Power and renewables

Precision Time Protocol testing

Precision Time Protocol functional testing for ethernet switches

Functional testing for ethernet switches

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Precision Time Protocol (PTP) functional testing for ethernet switches

Precision Time Protocol (PTP) functional testing for ethernet switches

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With the introduction of IEC 61850, the demand for substation automation applications that require precise time synchronization of voltage and current measurements is growing.

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Precision Time Protocol (PTP) functional testing for ethernet switches

About:

With the introduction of IEC 61850, the demand for substation automation applications that require precise time synchronization of voltage and current measurements is growing.

Precision Time Protocol (PTP) functional testing for ethernet switches

Request a copy

Fill out the form below to receive a free copy by email

(optional)
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Please note that by subscribing to updates, newsletters and other regular email distributions, you must be opted in to receiving informational emails from DNV. By submitting this form, you agree to this and accept that you are opted in, and you understand that you can opt-out at any time using the links in the email you receive as well as visiting the email preference centre.

With the introduction of IEC 61850, the demand for substation automation applications that require precise time synchronization of voltage and current measurements is growing.
 
DNV executes the tests accordingly to its internally developed test procedures and supported by highly specific test tools, all aligned to the need of the substation time synchronization systems implemented in conformance with IEC 61850-9-3 and IEEE 1588. These tests can be executed on Ethernet switches that integrate PTP transparent clock and boundary clock functions.

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Precision Time Protocol (PTP) functional testing for ethernet switches

Precision Time Protocol (PTP) functional testing for ethernet switches

About:

With the introduction of IEC 61850, the demand for substation automation applications that require precise time synchronization of voltage and current measurements is growing.