farmers achieve higher efficiency, lower chemical waste, and more consistent field performance. FJD ATS-C ensures that every liter of herbicide is used where it counts—supporting smarter, more efficient, and more sustainable crop protection practices.



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