Project Streams
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Project Stream | Projects |
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PhyTx - Bonding | WT-273, WT-400 |
PhyTx - G.fast and RPF | ID-337, OD-335, WT-338, WT-380 |
Physical Layer Transmission - Home Networking | WT-208, WT-381 |
Physical Layer Transmission - VDSL2 | OD-297, WT-114, WT-115, WT-249 |
Non-Project Stream Assigned | WT-285, WT-347 |
Working Texts
WT# | TITLE | ALL CONTRIBUTIONS RELATED TO WT | EDITOR(S) |
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WT-114i3 | VDSL2 Performance Test Plan - Issue 3
Click Here | Aleksandra Kozarev, Intel | WT-114i3a1 | VDSL2 Performance Test Plan - Issue 3 Amendment 1
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This Broadband Forum Working Text, WT-114i3, as part of the Broadband Suite, provides a set of region specific performance requirements and test methods for VDSL2 modems implemented in accordance with ITU-T G.993.2 (Very high speed Digital Subscriber Line transceivers 2). Its key value is in the verification of performance such that network operators may deploy consistent and successful VDSL2 services in their networks. |
Click Here | Aleksandra Kozarev, Intel | WT-115i3a1 | VDSL2 Functionality Test Plan - Issue 3 Amendment 1
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This test plan describes a series of functionality tests that are used to verify that a VTU (VTU-O or VTU-R) is functionally compliant to ITU-T Recommendation G.993.2 (Very High Speed Subscriber Line transceiver 2). A VTU is functionally compliant to this test plan if it implements correctly the required functions and features of the ITU-T Recommendation G.993.2. In addition the VTU is functionally compliant if it implements the optional feature as specified in the standard. WT-115i3 also defines tests for some of the VDSL2 optional features such as dual latency and Seamless Rate Adaptation (SRA). |
Click Here | Aleksandra Kozarev, Intel | WT-208i2 | Performance Test Plan For In-premises Powerline Communications Systems
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This document is aimed to provide industry, operators, and test labs with a well defined test bed and an established set of tests that enable a performance comparison between powerline products and technologies that can be independently verified. Testing of wireline home-network transceivers from different vendors or technologies should be possible in a repeatable and reproducible fashion. |
Click Here | Marcos Martinez, Marvell Semiconductors Inc. | WT-249i2 | Testing of G.993.2 Self-FEXT Cancellation (vectoring) - Issue 2
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This Working Text is intended to provide an interoperability/performance/functionality test plan for ITU T Recommendation G.993.5 "Self-FEXT cancellation (vectoring) for use with VDSL2 transceivers". Deployment scenarios in the scope of this Working Text include deployments from the Central Office (CO) and Fiber-To-The-x (FTTx) remote deployments. The scope of this Working Text also covers validation of the functionality of the Control, Inventory, and Reported parameters defined in ITU T Recommendation G.997.1 for the related G.993.5 functionality. |
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Active ProjectsWT/MD/SD# | Projects
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WT-500 | MoCA Access Performance Test Plan | MoCA AccessTM technology can be used to deliver gigabit and multi-gigabit services to the end-user in the scope of Fiber Extension (FTTep). It has been defined as one of the the available technologies in TR-419. MoCA has been defined by the Multimedia over Coax Alliance (https://mocalliance.org). MoCA Acces supports broadband data transmission in the access environment - including large apartment and office buildings (the MDU environment). The focus of this performance test plan is on the Physical layer and Traffic testing similar to how TR-380 and TR-476 are defined. This performance test plan will include test setup information, equipment configuration requirements, test procedures, and performance requirements. Traffic tests should show the throughput and delay for various packet sizes and mixes for the various use cases | WT-500
| Helge Tiainen | WT-301i2a3 | Architecture and Requirements for Fiber to the Distribution Point | TR-301defines the Distribution Point Unit (DPU), for use within the access network. All aspects of the introduction of the DPU into the network are considered and requirements are specified for the DPU and all affected nodes in the access network along with the RPF functionality. Amendment 3 adds requirements for bulk data collection (using IPFIX) using the data model as defined in Broadband Forum. | WT-301 | |
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Completed or Inactive Project Streams
Click Here | Herman Verbueken, Nokia | WT-273a1 | Testing of Bonded, Multi-Pair xDSL Systems - Amendment 1 | Click Here | Martin Casey, Calix |
WT-285a1 | Broadband Copper Cable Models - Amendment 1
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This Amendment to TR-285 adds a reference model for modern polyethylene-foam insulated plant quad structured cable (PE4D) as being deployed by various European network operators. |
Click Here | Andre Holley, TELUS Communications, Inc. | WT-338 | Reverse Power Feed (RPF) Test Plan
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This document specifies tests for the RPF functions of a DPU and the customer premises' Power Supply Equipment (PSE) either as a stand-alone device or as a function integrated in a FAST Network Termination. Test cases are mainly specified with reference to ETSI TS 101 548 and BBF WT-301 requirements. Furthermore they are designed to ensure safe deployment of RPF equipment. |
Click Here | Massimo Sorbara, Qualcomm Incorporated | WT-346 | VDSL2 UPBO Guidelines
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This Working Text provides informative guidance on VDSL2 UPBO (upstream power back off) settings for non-vectored VDSL2, and vectored VDSL2 with and without legacy VDSL2 in the same cable. |
Click Here | Peter Silverman, ASSIA, Inc. | WT-347 | CPE SELT Equipment Testing and Operation Guidelines | Click Here | Olivier van de Wiel, Broadcom Massimo Sorbara, Qualcomm Incorporated |
WT-380 | G.fast Performance Test Plan | Click Here | Herman Verbueken, Nokia |
WT-381 | Test Plan for Recommendation ITU-T G.9977 "Mitigation of Interference between DSL and PLC" | Click Here | Vincent Buchoux, LAN Marcos Martinez, Marvell Semiconductors Inc. |
Study Documents
SD# | TITLE | ALL CONTRIBUTIONS RELATED TO SD | EDITOR(S) |
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SD-336 | Operations and Management to support Customer Self-Install | Click Here | Peter Silverman, ASSIA Inc. |
SD-285 | Copper Transmission Models for Testing above 30 MHz | Click Here | Andre Holley, Telus |
Marketing Documents
ID# | TITLE | ALL CONTRIBUTIONS RELATED TO ID | EDITOR(S) |
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ID-337 | FAST Certification Test Plan | Click Here | Frank Van der Putten, Nokia |
IL# | TITLE | ALL CONTRIBUTIONS RELATED TO IL | EDITOR(S) |
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IL-114i3 | WT-114 Issue 3 - Issues List | Click Here | Aleksandra Kozarev, Intel |
IL-114i3a1 | WT-114 Issue 3 Amendment 1 - Issues List | Click Here | Aleksandra Kozarev, Intel |
IL-115i3a1 | WT-115 Issue 3 Amendment 1 - Issues List | Click Here | Aleksandra Kozarev, Intel |
IL-208 | WT-208 Issue 2 Issues List | Click Here | Marcos Martinez, Marvell Semiconductors Inc. |
IL-249i2 | WT-249 Issue 2 - Issues List | Click Here | Herman Verbueken, Nokia |
IL-273 | WT-273 Amendment 1 Issues List | Click Here | Herman Verbueken, Nokia |
IL-297 | OD-297 Issues List | Click Here | Olivier van de Wiel, Broadcom |
IL-335 | OD-335 Issues List | Click Here | Martin Casey, Calix Networks |
IL-337 | ID-337 Issues List | Click Here | Frank Van der Putten, Nokia |
IL-346 | WT-346 Issues List | Click Here | Peter Silverman, ASSIA, Inc. |
IL-347 | WT-347 Issues List | Click Here | Massimo Sorbara, Qualcomm Incorporated |
OD# | TITLE | ALL CONTRIBUTIONS RELATED TO OD | EDITOR(S) |
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OD-297 | Interoperability Test Plan for G.Vector Plugfests | Click Here | Olivier van de Wiel, Broadcom |
OD-334 | Project Plan for G.fast & VDSL2 Testing for the FTTdp Architecture | Click Here | Lincoln Lavoie, UNH InterOperability Lab |
OD-335 | G.fast Interop Plugfest Test Plan | Click Here | Martin Casey, Calix Networks |
OD-362 | Program Requirements for G.fast Certification Program | Click Here | Lincoln Lavoie, UNH InterOperability La