ITU-T建议书 G.1081
IPTV性能监测点 Performance monitoring points for IPTV
Summary
Successful deployment of IPTV servicesrequires performance parameters to be monitored at a number of different pointsin the complete end to end chain, including the customer premises, keyaggregation points and at interconnect points between disparate and serviceprovider network domains. This Recommendation defines five monitoring pointswhere such performance measurements can be made.
Keywords
IPTV,performance, QoS, QoE, monitoring points
1.范围 (Scope)
ThisRecommendation defines performance monitoring points which will allow theservice provider/network operator to monitor the performance of the completeIPTV service delivery to the end-user.
Successful deployment of IPTV servicesrequires performance monitoring at the customer premise (e.g. set-top-box), keyaggregation points (e.g DSL Access Multiplexer DSLAM) or cable modemtermination system (CMTS) and at interconnect points between disparate networkdomains and service provider domain boundaries. Performance monitoring can helpin:
·Finding errors in an end-to-endsystem (system debugging)
·Checking the resourceutilization and the work load of system components
·Comparing values (metrics)regarding performance of different system deployments
·Providing a base for modellingthe system
·Identifying system bottlenecks
·Optimizing IPTV networkdeployment
·Ensuring that systemperformance does not degrade with time.
The goal of performance monitoring is toprovide end-users of IPTV services with a high user experience by identifying,localizing and quantifying service and network issues.
2.参考 (References)
Thefollowing ITU-T Recommendations and other references contain provisions, which,through reference in this text, constitute provisions of this Recommendation.At the time of publication, the editions indicated were valid. AllRecommendations and other references are subject to revision; users of this Recommendationare therefore encouraged to investigate the possibility of applying the mostrecent edition of the Recommendations and other references listed below. A listof the currently valid ITU-T Recommendations is regularly published.
Thereference to a document within this Recommendation does not give it, as astand-alone document, the status of a Recommendation.
[ITU-T Y.1540] ITU-TRecommendation Y.1540 (2007), “Internet protocol data communication service –IP packet transfer and availability performance parameters,” Nov. 2007.
[ITU-T Y.1543] ITU-T Recommendation Y.1543 (2007), “Measurements in IPnetworks for inter-domain performance assessment,” Nov. 2007.
[ITU-T Y.1544] ITU-T Recommendation Y.1544 (2008), “Multicast IPperformance parameters,” .
3.定义 (Definitions)
Platform Ahardware and/or software architecture that serves as a foundation or base forrealising a certain functionality.
4.缩写和首字母缩略词 (Abbreviations and acronyms)
本建议使用下列缩略语:
CMTS Cable Modem Termination System 电缆调制解调器终端系统
DSLAM DSL Access Multiplexer DSL接入复用器
NMS NetworkManagement System 网络管理系统
OSS OperationsSupport System
QoE Qualityof Experience 体验质量
QoS Qualityof Service 服务质量
VoD Videoon Demand 视频点播
5.约定 (Conventions)
In this document:
The keyword “is recommended” indicates a requirement which isrecommended but which is not absolutely required. Thus this requirement need not be present toclaim conformance.
The keyword “may” indicates a requirement which is optional.
6.IPTV性能监测点 (IPTV performance monitoring points)
The entire IPTV content delivery chain can be divided into multiple domains. Operators at domain bordershave the option to perform monitoring which, when taken together, forms anend-to-end monitoring topology.
This domain approach is independent of any specific monitoringmethod.
Monitored performance characteristics, across a single domain ormultiple domains, can be integrated with existing or new operations supportsystems (OSS)and/or network management system (NMS) systems.
Figure1/G.1081 – IPTV模型 (IPTV Domains)
The exact topology and domains will varyfrom one operator to another; however, monitoring can be applied at each domainboundary. An example topology with generalized domain boundaries is shown inFigure 1. These domains are further divided into specific monitoring domains inFigure 2. Within each domain, different aspects can be monitored at each domainboundary as outlined below.
Figure2/G.1081 – IPTV性能监测点 (IPTV Performance Monitoring Points)
A complete performance monitoring system is recommended to include aperformance monitoring management platform to translate the measured data fromthe monitoring points into actionable knowledge. Functions of the managementplatform could include data storage, analysis, correlation, faultidentification, root cause analysis, report generation and visualization. Therange of the management platform(s) may cover all domains as shown in Figure 2.
The interfaces between the performance monitoring managementplatform(s) and the monitoring points will be further defined in the future.
7. 性能监测点定义 (Performance monitoringpoint definitions)
This section provides a basic description of each monitoring point shown inthe previous section. The capabilities and parameters listed below are not anexhaustive list. Some parameters may be difficult to obtain in some scenarios.Conversely, there may be some other parameters that are essential. These arestill under study.
7.1 监测点1 Monitoring point 1 – PT1
This point demarcates the domain borderbetween content provision and IPTV control. PT1is located at the domain border between content providers (contentowners and aggregators) and IPTV Service provider.
PT1 enablesthe measurement of source audio-visual quality and metadata verification and theanalysis of information to be exchanged between content provider and IPTV serviceprovider.
PT1 may capture thefollowing information:
·Coding parameters of video, audioand text content;
·Quality parameters of video,audio and text content;
·Acknowledgement for the report ofsource content transfer receipt;
PT1may support thefollowing capabilities:
·Real-time request/responsetransactions by the protocols involved;
·Real-time notifications ofasynchronous events;
·Reliable and secure deliveryof any messages involved;
·Clock synchronization withother monitoring points;
·Identification of variouscontent providers;
·Report testing information for quality parameters ofvideo audio and text content fromvarious content providers to the service quality monitoring platform.
7.2监测点2 Monitoring point 2 – PT2
This point is located at the domain borderbetween the service provider and network provider. It should aim for originalstreaming quality monitoring. PT2 monitors the service provider streamquality at the head-end egress.
PT2 may capture thefollowing information:
·Quality parameters of streammedia from the core node of the service provider;
·Performance parameters of EPGservers at the core node of the service provider;
·Performance parameters of VODservers at the core node of the service provider;
·Performance parameters of service related servers at the core node of service provider;
PT2 may support thefollowing capabilities:
·Real-time request/responsetransactions by the protocols involved;
·Real-time notifications ofasynchronous events;
·Reliable and secure delivery ofany messages involved;
·Clock synchronization withothermonitoring points;
·Identification of variousservers;
·Report information for quality parameters ofvideo, audio and text content and performance parameters of servers to the service quality monitoring platform.
7.3 监测点3 Monitoring point 3 – PT3
This point is located at the boundarybetween the IP core and IP edge networks for monitoring of IP-relatedperformance parameters.This point can be placed on any type of interfacebetween the IPTV core network and the edge network.
PT3 may capture the following information:
·Source network segment anddestination network segment to be measured;
·IP network performance as definedin (ITU-T Y.1540]. Recommended methods of measurement are found in [ITU-T Y.1543].
o Mean one-way delay
o One-way packet delay variation
o Packet loss ratio
o Packet loss profile
o Path unavailability
·Multicast IP networkperformance parameters defined in [ITU-T Y.1544].
o Successful join time
o Successful leave time
o Group mean one-way delay
o Group IP service availability
o Mean group loss ratio
PT3 may support the following capabilities:
·Real-time request/response transactions;
·Real-time notifications ofasynchronous events;
·Reliable and secure delivery ofany messages involved;
·Clock synchronization withother monitoring points;
·Submission of r information forquality parameters of IP network to service quality monitoring platform
·Access to raw IP information(e.g., packet headers, type of codec) of the audio-visual or text stream;
·Able to capture information onquality originating from end-user devices.
7.4 监测点4 Monitoring Point 4 – PT4
This point is closest to the user wheremonitoring the quality of streaming, audio-visual quality, and IPTV serviceattributes areimportant. Monitoring at this point can be implemented byintroducing the performance monitoring function in Home Gateways and STBs, forexample.
PT4 may capture the following information:
·Source network segment anddestination network segment to be measured;
·Access the service qualityinformation and stream media quality information of the IPTV service platformfrom edge point of IPTV;
·Access to raw IP information(e.g., packet headers, type of codec) of the audiovisual or text stream;
·IP network performance parametersdefined in [ITU-T Y.1540]. Recommended methods of measurement are found in [ITU-TY.1543].
o Mean one-way delay
o One-way packet delay variation
o Packet loss ratio
o Path unavailability
·Multicast IP network performanceparameters defined in [ITU-T Y.1544].
o Successful join time
o Successful leave time
o Group mean one-way delay
o Group IP service availability
o Mean group loss ratio
PT4 may be able to support the following capabilities:
·Real-time request/response transactions;
·Real-time notifications ofasynchronous events;
·Reliable and secure delivery ofthe messages involved;
·Clock synchronization withothermonitoring points;
·Simulate the integrated serviceflow of IPTV terminal;
·Report information for parameters of IP network performance, servicequality that access IPTV service platform from edge point, and stream mediaquality to service quality monitoring platform.
7.5 监测点5 Monitoring point 5 – PT5
This point is at the final end-point anddirectly relates to end-user QoE. Monitoring audio-visual quality, textaccuracy and IPTV service attributes as perceived by the end-user areimportant.
PT5 may capture the following information:
·Source network segment anddestination network segment to be monitored;
·Access the quality informationof service and stream media of the IPTV service platform from the client;
PT5 may support the following capabilities:
·Real-time request/response transactions;
·Real-time notifications ofasynchronous events;
·Reliable and secure delivery ofany messages involved;
·Clock synchronization withother monitoring points;
·Integrated service informationof IPTV terminal;
·Report information for parameters of IP network performance, servicequality that access IPTV service platform from client, and stream media qualityto service quality monitoring platform.
8.安全性考虑 (Security considerations)
Security aspects have not been addressed inthis Recommendation.
相关推荐
【描述】中的"ITU-T G.984.1,ITU-T G.984.2,ITU-T G.984.3,ITU-T G.984.4,ITU-T G.984.5"分别代表了GPON协议的不同部分: 1. ITU-T G.984.1:该标准主要概述了GPON的整体框架,包括系统架构、基本功能、性能要求和...
《10GPON标准规范详解:ITU-T G.987.1~3》 10GPON(10 Gigabit Passive Optical Network)是下一代光纤接入网络技术,它显著提升了宽带速度,为用户提供高达10Gbps的下行速率。10GPON标准由国际电信联盟电信标准化...
《ITU-T G.988:光纤通信标准下的ONU管理与控制接口规范》 一、核心知识点概览 ITU-T G.988标准,是国际电信联盟(ITU)制定的一项重要光纤通信标准,专注于定义光网络单元(ONU)的管理与控制接口(OMCI)。此...
### ITU-T G.810:时钟同步规范 #### 概述 《ITU-T G.810》是一项重要的国际电信联盟(ITU)标准文档,主要关注于时钟同步网络的设计目标与规范,特别是在数字传输系统和网络中。这份推荐性标准详细规定了时钟性能...
根据ITU-T G.811的规定,数字网络的设计目标应当包括以下几点: - **高可靠性**:网络必须能够持续稳定地运行,即使在故障发生时也能迅速恢复。 - **低延迟**:为了支持实时应用的需求,网络应该具有尽可能低的数据...
### ITU-T G.711标准:脉冲编码调制(PCM)语音频率 #### 概述 ITU-T G.711标准是国际电信联盟(ITU)制定的一个用于语音频率信号脉冲编码调制(PCM)的标准,旨在提供统一的语音编码规范,确保不同国家和地区之间...
由于您给出的文件信息,主要是一个关于国际电信联盟(ITU-T)推荐标准G.652的文档描述。这份文件指的是ITU-T G.652标准的2016年11月最新修订版本。ITU-T G.652标准主要描述了在1310nm波长附近具有零色散波长的单模...
### ITU-T G.703标准解析 #### 标准概述 《ITU-T G.703标准》是国际电信联盟(ITU)电信标准化部门(ITU-T)制定的一套关于数字终端设备的标准之一,主要关注的是数字接口的物理与电气特性。此标准发布于2001年11...
ITU-T G.692-1998标准的全称是“光接口规范用于具有光放大器的多通道系统”,它是国际电信联盟(ITU-T)的一个传输系统和媒介、数字系统和网络的标准。这一标准文件定义了为多通道光线路系统接口,以便为将来在这些...
根据给定文件信息,本篇文档的内容主要围绕ITU-T G.709标准,该标准定义了光传输网络(OTN)的接口。OTN是在SONET/SDH网络成熟发展的基础上发展起来的新兴技术,旨在满足日益增长的数字服务传输需求,并推动网络向更...
标题中的"ITU-TP.501"、"ITU-TP.863"和"ITU-T G.771"都是国际电信联盟(ITU)制定的一系列技术规范,主要涉及通信领域的不同方面。这些规范是全球电信行业的标准,确保不同设备和服务之间的互操作性和兼容性。 1. ITU...
ITU-T G.709是国际电信联盟电信标准化部门(ITU-T)发布的一项关于光传输网络(OTN)的标准。这个标准详细描述了数字通信设备的一般特性,特别是关于同步数字体系(SDH)和下一代网络(NGN)的复用设备特性。ITU-T G...
### ITU-T G.8262/Y.1362: Timing Characteristics of Asynchronous Ethernet Equipment Slave Clock #### 概述 国际电信联盟(ITU)的G.8262/Y.1362标准主要关注的是包传输系统中的质量与可用性目标,以及互联网...
### ITU-T G.8260:同步在分组网络中的定义与术语 #### 标题解析 ITU-T G.8260是国际电信联盟(ITU)电信标准化部门(ITU-T)发布的一项标准,主要关注的是**传输系统与媒体、数字系统与网络**中的**分组传输方面**...
《ITU-T G.168-2009:国际电话连接与电路——远程电话电路相关设备》 一、概述 ITU-T G.168-2009是国际电信联盟(ITU)电信标准化部门(ITU-T)发布的一系列标准之一,主要关注于数字网络回声消除器(echo ...
ITU-T G.703标准是国际电信联盟(ITU)电信标准化部门(ITU-T)制定的一项标准,用于规定数字传输系统中终端设备的物理和电气特性,特别是涉及到层次化的数字接口。该标准的前身是国际电报电话咨询委员会(CCITT)的...
ITU-T标准,下一代对称10GPON标准, G.9807.1 10-Gigabit-capable symmetric passive optical network (XGS-PON) Amendment 1
### ITU-T G.987.2 技术规范详解 #### 一、概述 ITU-T G.987.2技术规范是国际电信联盟(ITU)电信标准化部门(ITU-T)制定的一系列标准之一,主要关注的是10千兆比特能力的无源光网络(XG-PON)中的物理媒体依赖...