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DL/T 1432.1-2015 English PDF (DLT1432.1-2015)

DL/T 1432.1-2015 English PDF (DLT1432.1-2015)

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DL/T 1432.1-2015: Testing specification for on-line monitoring device of transformation equipment. Part 1: General testing specification

This Standard specifies the test classification and items, test methods and requirements, rules for testing determination common to the on-line monitoring device of transformation equipment.
DL/T 1432.1-2015
DL
ELECTRIC POWER INDUSTRY STANDARD
OF THE PEOPLE REPUBLIC OF CHINA
ICS 29.240.11
K 41
Filing No.. 50077-2015
Testing specification for on-line monitoring
device of transformation equipment -
Part 1. General testing specification
ISSUED ON. APRIL 2, 2015
IMPLEMENTED ON. SEPTEMBER 1, 2015
Issued by. National Energy Administration
Table of Contents
Foreword ... 3
1 Scope ... 5
2 Normative references ... 5
3 Test classification and items ... 6
4 Test methods and requirements ... 8
Foreword
This Part of DL/T 1432 was drafted in accordance with the rules given in GB/T 1.1-2009 Directives for standardization - Part 1. Structure and drafting of standards.
DL/T 1432 Testing specification for on-line monitoring device of transformation equipment is divided into 5 parts.
?€? Part 1. General testing specification;
?€? Part 2. On-line monitoring device of gases dissolved in transformer oil; ?€? Part 3. On-line insulation monitoring device of capacitive equipment and metal-oxide surge arrester;
?€? Part 4. On-line partial discharge monitoring device (UHF) of gas insulated switchgear;
?€? Part 5. On-line monitoring device of the earthing current of power
transformer core.
This Part is Part 1 of DL/T 1432. This Part contains the test items, test methods and methods for determining the test results common to the on-line monitoring device, and shall be used in conjunction with the special testing specification for the relevant on-line monitoring device.
This Standard was proposed by the China Electricity Council.
This Standard shall be under the jurisdiction of the National Technical Committee for Standardization of Condition-based Maintenance and On-line Monitoring of Electrical Power Units.
Major drafting organization of this Standard. China Electric Power Research Institute.
Major participating organizations of this Standard. State Grid Zhejiang Electric Power Company, Electric Power Research Institute of Guangdong Power Grid Corporation, North China Electric Power University, Beijing Sifang Automation Co. Ltd, Ningbo Ligong Online Monitoring Technology Co., Ltd, and Beijing Sintech Electric Technology Co., Ltd.
Main drafters of this Standard. Yuan Shuai, Yan Chunyu, Gao Keli, Bi Jiangang, Shi Yanjie, Liu Ming, Wang Feng, Peng Jiang, Wu Liyuan, Yang Yuan, Gong Yanpeng, Yang Ning, Chang Wenzhi, Jiao Fei, Ying Gaoliang, He Hongming, Testing specification for on-line monitoring
device of transformation equipment ?€?
Part 1. General testing specification
1 Scope
This Standard specifies the test classification and items, test methods and requirements, rules for testing determination common to the on-line monitoring device of transformation equipment.
This Standard is applicable to the type test, exit-factory test, commissioning test and field test for the on-line monitoring device of transformation equipment. 2 Normative references
The following documents are essential to the application of this document. For dated references, only the editions with the dates indicated are applicable to this document. For undated references, only the latest editions (including all the amendments) are applicable to this document.
GB/T 2423.1 Environmental testing for electric and electronic products - Part 2. Test methods - Tests A. Cold
GB/T 2423.2 Environmental testing for electric and electronic products - Part 2. Test methods - Tests B. Dry heat
GB/T 2423.3 Environmental testing for electric and electronic products - Part 2. Testing method - Test Cab. Damp heat, steady state
GB/T 2423.4 Environmental testing for electric and electronic products - Part 2. Test method - Test Db. Damp heat, cyclic (12h + 12h cycle)
GB 4208 Degrees of protection provided by enclosure (IP code)
GB/T 11287 Electrical relays - Part 21. Vibration, shock, bump and seismic tests on measuring relays and protection equipment - Section One. Vibration tests (sinusoidal)
GB/T 14537 Shock and bump tests on measuring relays and protection
equipment
GB/T 17626.2 Electromagnetic compatibility - Testing and measurement
techniques - Electrostatic discharge immunity test
GB/T 17626.3 Electromagnetic compatibility - Testing and measurement
techniques - Radiated, radio-frequency, electromagnetic field immunity test GB/T 17626.4 Electromagnetic compatibility - Testing and measurement
techniques - Electrical fast transient / burst immunity test
GB/T 17626.5 Electromagnetic compatibility - Testing and measurement
techniques - Surge immunity test
GB/T 17626.6 Electromagnetic compatibility - Testing and measurement
techniques - Immunity to conducted disturbances, induced by radio-
frequency fields
GB/T 17626.8 Electromagnetic compatibility - Testing and measurement
techniques - Power frequency magnetic field immunity test
GB/T 17626.9 Electromagnetic compatibility - Testing and measurement
techniques - Pulse magnetic field immunity test
GB/T 17626.10 Electromagnetic compatibility - Testing and measurement
techniques - Damped oscillatory magnetic field immunity test
GB/T 17626.11 Electromagnetic compatibility - Testing and measurement
techniques - Voltage dips, short interruptions and voltage variations immunity tests
3 Test classification and items
3.1 Test items
The tests for the on-line monitoring device are divided into type test, exit-factory test, commissioning test and field test. The test items are shown in Table 1. Table 1 -- Test Items
Serial
No. Test items Type test Exit-factory test Commissioning test Field test 1 Structure and appearance inspection ??? ??? ??? ???
2 Basic function testing ??? ??? ??? ???
3 Measurement error test ??? ??? ??? ???
4 Insulation resistance test ??? ??? ??? *
5 Dielectric strength test ??? ??? * *
3.4 Commissioning test
The commissioning test is carried out by the operating organization, after the device is installed and before it is officially put into operation. The device can only be operated after passing the test.
3.5 Field test
The field test is carried out by a field operating organization or a qualified testing institution to the performance of the devices to be tested on site. Field tests are generally divided into two cases.
a) regular routine verification, with a cycle of 1 to 2 years; and
b) if necessary.
4 Test methods and requirements
4.1 Test conditions
The requirements for the test conditions are as follows.
a) laboratory ambient temperature. +15??C ~ +35??C (outdoor tests are not required);
b) relative humidity. 25% ~ 75%;
c) atmospheric pressure. 86kPa ~ 106kPa.
For large-size equipment, or the equipment cannot be tested under the above conditions for some reason, the actual weather conditions shall be recorded in the inspection report. When relevant standards require strict control of the environmental conditions, such requirement shall be otherwise specified in this Standard.
4.2 Structure and appearance inspection
The structure and appearance shall conform to the following requirements. a) the device chassis shall take necessary measures against electromagnetic interference, and the exposed conductive part of the chassis shall be
electrically connected together with reliable grounding;
b) the chassis shall meet the requirements for ventilation and heat dissipation of the heating elements;
c) the chassis modules shall be plugged in a flexible way, with reliable contact and good interchangeability; and
d) appearance coating and plating shall be solid, uniform and smooth, with no peeling, corrosion, etc.
4.7.2 Immunity performance criteria
The performance criteria are as follows.
a) During the test, if the function or performance is normal within the limits specified in the technical requirements, it can be determined as Grade A. b) During the test, if the function or performance is temporarily reduced or lost, but can be restored on its own, it can be determined as Grade B.
c) During the test, if the function or performance is temporarily reduced or lost, but can only be restored after manual intervention or system reset, it can be determined as Grade C.
d) During the test, if damages (loss of stored data) to the device (components) or software, loss of functions and performance degradation occur, and
cannot be restored even with the help of manual intervention or system
reset, it can be determined as Grade D.
4.7.3 Electrostatic discharge immunity test
The requirements for the electrostatic discharge immunity test are as follows. a) Test method. CARRY out the electrostatic discharge immunity test in
accordance with the provisions and methods of GB/T 17626.2. The severity level is Level 4. The device enclosure is the site to be tested.
b) Qualification criteria. In the case of interference, the monitoring device shall meet the requirements for performance criteria in Section 4.7.1.
4.7.4 RF electromagnetic radiation immunity test
The requirements for the RF electromagnetic radiation immunity test are as follows.
a) Test method. CARRY out the RF electromagnetic radiation immunity test in accordance with the provisions and methods of GB/T 17626.3. The severity level is Level 3. The device enclosure or core component is the site to be tested.
b) Qualification criteria. In the case of interference, the monitoring device shall meet the requirements for performance criteria in Sectio...

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