SCADA
  Supervisory Control
            and Data Acquisition

 

 

 
 

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SCADA (Supervisory Control and Data Acquisition) has enrooted itself in our daily lives in every sphere whether is power control, whether control, factories or mass transit control that now it has become integrated part for a secure working environment. With the increasing realm, the scope also widens and that has happen in this filed too.

With the growth in SCADA system, the number of people who are efficient in management of these systems has also increased or in other words, various SCADA engineer job opportunities have sprung up in recent times. SCADA engineer job profile can be divided into many categories based upon the area they are perfect to handle at.

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Scada

SCADA stands for Supervisory Control and Data Acquisition. SCADA can be thought of as a system which is designed to collect data from the sensors located in remote locations, such as various areas of a plant, factory or at any other remote location and then sending the data collected to a main computer which controls and manages the data.

SCADA has finds its application in wide range of industries from electric power, water management systems, environmental control systems, mass transportation or manufacturing systems.

A SCADA system can be divided into following parts: Signal hardware (for both output as well as input), controllers, user interface (also known as HMI), networks, and software along with communication equipment. In general, SCADA means entire system with the common goal to collect, manage and control the data.

 


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For both types of electricity management/ control systems (both traditional and nuclear), SCADA systems are employed these days. The role of SCADA in the electricity industry is same as SCADA systems play in other control systems.

These act as supervisory systems and they control the way the automated process is controlled. SCADA systems issues predefined response which is set through PLCs (Programmable Logic Circuits) when any parameter value/ state changes beyond permissible levels.

As human supervision is not feasible in this case, thus SCADA systems always prove to be reliable solution.  The benefits of employing SCADA don't come to halt here. These systems store the collected data which prove beneficial for trouble shooting purposes. Without this available data, troubleshooting or locating fault in the circuits would have become a tedious task. The collected data gets stored in database which can be easily accessed for routine checks.
 


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