ANSI ATIS 0600328-2018 Protection of Telecommunications Links from Physical Stress and Radiation Effects and Associated Requirements for DC Power Systems (A Baseline Standard).pdf
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1、 AMERICAN NATIONAL STANDARD FOR TELECOMMUNICATIONS ATIS-0600328.2018 Protection of Telecommunications Links from Physical Stress and Radiation Effects and Associated Requirements for DC Power Systems (A Baseline Standard) ATIS-0600328.2018 ii Foreword The information contained in this Foreword is no
2、t part of this American National Standard (ANS) and has not been processed in accordance with ANSIs requirements for an ANS. As such, this Foreword may contain material that has not been subjected to public review or a consensus process. In addition, it does not contain requirements necessary for co
3、nformance to the Standard. The Alliance for Telecommunication Industry Solutions (ATIS) serves the public through improved understanding between providers, customers, and manufacturers. The Sustainability in Telecom: Energy and Protection (STEP) Committee formerly the Network Interface, Power, and P
4、rotection Committee (NIPP) engages industry expertise to develop standards and technical reports for telecommunications equipment and environments in the areas of energy efficiency, environmental impacts, power and protection. The work products of STEP enable vendors, operators and their customers t
5、o deploy and operate reliable, environmentally sustainable, energy efficient communications technologies. STEP is committed to proactive engagement with national, regional and international standards development organizations and forums that share its scope of work. ANSI guidelines specify two categ
6、ories of requirements: mandatory and recommendation. The mandatory requirements are designated by the word shall and recommendations by the word should. Where both a mandatory requirement and a recommendation are specified for the same criterion, the recommendation represents a goal currently identi
7、fiable as having distinct compatibility or performance advantages. Suggestions for improvement of this document are welcome. They should be sent to the Alliance for Telecommunications Industry Solutions, STEP, 1200 G Street NW, Suite 500, Washington, DC 20005. At the time of initiation or issuance o
8、f the letter ballot for this document, STEP, which was responsible for its development, had the following leadership: E. Gallo, STEP Chair (Ericsson) J. Fuller, STEP Vice-Chair (AT an accumulation of granular ice tufts on the windward sides of exposed objects that is formed from supercooled fog or c
9、loud and built out directly against the wind; crust or incrustation. 3.1.5 Telecommunications link: A communications facility or channel connecting environmentally controlled centers, including feeder and local distribution plant, in the telecommunications network. Examples of these include but are
10、not necessarily restricted to: optical-fiber cable, coaxial cable, metallic cables, transmitting and receiving antenna or towers, manholes, pedestals, splice cases, repeater cases, and cable entrance facilities. 3.2 Abbreviations a unit of pressure or stress equal to one Newton per square meter PE P
11、olyethylene RMS Root-Mean-Square SAP Super Absorbent Polymer TIA Telecommunications Industry Association ATIS-0600328.2018 5 4 Protection Measures Overview 4.1 General The baseline physical protection measures are classified into the following areas: Vibration Water penetration Temperature and fire
12、Lightning Wind and ice Rodents, birds, and insects Construction Corrosion Aerial Corrosion Buried Telecommunications power Radiation effects Each stress type has protective measures with reference to informative Annexes as necessary. 5 Vibration 5.1 General Vibration, or motions of plant and links,
13、may be caused by sources either external or internal to the surrounding environment. Vibration may be categorized as either continuous or transient. Continuous vibration is associated with rotating machinery and is generally a long-duration event. Fatigue may be associated with continuous vibration.
14、 The amplitude of vibration is greatest when the equipment or structure has a resonant frequency at the same frequency as the excitation sources. Transient vibrations are generally short duration, temporary motions caused by earthquakes (see Annex L), blasting, or vehicles. The energy levels associa
15、ted with transient vibrations generally build quickly to maximum values, and then decay rapidly to negligible values over a time period dictated by the sources and damping (energy dissipation) characteristics of a given site. 5.2 Vibration-Related Requirements Telecommunications links shall remain o
16、perational after sustaining forces caused by continuous or transient sources of normally-encountered vibrations. If there is physical damage to the links, it shall not be such as to disrupt service, and shall be limited to repairs that can be made without disruption of service. 5.2.1 Ability to Resi
17、st Vibratory Forces Connection and repeater points in telecommunications link plant should be tested or analyzed to demonstrate the ability to resist vibratory forces. Structures that are included in this category are supporting racks of the cable and equipment, manholes, pedestals, and mounting cas
18、es for aboveground repeaters. Telecommunications links should resist vibratory forces from internal and external sources. The accelerations produced by these vibrations may be as high as 0.1 g (g is the symbol for the acceleration of gravity). Telecommunications links that are subjected to these lev
19、els of vibration should demonstrate the ability to withstand this environment when either tested or analyzed. The mechanical frequency range from 5 to 200 Hz should be used in the testing. Physical damage or service affecting outage should not occur from these vibrations to either the facility or th
20、e link. ATIS-0600328.2018 6 A test method for vibration that may be applied to a specimen that matches the installed configuration is given in Annex K. Acceptance levels shall be such that no physical damage occurs that disrupts service. Analysis of the structure shall demonstrate that safe stress l
21、evels are not exceeded for all support elements. 5.2.2 Cable Supports Telecommunications cable within manholes should be supported on racks that are fastened to walls or ceilings. Cables should be secured to the racks or supporting structures by means of lashing or cable ties. These measures offer v
22、ibration protection by stiffening cables such that their relative displacements are small. 5.2.3 Limitation on Mass The weight of telecommunications links, including cable and apparatus, shall not exceed the safe working load of the hardware support structure. 5.3 Earthquake Resistance Testing Telec
23、ommunications links equipment shall be resistant to the accelerative forces imposed by earthquakes and shall be tested using ATIS-0600329. Although developed for network telecommunications equipment installed within buildings, applying the standards testing profile to link cables and fittings is dee
24、med very aggressive because of the amplifying effects of multi-story building motion incorporated within the earthquake testing profile. Link assemblies satisfactorily passing the testing criteria compare favorably to network equipment passing this requirement for application in buildings. 6 Water P
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