ATIS 0900007-2012 Dynamic Spectrum Management Technical Report (Issue 2).pdf
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1、 TECHNICAL REPORT ATIS-0900007 DYNAMIC SPECTRUM MANAGEMENT TECHNICAL REPORT, ISSUE 2 As a leading technology and solutions development organization, ATIS brings together the top global ICT companies to advance the industrys most-pressing business priorities. Through ATIS committees and forums, nearl
2、y 200 companies address cloud services, device solutions, emergency services, M2M communications, cyber security, ehealth, network evolution, quality of service, billing support, operations, and more. These priorities follow a fast-track development lifecycle from design and innovation through solut
3、ions that include standards, specifications, requirements, business use cases, software toolkits, and interoperability testing. ATIS is accredited by the American National Standards Institute (ANSI). ATIS is the North American Organizational Partner for the 3rd Generation Partnership Project (3GPP),
4、 a founding Partner of oneM2M, a member and major 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, visit . Notice of Disclaimer SHOWING A CASE WHERE
5、 CROSSTALK IS THE DOMINANT NOISE. ADSL BIT RATES WERE CALCULATED ON A MEASURED 9008 FT. LOOP WITH 9 DB MARGIN AND 140 DBM/HZ BACKGROUND NOISE. . 122 FIGURE D.5: LOGICAL CONNECTIONS TO AND FROM A DSM SMC WITH INTEGRATED TEST OSS CAPABILITY IMPLEMENTING DSM CONTROL DATA AND DSM DATA . 123 FIGURE G.1:
6、VECTOR MULTIPORT NETWORK MODEL. BOLDFACE QUANTITIES ARE VECTORS OR MATRICES 131 FIGURE G.2: INCREMENTAL SECTION OF TWISTEDPAIR TRANSMISSION LINE . 134 FIGURE G.3: DETAILED 6PORT FOR CROSSTALK MODELING BETWEEN TWO TWISTED PAIR TRADITIONAL METHOD FOR MULTICONDUCTORS, SEE C. PAUL 32 . 135 FIGURE G.4: J
7、OFFE CIRCUIT EMPHASIZING PARAMETERS PHYSICALLY EVIDENT IN TWISTEDPAIR BINDERS 135 FIGURE G.4(A): REDUCED JOFFE CIRCUIT 136 FIGURE G.5: ILLUSTRATION OF 3X3 WITH DIFFERENTIAL LOADS FOR SCALAR TRANSFER FUNCTION CALCULATION 143 FIGURE G.6: EQUIVALENCE OF TRADITIONAL SYMMETRIC MODEL AND MODEL OF THIS SEC
8、TION . 145 ATIS-0900007 viii FIGURE G.7: SIMPLE LOAD CIRCUIT FOR POWER ANALYSIS . 148 FIGURE G.8: SIMPLE UNIFORM (ALL LINES SAME LENGTH) BINDER WITH DIFFERENTIAL SOURCE AND LOAD. ( Z01AND 1ARE 33 MATRICES FOR 2 TWISTED PAIR) SEE ALSO EQUATIONS (G.28)(G.36) FOR DIFFERENTIAL EXCITATION 151 FIGURE G.9:
9、 DIFFERENT LENGTH LINES WITH ZERORLCG DUMMY SECTION INSERTED ON SHORT LINE . 151 FIGURE G.10: ILLUSTRATION OF BRIDGEDTAP ON ONE OF THE LINES 152 FIGURE G.11: EXAMPLES OF MULTIPORT CASCADES FOR TWISTEDPAIR TRANSMISSION LINE CONFIGURATIONS 152 FIGURE G.12: DISTANCE BETWEEN PAIRS . 153 FIGURE G.13: 25B
10、INDER CROSS SECTION . 158 Table of Tables TABLE 1: G.997.1 MIB REPORTED PARAMETERS USED IN LEVEL 1 DSM . 12 TABLE 2: G.997.1 MIB REPORTED PARAMETERS USED IN LEVEL 2 DSM . 13 TABLE 3: G.997.1 MIB REPORTED PARAMETERS USED IN LEVEL 3 DSM . 16 TABLE 4: DSM CONTROL PARAMETERS FOR LEVEL 1 DSM 17 TABLE 5:
11、DSM CONTROL PARAMETERS FOR LEVEL 2 DSM 19 TABLE 6: DSM CONTROL PARAMETERS FOR LEVEL 3 DSM 20 TABLE B.1 TYPES OF CROSSTALKING SITUATIONS TO WHICH VECTORING CAN BE APPLIED . 49 TABLE C.1: ADSL1 SYSTEM PARAMETERS 53 TABLE C.2: VDSL SYSTEM PARAMETERS 57 TABLE C.3: ADSL2PLUS AND VDSL SYSTEM PARAMETERS 61
12、 TABLE C.4: SUMMARY OF SNR MARGIN AND BITSSWAPPED BY MLWF AND A PSDMASK IMPOSITION METHOD 90 TABLE C.5: SIMULATION PARAMETERS 104 TABLE C.6: DOWNSTREAM DATA RATE OF WORSTPERFORMING VECTORED LINE . 106 TABLE C.7: RATEREACH RESULTS (IN MB/S) FOR THREE SPECTRUM MANAGEMENT METHODS . 115 TABLE D.1: SOME
13、DSL IMPAIRMENTS, THEIR IDENTIFICATION, AND A FEW METHODS OF REMEDIATION . 124 TABLE G.1: 15 TRANSFER FUNCTIONS OF INTEREST FOR 3X3 CASE G IS USED FOR NEXT AND H FOR FEXT (FIRST SUBSCRIPT IS OUTPUT AND SECOND SUBSCRIPT IS INPUT) . 146 ATIS TANDARD ATIS-0907 ATIS Standard on Dynamic Spectrum Managemen
14、t Technical Report, Issue 2 1 1 Executive Summary This Dynamic Spectrum Management (DSM) Technical Report (TR), Issue 2, provides a description of Dynamic Spectrum Management technologies for management of Digital Subscriber Lines (DSL) to enhance the performance of DSL services provided over the co
15、pper loop. Dynamic Spectrum Management techniques can improve DSL service reliability, increase data rates, and reduce power consumption of DSL transmission systems through measurement and/or dynamic management of DSL configuration parameters. DSM incorporates parameters of the subscriber line envir
16、onment and line transmission systems that are time- or situation-dependent. DSM methods may enhance the performance of DSL services by enabling the adaptive or dynamic assignment of signals, spectra, and operations of DSL lines, by selecting appropriate configurations specific for each DSL line. DSM
17、 may also assist in the control of features (e.g., impulse noise protection) that help to improve the physical-layer performance without changing the transmitted spectra or in diagnosis of line degradations and faults. This Issue 2 of the DSM TR provides the following changes from the initial issue
18、of the TR: Alignment with the current version of applicable ITU-T Recommendations, including with the current version of ITU-T G.997.1 10 and the recently published G.993.5 9 and G.998.4 11 Recommendations. Addition in Annexes A and C of descriptions and use case analysis of the following DSM algori
19、thms: Penalty-Benefit Optimization, Centralized Multi-level Water-filling, Distributed Multi-level Water-filling, DSM level 3 Vectored DSL Algorithms, and Adaptive Downstream Power Back-Off. Deprecation of text in Annex A.2 of the initial issue of the TR on the Normalized-Rate Iterative Algorithm an
20、d Centralized Normalized-Rate Iterative Algorithm. Deprecation of text of Annex E, Level-2 DSM Data capability Single-Carrier-Modulation (SCM) VDSL. 1.1 Scope This document provides information on DSM for the administration of services and technologies that use metallic subscriber line cables. Spect
21、rum management is the administration of subscriber line technology in a way that provides spectral compatibility for services and technologies that use pairs in the same cable. American National Standard ATIS-0600417.2003 (R2012) 13 addresses spectrum management in a static form. DSM can enhance spe
22、ctrum-management value by improving reliability, increasing data rates, and reducing power consumption of DSL transmission systems through measurement and/or dynamic management of DSL configuration parameters. DSM incorporates parameters of the subscriber line environment and line transmission syste
23、ms that are time or situation dependent, which are not incorporated in the current issue of ATIS-0600417.2003 (R2012). A service providers DSL systems may provide physical-layer channel and performance information to that service providers maintenance entity according to specifications contained wit
24、hin this document. This information may optionally be used by the maintenance entity and its service provider to improve service provisioning, reliability, and/or data rates. DSM methods may enhance the performance of DSL services by enabling the adaptive or dynamic assignment of signals, spectra, a
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