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IRRIGATION AUTOMATION

The automated irrigation system is a complete SCADA system.

The automated irrigation system is a complete SCADA system, which is developed using industry standard hardware, software and communication modules.

The system is mainly based on National Instrument’s technologies, particularly using NI CompactRIO, Single Board RIO, NI RMC hardware and LabVIEW software. There can be as many Weather Stations as needed. Each cRIO-100 and sbRIO-200 RTUs can be connected to one of any Weather Stations as per the configuration of the operator.

Case Study

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REMOTE FACILITY MONITORING SYSTEM

This is a web-based SCADA system designed for monitoring of environmental and electrical parameters of remote facilities like data centers.

This is a web-based SCADA system designed for monitoring of environmental and electrical parameters of remote facilities like data centers. It is combined with remote monitoring of the electrical network apparatus, operating under a single and integrated application software and a state-of-art field data acquisition hardware capable of implementing the functions internally from a single box. The SCADA part is implemented using third-party web technologies like ASP.Net along with NI Measurement Studio. The RTUs are based on National Instrument’s state of the art industry standard hardware and software technologies.

Case Study

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SUBSTATIONS’ AUTOMATION SCADA SYSTEM

This is an advanced power quality monitoring and events detection SCADA system.

This is an advanced power quality monitoring and events detection SCADA system. It is combined with remote monitoring and control of the electrical network apparatus, operating under a single and integrated application software and a state-of-art field data acquisition hardware capable of implementing both functions internally from a single box. The system is centralized and provides a remote web monitoring with clients. The system is mainly based on National Instrument’s state of the art industry standard hardware and software technologies.

Case Study

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FLEET MANAGEMENT SYSTEM

This is a remote monitoring SCADA system for fleet management.

This is a remote monitoring SCADA system for fleet management.
The system consists of a SCADA server at the central station, and remote driver terminals installed on the vehicles.
The SCADA server tracks the associated vehicles, their position on the Google Map at any given time, and can give new assignments to the drivers. The operator can track the statuses for each assignment along with the readings from up to 12 digital sensors, which can be installed on the vehicle, at any given time.
This system is to address the needs of companies to reduce the risks related to vehicles and to add effectivity to their daily operations.

HOME AUTOMATION

The proposed system could be applied to any existing residential areas, to add more savings in energy, water and gas consumption and to provide comfort to habitants.

The proposed system could be applied to any existing residential areas, to add more savings in energy, water and gas consumption and to provide comfort to habitants. The system will automatically care of the security system, HVAC control, lighting control, irrigation system, surveillance system, gate and door control.

The system uses industrial computer and information technology to control home appliances and features.

Systems can range from simple remote control of lighting through to complex computer/micro-controller based networks with varying degrees of intelligence and automation. Home automation is adopted for reasons of ease, security and energy efficiency.

RAIL STRESS MONITORING SYSTEM

Тhis Rail Stress Monitoring SCADA system monitors the rails between 70-100m points on the rail.

Тhis Rail Stress Monitoring SCADA system monitors the rails between 70-100m points on the rail. Specific mathematical algorithms help to detect the abnormal fluctuations. This way, the system helps to prevent rail buckling and rail breaks.
The system allows to identify the potential problems on the rails, and prevent further accidents by repairing the damaged parts or by de-stressing the rails.
The measuring Smart nodes communicate wirelessly and can be supplied either from renewable energy sources or from mains power.
The system will make the maintenance cost-effective and save lives preventing fatal accidents.

STREET LIGHT MANAGEMENT SYSTEM

The system is a wireless monitoring and control SCADA system based on National Instruments’ industry standard hardware and software technologies.

The system is a wireless monitoring and control SCADA system based on National Instruments’ industry standard hardware and software technologies. The system’s main purpose is automatically and manually (local/remote) switching and diming of streetlights from the control center based on schedules and events to reduce street light energy consumption and associated CO2 emissions. The system also detects lamp failures and provides remote reporting options using a geographical information system (GIS) and a web-based application.

TRANSFORMER MONITORING SYSTEM

This is a monitoring and control system for transformers.

This is a monitoring and control system for transformers. The system is designed on National Instruments' technologies and platforms. This system can be used in Transmission and Distribution facilities. The combined multifunctional features are giving the system to be friendly with modern Energy Smart Grid solutions. Through the multi-protocol communication support it can be integrated into any industry standard SCADA system.
The system provides advanced power quality analysis for the transformer and has the ability to store the store the calculated data into onboard storage for data historian purposes and Alarms/Events logging. The system includes a second level microprocessor relay protection function, which increases the stability, safety level and reliability of transformer and substation itself. Addi­tionally the system has asset monitoring functions to monitor health conditions of transformer through the vibrations, sounds and temperature parameters.
This system is a solution of making a regular transformer a Smart one.

WATER FLOW MEASUREMENT SYSTEM

When it comes to measure the water flow in high-pressure pipelines, the traditional flow measurement mechanisms are no longer applicable.

When it comes to measure the water flow in high-pressure pipelines, the traditional flow measurement mechanisms are no longer applicable.
The existing mechanisms for high-pressure water flow measurement have many drawbacks and limit their usage in various applications.
The offered water flow measurement system is designed to address all the needs of high-pressure water flow measurement applications, and avoid all the drawbacks existing in traditional mechanisms.
The offered solution can be used in hydropower plants and pumping stations.

Case Study

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HYDRO POWER PLANT AUTOMATION SYSTEM

HPP automation system is a SCADA system which makes it possible to control and monitor the operations of the HPPs at any level.

HPP automation system is a SCADA system which makes it possible to control and monitor the operations of the HPPs at any level. The system is fully distributed and combines state of the art industrial technology hardware and software.
The system is mainly based on National Instrument’s industry standard hardware and software technology.
The system architecture is very flexible in terms of software and hardware expansion. The system is compatible with any communication media like 3G, 4G, fiber optic, radio, etc.

Case Study

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SMART WATER

The Smart Water System is made up of smart nodes distributed over the entire water network, plus the GIS-based SCADA which provides overall control over the entire infrastructure.

The Smart Water System is made up of smart nodes distributed over the entire water network, plus the GIS-based SCADA which provides overall control over the entire infrastructure. The system is a “Smart Grid” idea incorporated into water infrastructure. This is a new and innovative way of making the use of water resources more optimal and secure.

NETSIMULATOR CURRENT ADAPTOR

The NetSimulator Current Adaptor component is used to generate real current flow from simulated signal in 3phase power networks.

The NetSimulator Current Adaptor component is used to generate real current flow from simulated signal in 3phase power networks. It can be used together with Multipurpose IED, Relay Protection and other components.

Case Study

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NETSIMULATOR VOLTAGE ADAPTOR

The NetSimulator Voltage Adaptor component is used to generate real voltage from simulated signal in 3phase power networks.

The NetSimulator Voltage Adaptor component is used to generate real voltage from simulated signal in 3phase power networks. It can be used together with Multipurpose IED, Relay Protection and other components.

Case Study

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