ATIS 0600015 03-2016 Energy Efficiency for Telecommunication Equipment Methodology for Measurement and Reporting for Router and Ethernet Switch Products.pdf
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1、 AMERICAN NATIONAL STANDARD FOR TELECOMMUNICATIONS ATIS-0600015.03.2016 Energy Efficiency for Telecommunication Equipment: Methodology for Measurement and Reporting for Router and Ethernet Switch Products ATIS-0600015.03.2016 ii Foreword The information contained in this Foreword is not part of this
2、 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 conformance to t
3、he 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 Protection Comm
4、ittee (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 to deploy and
5、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 categories of req
6、uirements: 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 identifiable as ha
7、ving distinct compatibility or performance advantages. Suggestions for improvement of this document are welcomed. They should be sent to the Alliance for Telecommunications Industry Solutions, STEP, 1200 G Street NW, Suite 500, Washington, DC 20005. At the time it approved this document, STEP, which
8、 was responsible for its development, had the following roster: K. Biholar STEP Chair (Nokia) J. Krahner, STEP Vice Chair ( AT 10; 100 a=0.1; b=0.8; c=0.1 (IPv4) Edge Router 3-6% 0; 10; 100 a=0.1; b=0.8; c=0.1 IPv4/6/MPLS Core Router 20-30% 0; 30; 100 a=0.1; b=0.8; c=0.1 IPv4/6/MPLS wdPTTEER =3*2*1*
9、ucubua PPPPw +=ATIS-0600015.03.2016 5 Table 2 Class Definitions, TEER Calculation Parameters and Load profiles for Ethernet Switching Products Class Representative utilization % of utilization for energy measurements, u1, u2, u3 Weight multipliers a, b, c Traffic Profile Simple IMIX, Unicast Access
10、1-3% 0; 10; 100 a=0.1; b=0.8; c=0.1 Ethernet High Speed Access 5-8% 0; 10; 100 a=0.1; b=0.8; c=0.1 Ethernet Distribution/Aggregation 10-15% 0;10;100 a=0.1; b=0.8; c=0.1 Ethernet Core 15-20% 0; 30; 100 a=0.1; b=0.8; c=0.1 Ethernet Data Center 12-18% 0; 30; 100 a=0.1; b=0.8; c=0.1 Ethernet 5.3 TEER Me
11、tric Definition (modular) TEER for modular packet-based network systems can also be estimated as throughput measured for components/modules (Ti) divided by the sum of weighted components/modules power (energy consumption) (Pwi): Where: Ti= Individual Module Throughput Pwi= Individual Module Weighted
12、 Power Pwbase= Weighted Power of a Base System Excluding Modules Modular weighted power Pwiand Pwbaseare calculated with the following formulas: Where: Pwi= Weighted Module Power Pwbase= Weighted Power of a Base System Excluding Modules (a, b, c) = Weighting for power at each utilization level, wher
13、e a + b + c = 1.0 (Pu1, Pu2, Pu3) = Module power at system utilization level (Pbase_u1, Pbase_u2, Pbase_u3) = Base power at system utilization level =+=niwiwbaseniiPPTTEER113*2*1*ucubua PPPPwi +=3_*2_*1_*ubasecubasebubasea PPPPwbase +=ATIS-0600015.03.2016 6 NOTE: Modular energy consumption and throu
14、ghput are vendor approximations. When a modular TEER is provided, a representative-configuration TEER shall also be provided for comparison purposes. 5.4 TEER Evaluation To compare EE of products, they shall belong to the same product class. Recommended product classes are listed in Annex A. The cla
15、ss description covers the expected applications for Equipment Under Test (EUT) deployed at certain points in the network. If the system can be deployed in multiple roles, multiple TEER ratings can be provided. Examples of listing: 1. Medium Core Router, TEER = 42 (representative HW/SW configuration
16、follows). 2. Small Edge Router, estimated TEER = 50 (modular configuration based on component/module ratings). See Annex A for Classification Tables. Due to a wide variety of features and functions available on the EUT, it is very essential to report all features and functions active in the test con
17、figuration as described in Tables A.1 and A.2. 6 Test Procedure 6.1 General Measurement Condition The general requirements for measuring energy efficiency are defined in ATIS-0600015.2013. The following are the general conditions for measurements within this standard: The equipment is to be powered
18、and placed into the relevant operating mode. Allow the equipment to stabilize in this mode for 15 minutes. Measure the power for a period of 15 minutes. If the power varies over the 15 minute measurement time interval, an average of the measurement will be calculated. 6.2 Equipment Configuration All
19、 testing shall be performed on a fully-loaded chassis, as defined by the referenced application. If there are customer specific applications defining redundancy requirements, they should be clearly documented in the report. All ports shall be in an active state and passing or ready to pass traffic.
20、System software (SW) shall be properly configured prior to the test and all the necessary HW components installed. HW and SW shall be representative of a production unit. There is no EUT configuration change allowed any time beyond preparation phase. This includes (but is not limited to) external co
21、nfiguration commands, scripts executing configuration commands on EUT during testing, etc. 6.3 TEER Measurements Modular Method If the vendor chooses to provide the “modular” TEER estimates, it may be required to build more than one setup if the total number of modules exceeds the number of availabl
22、e slots in a chassis (or if some modules cannot be used together). In this case, the “base” system configuration is defined as a common system parts, used by all modules. It may include chassis, fan tray, routing engine, etc. ATIS-0600015.03.2016 7 At this time, all other system slots should be full
23、y populated with “function” modules, not necessary the same, all passing traffic at the same rate: idle, representative, or maximum Non-Drop Rate (NDR). Each test performed on complete system and then without one module at the time, following steps in 6.5. The power for each “function” module is the
24、 difference between total system power with and without this “function” module. NOTE: Throughput and energy consumption may be affected by interaction between the system and module under test, so total calculated numbers may be not exactly the same as in representative test results. Therefore, vendo
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