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Factors To Consider Before Installing Disturbance Analyzers And Power Recorders

Commercial units often make use of tools such as power recorders and disturbance

analyzers to facilitate quick fault clearance and assistance in achieving a reliable and secure power supply. These tools typically work by providing segmented readings of the faulty recordings which are made by identifying the sudden changes in the characteristics of the electrical power supply.

In addition to disturbance analysis, these power recorders also help monitor the performance of the protective relays through these disturbances.

The Evolution of Power Analyzers and Recorders

Power recorders and analyzers have evolved a lot since the first ink chart recorders, to the digital recording tools that are employed today. Prior to the dawn of power fault monitoring and recording tools, engineers largely depended on very limited information such as relay targets and visual evidence to determine the extent of damage in any power system.


While these systems offered valuable information for the purpose of analysis of power faults and protective systems, their inability to monitor all types of analogue channels proved to be their biggest limitation.

New age digital tools such as AC power analyzers have the capacity to monitor large quantities of analogue and binary inputs. The latest disturbance and power analyzers come with enhanced capabilities in recording, and micro-processing relays which further simplify the process of maintaining quality in power supply for engineers.

Things to Consider while Employing a Disturbance Analyzer

Engineers must take into consideration a number of factors while installing disturbance monitoring and analysing devices at a plant.

1.There should be complete clarity on the type of event that needs to be monitored. Different equipment needs to be installed for the purpose of recording power system related faults, monitoring power swings in a system and verifying the performance of the protection system.

2.After gaining clarity on the event type, the engineer is required to take into consideration factors such as the frequency of sampling, length of recording, types of event triggers as well as the analogue and binary inputs that need to be supervised.

3.Having identified these factors, the engineers can now select the best disturbance analyzer or power recorded which offers minimal limitations and errors because of the characteristics of the sensory tools.

Regardless of the type of equipment that is finally employed, engineers must have complete clarity of these factors that are crucial to make the correct engineering decisions which consequently facilitate enhanced and undisturbed power supply at commercial units.

by: Sam Jacob Thomas
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