Active Standard

IEEE 1222-2019

IEEE Standard for Testing and Performance for All-Dielectric Self-Supporting (ADSS) Fiber Optic Cable for Use on Electric Utility Power Lines

The construction, mechanical, electrical, and optical performance, installation guidelines, acceptance criteria, test requirements, environmental considerations, and accessories for a nonmetallic, all-dielectric self-supporting (ADSS) fiber optic cable are covered by this standard. The ADSS cable is designed to be located primarily on overhead utility facilities.

Standards Committee
PE/PSCC - Power System Communications and Cybersecurity
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Status
Active Standard
PAR Approval
2019-02-08
Superseding
1222-2011
Board Approval
2019-11-07
History
Published:
2020-03-31

Working Group Details

Society
IEEE Power and Energy Society
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Standards Committee
PE/PSCC - Power System Communications and Cybersecurity
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Working Group
SC5-WG - Working Group for Fiber Optic Standards
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IEEE Program Manager
Erin Morales
Contact
Working Group Chair
Delavar Khomarlou

Other Activities From This Working Group

Current projects that have been authorized by the IEEE SA Standards Board to develop a standard.


P1591.1

Standard for Testing and Performance of Hardware for Optical Ground Wire (OPGW)

This standard covers the construction, mechanical and electrical performance, test requirements, environmental considerations, and acceptance criteria for qualifying hardware for use with optical ground wire (OPGW).

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P1591.4

Standard for Testing and Performance of Hardware for Optical Fiber Composite Overhead Phase Conductor (OPPC)

This standard describes the construction, mechanical and electrical performance, test requirements, environmental considerations, and acceptance criteria for qualifying hardware for use with Optical Fiber Composite Overhead Phase Conductor (OPPC).

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P1595

IEEE Draft Standard for Testing and Performance for Optical Phase Conductor (OPPC) for Use on Electrical Utility Power Lines

Optical phase conductor (OPPC) is a phase conductor with optical fibers for telecommunication purposes. This standard covers the performance, test requirements, procedures, and acceptance criteria for an OPPC. Functional requirements, such as electrical, mechanical, optical fiber, environmental, and packaging, and test requirements related to design, 4 installation, in-service, and maintenance, including routine tests, are covered.

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Standards approved by the IEEE SA Standards Board that are within the 10-year lifecycle.


1138-2021

IEEE Standard for Testing and Performance of Optical Ground Wire (OPGW) for use on Electric Utility Power Lines

The performance, test requirements, procedures, and acceptance criteria for a transmission line overhead ground wire (a.k.a. shield wire, static wire, earth wire, skywire) with optical fibers commonly known as optical ground wire (OPGW) are covered in this standard. Functional requirements such as electrical, mechanical, optical fiber, environmental, and packaging, and test requirements related to design, installation, in-service, and maintenance, including routine tests are also covered.

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1591.1-2012

IEEE Standard for Testing and Performance of Hardware for Optical Ground Wire (OPGW)

Hardware performance, test requirements, procedures, and acceptance criteria for a transmission line overhead ground wire (also known as shield wire, static wire, earth wire, sky wire) with optical fibers commonly known as optical ground wire (OPGW) are covered. Functional requirements, such as electrical, mechanical, optical fiber, environmental, and test requirements related to design, installation, in service, and maintenance, including routine tests, are included.

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1591.2-2017

IEEE Standard for Testing and Performance of Hardware for All-Dielectric Self-Supporting (ADSS) Fiber Optic Cable

Hardware performance, test requirements, procedures, and acceptance criteria for an all dielectric self-supporting overhead cable with optical fibers are covered in this standard. Functional requirements, such as electrical, mechanical, optical fiber, environmental and test requirements related to design, installation, in-service, and maintenance, including routine tests, are covered.

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1591.3-2020

IEEE Standard for Qualifying Hardware for Helically-Applied Fiber Optic Cable System (WRAP Cable)

Performance and testing specifications for hardware used on helically-applied cable systems (WRAP) in order to standardize testing, simplify procurement specifications, and improve product quality is established in this standard.

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1594-2020

IEEE Standard for Helically-Applied Fiber Optic Cable Systems (WRAP) for Use on Overhead Utility Lines

An all-dielectric fiber optic cable (WRAP) designed to be helically wrapped around a conductor or other messenger on overhead power facilities is covered by this standard.

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These standards have been replaced with a revised version of the standard, or by a compilation of the original active standard and all its existing amendments, corrigenda, and errata.


1222-2003

IEEE Standard for All-Dielectric Self-Supporting Fiber Optic Cable

SUMMARY: This standard covers construction, mechanical, electrical, and optical performance, installation guidelines, acceptance criteria, test requirements, environmental considerations, and accessories for an all-dielectric, non-metallic, self-supporting fiber optic (ADSS) cable. The ADSS cable is designed to be located primarily on overhead utility facilities. This standard provides both construction and performance requirements that insure within the guidelines of the standard that the dielectric capabilities of the cable components and maintenance of optical fiber integrity and optical transmissions are proper.

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1222-2011

IEEE Standard for Testing and Performance for All-Dielectric Self-Supporting (ADSS) Fiber Optic Cable for Use on Electric Utility Power Lines

This standard covers the construction, mechanical, electrical and optical performance, installation guidelines, acceptance criteria, test requirements, and environmental considerations for an all-dielectric self-supporting fiber optic cable designed to be located on overhead electric power utility and telecommunications facilities. This does not include cables used for underground installations.

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1591.3-2011

IEEE Standard for Qualifying Hardware for Helically-Applied Fiber Optic Cable Systems (WRAP Cable)

The purpose of this standard is to establish performance and testing specifications for hardware used on WRAP CABLE systems in order to standardize testing, simplify procurement specifications, and assure product quality.

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1594-2008

IEEE Standard for Helically Applied Fiber Optic Cable Systems (Wrap Cable) for Use on Overhead Utility Lines

This standard covers an all-dielectric fiber optic (wrap) cable designed to be helically wrapped around a conductor or other messenger on overhead power facilities. This covers the mechanical, electrical, and optical performance, installation guidelines, acceptance criteria, test requirements, environmental considerations, packaging and shipping guidelines, and accessories.

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These standards have been removed from active status through a ballot where the standard is made inactive as a consensus decision of a balloting group.


No Inactive-Withdrawn Standards

These standards are removed from active status through an administrative process for standards that have not undergone a revision process within 10 years.


1138-2009

IEEE Standard for Testing and Performance for Optical Ground Wire (OPGW) for Use on Electric Utility Power Lines

This standard covers the performance, test requirements, procedures, and acceptance criteria for a transmission line overhead ground wire (a.k.a. shield wire, static wire, earth wire, skywire) with optical fibers commonly known as optical ground wire (OPGW). An OPGW cable has the dual performance functions of a ground wire with telecommunications capabilities. This standard includes functional requirements such as electrical, mechanical, optical fiber, environmental and packaging, and test requirements related to design, installation, in-service, maintenance, including routine tests. This standard is not intended to supersede any established safety rules, codes, regulations, or practices associated with the use of OPGW cables. It is the responsibility of the user of this standard to establish appropriate safety and health practices and to determine the applicability of regulatory limitations prior to use.

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1138-2009/Cor 1-2014

IEEE Standard for Testing and Performance for Optical Ground Wire (OPGW) Use on Electric Utility Power Lines -- Corrigendum 1: Stress-Strain Temperature Correction, Aeolian Vibration Velocity

This corrigendum corrects the temperature associated with the Stress-Strain clause; and corrects the use of the term velocity in the Aeolian Vibration clause of IEEE Std 1138(TM)-2009.

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