ATIS TRQ 10-2009 Splitters used for Line Splitting and Line Sharing Applications.pdf
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1、 TECHNICAL REQUIREMENTS ATIS-TRQ.10.2009 SPLITTERS USED FOR LINE SPLITTING AND LINE SHARING APPLICATIONS ATIS is the leading technical planning and standards development organization committed to the rapid development of global, market-driven standards for the information, entertainment and communic
2、ations industry. More than 250 companies actively formulate standards in ATIS 20 Committees, covering issues including: IPTV, Service Oriented Networks, Home Networking, Energy Efficiency, IP-Based and Wireless Technologies, Quality of Service, Billing and Operational Support. In addition, numerous
3、Incubators, Focus and Exploratory Groups address emerging industry priorities including “Green”, IP Downloadable Security, Next Generation Carrier Interconnect, IPv6 and Convergence. ATIS is the North American Organizational Partner for the 3rd Generation Partnership Project (3GPP), a member and maj
4、or U.S. contributor to the International Telecommunication Union (ITU) Radio and Telecommunications Sectors, and a member of the Inter-American Telecommunication Commission (CITEL). For more information, please visit . Notice of Disclaimer these are designated by the words “shall,” “should” and “may
5、,” respectively. The word “will” is used only to designate events that will take place under some defined set of circumstances. Suggestions for improvements of this document are welcomed. They should be sent to the Alliance for Telecommunications Industries Solutions, 1200 G Street, NW, Suite 500, W
6、ashington, DC 20005. The Alliance for Telecommunication Industry Solutions (ATIS) serves the public through improved understanding between carriers, customers, and manufacturers. The Network Interface, Power, and Protection Committee (NIPP) - formerly T1E1 - develops and recommends standards and tec
7、hnical reports. The standards and technical reports are related to power systems, electrical and physical protection for the exchange and interexchange carrier networks, and interfaces associated with user access to telecommunications networks. At the time of initiation or issuance of the letter bal
8、lot for this document, NIPP, which was responsible for its development, had the following roster: E. Eckert, NIPP Chair K. Sievert, NIPP Vice-Chair C. Underkoffler, ATIS Chief Editor C. Posthuma, NIPP Technical Editor Organization Represented Name of Representative Actelis Networks Inc. Ioannis Kane
9、llakopoulos, PhD ADTRAN Inc. Arlynn Wilson Richard Goodson (Alt.) Aktino, Inc. Ray Nagele Michail Tsatsanis (Alt.) Alcatel - Lucent Ken Biholar Tim Pantalis (Alt) ASSIA Inc. Peter Silverman Wonjong Rhee (Alt.) AT however, such features and performance characteristics are beyond the scope of this doc
10、ument. 1.2 Purpose This TRQ is intended to facilitate the provisioning of various digital subscriber line (DSL) technologies and voice-band services over the same loop. The document is written broadly to permit the LSS to be used for current DSL technologies and potential new DSL technologies that u
11、se the same frequency spectra. 1.3 Other Considerations Network systems apply various electrical signals to the subscriber loop for the purpose of network maintenance and alerting the customer of an incoming call. These signals vary considerably in amplitude and can reach values of -/+ 200Vdc for ma
12、intenance functions and 276.2 volts peak for alerting signals. When these signals are applied to an access line that also has a Network Equipment Facility LSS wired in series with the subscriber loop, the low pass section of the splitter may see the full magnitude of these signals. Therefore, consid
13、eration should be given to the selection of circuit components used for the LSS design. During the times these signals are applied, it is acceptable that the low pass filter does not perform all of its functions nor meet the all of the technical requirements in this document. However, the filter com
14、ponents should not be permanently damaged. Such phenomena as lightning and over voltage due to inductive interference or power cross lie beyond the scope of this TRQ. The detailed technical parameters of the network maintenance and alerting signals referenced here can be found in the informative ref
15、erences in clause 7. 2 REFERENCED STANDARDS The following standards contain provisions that, through reference in this text, constitute provisions of this technical requirements document. At the time of publication, the editions indicated were valid. All standards are subject to revision, and partie
16、s to agreements based on this document are encouraged to investigate the possibility of applying the most recent editions of the standards indicated below. ATIS-TRQ.10.2009 2 ATIS-0600413.2009, Network to Customer Installation Interfaces Asymmetrical Digital Subscriber Line (DSL) Metallic Interface.
17、1T1.417-2003 (R2007), Spectrum Management for Loop Transmission Systems.1T1.424-2004 (R2009), Trial Use Interface Between Networks and Customer Installations Very-High Speed Digital Subscriber Lines (VDSL) Metallic Interface.1IEEE Standard 455, IEEE Standard Test Procedure for Measuring Longitudinal
18、 Balance of Telephone Equipment Operating in the Voice Band, 1985 or later.2IEEE Standard 743, IEEE Standard Equipment Requirements and Measurement Techniques for Analog Transmission Parameters for Telecommunications, 1995.2GR-57-CORE Issue: 01 2001-10-19, Functional Criteria for Digital Loop Carrie
19、r Systems.3GR-507-CORE Issue: 01 2000-06-30, Section 7 - Transmission Requirements and Objectives of the LATA Switching Systems Generic Requirements (LSSGR).33 DEFINITIONS, ABBREVIATIONS, ACRONYMS gain is negative value. Table 2 - Increase in Attenuation Distortion in Voice Band-Type A 0.2 - 3.4 kHz
20、 3.4 - 4.0 kHz Short loop Type A Splitter ZTc = 900 ZTr = 600 +1.5 -1.5 +2.0 -2.0 Long loop Type A Splitter ZTc = 900 ZTr = 600 +0.5 -1.5 +1.0 -1.5 Figure 7 defines the test configuration and the value of the test components that shall be used for transmission measurements in the voice band for the
21、line sharing splitter. LPFTestLoopZTc(900ohm)TestEq uipm entZHP-c(load)ZTr(600ohm)PSTN U-C U-RSIGCO POTS Splitter0.12uF *ZTc is the NormalTermination in TestSetDSLFigure 7 - Transmission Measurements in Voice Band for the Line Sharing Splitter-Type A NOTES: 1. ZTc = 900 ohm. 2. ZTr = 600 ohm. 3. ZHP
22、-C is the impedance presented to the PSTN connection by a TU-C through the capacitance of the splitter DC blocking capacitors. 4. (*) These capacitors are only for the external Line-sharing splitter without the HPF function. Internal splitter function or external splitters with a complete HPF functi
23、on may incorporate this capacitance in the input to the HPF function. ATIS-TRQ.10.2009 10 4.7.1.4 Envelope Delay Distortion The envelope delay distortion of the line sharing splitter shall be measured using Figure 7. The increase in delay distortion caused by the line sharing splitter as measured fr
24、om the PSTN port to the U-R interface for each of the test loops shall be less than the values in Table 3. Table 3 - Increase in Envelope Delay Distortion-Type A 0.6 - 3.2 kHz 0.2 - 4.0 kHz Short loop Line Sharing Splitter ZTc = 900 ZTr = 600 200 sec 250 sec Long loop Line Sharing Splitter ZTc = 900
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