SWIP is an autonomous industrial water management platform designed for continuous monitoring, automatic process control and engineering insight. The platform continuously measures critical water quality parameters, evaluates operating conditions against predefined engineering rules, automatically executes corrective control actions when required, and immediately informs plant operators while recording every operational event. By combining industrial instrumentation, process automation and engineering analytics, SWIP improves water treatment performance, increases equipment reliability and reduces operating costs across industrial facilities.
SWIP is designed to respond automatically to abnormal operating conditions. Instead of waiting for manual intervention, the platform executes predefined control actions while keeping operators fully informed.
Sensors continuously monitor industrial water conditions.
SWIP compares process values against engineering operating limits.
Automatic corrective actions are executed according to predefined control rules.
Operators receive real-time notifications while all events are recorded.
Real-time autonomous monitoring and automatic process control.
Real-time operational overview of industrial water system performance.
The following example illustrates how SWIP automatically responds to abnormal industrial water conditions without waiting for manual intervention.
Cooling Water pH = 9.45 Allowed Range = 8.50 – 9.20
SWIP identifies that the measured value exceeds the predefined engineering limit.
The acid dosing pump is automatically activated according to predefined operating rules.
A real-time notification is displayed on the engineering dashboard while the corrective action is being executed.
The event, corrective action and process values are permanently recorded for engineering analysis and reporting.
Cooling Water pH = 8.96 Process returned to the normal operating range.
SWIP continuously supervises industrial water systems and automatically executes predefined control strategies to maintain stable operating conditions.
Automatically adjusts chemical injection according to predefined operating limits.
Detects abnormal conditions and immediately notifies plant operators.
Monitors industrial water conditions without interruption.
Records every measurement, alarm and control action for engineering analysis.
Communicates with PLC, DCS and SCADA systems using industrial protocols.
Designed to integrate additional sensors, instruments and future intelligent modules.
SWIP continuously transforms industrial water data into engineering insight, helping operators make faster, more informed operational decisions.
Industrial sensors continuously measure critical water quality parameters.
Operational data is acquired through industrial controllers and communication networks.
SWIP organizes and analyzes operational information into meaningful engineering insight.
Operators receive actionable information to improve efficiency, reliability and water performance.
Periodic measurements often delay operational decisions.
Rapid changes can increase corrosion, scaling and equipment damage.
Chemical consumption, water losses and inefficient operation increase costs.
Operators need continuous access to reliable engineering information.
Real-time monitoring of critical industrial water parameters provides operators with continuous visibility into process performance.
SWIP transforms measurement data into actionable engineering insights that support faster and better operational decisions.
Improve chemical dosing strategies, optimize water consumption and enhance overall plant efficiency.
Continuous monitoring of industrial water quality using advanced field instrumentation.
Reliable acquisition of operational process data from industrial equipment and sensors.
Transforms operational data into engineering decisions while supporting automatic rule-based process control.
Integration with PLC, DCS and SCADA systems through standard industrial communication protocols.
Reduce chemical consumption, minimize manual inspections and optimize maintenance activities.
Support early identification of abnormal operating conditions before they become costly failures.
Optimize industrial water usage and support sustainable resource management.
Provide engineers and operators with reliable information for faster operational decisions.
Cooling water systems, boiler water and auxiliary process monitoring.
Produced water, utility systems and process water monitoring.
Industrial water optimization across process and utility units.
Monitoring industrial water systems supporting production processes.
SWIP has been developed as a modular industrial platform capable of integrating field instrumentation, industrial controllers and supervisory systems into a unified engineering environment. The platform supports scalable deployment, allowing additional sensors, communication modules and future intelligent services to be integrated without major system redesign.
Digital and analog industrial sensors measuring critical water quality parameters.
PLC-based data acquisition and equipment control with reliable industrial operation.
Standard industrial communication including Modbus RS485 with expandable connectivity.
Centralized visualization for monitoring operational conditions and supporting engineering decisions.
Continuous online monitoring minimizes dependence on periodic manual measurements.
Operators gain continuous awareness of industrial water conditions.
More informed operational decisions support optimized chemical usage.
Better monitoring helps reduce corrosion and scaling risks affecting critical assets.
SWIP has been developed as a scalable engineering platform. Future releases may incorporate advanced analytics, AI-assisted engineering insight, digital twin integration and predictive operational support while preserving compatibility with existing installations.
Interested in SWIP or our industrial solutions? Our engineering team is ready to discuss your project.
Pardis Hooshmand FARDAD Co.
No. 32, Alley 3
Seyed Jamaluddin Asadabadi St.
Shiraz, Iran