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Homepage>IEEE Standards>29 ELECTRICAL ENGINEERING>29.240 Power transmission and distribution networks>29.240.99 Other equipment related to power transmission and distribution networks>IEEE 1378-2022 - IEEE Guide for Commissioning Line-Commutated Converter (LCC) High-Voltage Direct-Current (HVDC) Converter Stations and Associated Transmission Systems
Released: 28.04.2023

IEEE 1378-2022 - IEEE Guide for Commissioning Line-Commutated Converter (LCC) High-Voltage Direct-Current (HVDC) Converter Stations and Associated Transmission Systems

IEEE Guide for Commissioning Line-Commutated Converter (LCC) High-Voltage Direct-Current (HVDC) Converter Stations and Associated Transmission Systems

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Standard number:IEEE 1378-2022
Released:28.04.2023
ISBN:978-1-5044-8781-8
Pages:45
Status:Active
Language:English
DESCRIPTION

IEEE 1378-2022

This guide provides general guidelines for commissioning high-voltage direct-current (HVDC) converter stations and associated transmission systems. These guidelines apply to Line-Commutated Converter (LCC) HVDC systems utilizing 6-pulse or 12-pulse thyristor valve converter units (see Figure 1) operated as a two-terminal HVDC transmission system or an HVDC back-to-back system. Excluded from this guide are guidelines for commissioning multi-terminal HVDC systems, synchronous compensators, static synchronous compensators, and static var compensators.

The purpose of this guide is to provide guidance and assistance for developing an appropriate commissioning test plan for LCC HVDC converter stations and associated transmission systems. Users of this guide will find that an HVDC commissioning plan will need to be tailored to fit the requirements and applications of the specific project.

Revision Standard - Active. General guidelines for commissioning high-voltage direct-current (HVDC) converter stations and associated transmission systems are provided. These guidelines apply to HVDC systems utilizing 6-pulse or 12-pulse thyristor-valve converter units operated as a two-terminal HVDC transmission system or an HVDC back-to-back system.