CLC TS 50539-12-2013 Low-voltage surge protective devices - Surge protective devices for specific application including d c - Part 12 Selection and application principles - SPDs co.pdf
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1、BSI Standards PublicationLow-voltage surge protectivedevices Surge protectivedevices for specific applicationincluding d.c.Part 12: Selection and application principles SPDs connected to photovoltaic installationsPD CLC/TS 50539-12:2013National forewordThis Published Document is the UK implementatio
2、n of CLC/TS 50539-12:2013. It supersedes DD CLC/TS 50539-12:2010 which is withdrawn.The UK participation in its preparation was entrusted by Technical Com-mittee PEL/37, Surge Arresters - High Voltage, to Subcommittee PEL/37/1, Surge Arresters - Low Voltage.A list of organizations represented on thi
3、s committee can be obtained onrequest to its secretary.This publication does not purport to include all the necessary provisions of a contract. Users are responsible for its correct application. The British Standards Institution 2014.Published by BSI Standards Limited 2014ISBN 978 0 580 82735 8ICS 2
4、9.120.50Compliance with a British Standard cannot confer immunity from legal obligations.This Published Document was published under the authority of theStandards Policy and Strategy Committee on 31 July 2014.Amendments/corrigenda issued since publicationDate Text affectedPUBLISHED DOCUMENTPD CLC/TS
5、 50539-12:2013TECHNICAL SPECIFICATION CLC/TS 50539-12 SPCIFICATION TECHNIQUE TECHNISCHE SPEZIFIKATION December 2013 CENELEC European Committee for Electrotechnical Standardization Comit Europen de Normalisation Electrotechnique Europisches Komitee fr Elektrotechnische Normung CEN-CENELEC Management
6、Centre: Avenue Marnix 17, B - 1000 Brussels 2013 CENELEC - All rights of exploitation in any form and by any means reserved worldwide for CENELEC members. Ref. No. CLC/TS 50539-12:2013 E ICS 29.120.50 Supersedes CLC/TS 50539-12:2010 English version Low-voltage surge protective devices - Surge protec
7、tive devices for specific application including d.c. - Part 12: Selection and application principles - SPDs connected to photovoltaic installations Parafoudres basse tension - Parafoudres pour applications spcifiques incluant le courant continu - Partie 12: Principes de choix et dapplication - Paraf
8、oudres connects aux installations photovoltaques berspannungsschutzgerte fr Niederspannung - berspannungsschutzgerte fr besondere Anwendungen einschlielich Gleichspannung - Teil 12: Auswahl und Anwendungsgrundstze - berspannungsschutzgerte fr den Einsatz in Photovoltaik-Installationen This Technical
9、 Specification was approved by CENELEC on 2013-10-21. CENELEC members are required to announce the existence of this TS in the same way as for an EN and to make the TS available promptly at national level in an appropriate form. It is permissible to keep conflicting national standards in force. CENE
10、LEC members are the national electrotechnical committees of Austria, Belgium, Bulgaria, Croatia, Cyprus, the Czech Republic, Denmark, Estonia, Finland, Former Yugoslav Republic of Macedonia, France, Germany, Greece, Hungary, Iceland, Ireland, Italy, Latvia, Lithuania, Luxembourg, Malta, the Netherla
11、nds, Norway, Poland, Portugal, Romania, Slovakia, Slovenia, Spain, Sweden, Switzerland, Turkey and the United Kingdom. PD CLC/TS 50539-12:2013CLC/TS 50539-12:2013 - 2 - Contents Page Foreword . 5 1 Scope 6 2 Normative references 6 3 Terms and definitions . 7 4 Systems and equipment to be protected 9
12、 5 Overvoltages in a PV installation . 9 6 Installation and location of SPDs 9 6.1 General . 9 6.2 PV installation without external LPS . 10 6.3 PV installation with external LPS when separation distance s is kept 11 6.4 PV installation with external LPS when separation distance is not kept 13 7 Equ
13、ipotential bonding. 13 8 Surge protective devices (SPD) in PV installations . 15 9 Requirements for the implementation of SPDs 15 9.1 Decision for using SPDs . 15 9.2 Selection and installation of SPDs for application in PV installation 16 9.2.1 Selection of SPDs installed at the a.c. side of PV ins
14、tallations 16 9.2.2 Selection of SPDs installed at the d.c. side of PV-installation . 18 10 Maintenance . 23 Annex A (informative) Determination of the value of Iimpor In for SPDs for different structures protected by a LPS according to a simplified approach . 24 A.1 Introduction 24 A.2 PV installat
15、ion on a building according to 6.4 . 24 A.2.1 General . 24 A.2.2 Case of voltage limiting and combination type SPDs (having voltage switching and limiting components in series) 26 A.2.3 Case of voltage switching and combination type SPDs (having voltage switching and limiting components in parallel)
16、 27 A.3 Outside free field power plant PV installation according to 6.4 . 27 A.3.1 General . 27 A.3.2 Assumption 27 A.3.3 Result 28 Annex B (informative) Characteristic of a PV source 30 B.1 General . 30 B.2 Calculation of UOCMAX31 B.3 Calculation of ISCMAX31 Annex C (normative) Simplified risk asse
17、ssment based on EN 62305-2 . 32 Bibliography 34 PD CLC/TS 50539-12:2013- 3 - CLC/TS 50539-12:2013 Figures Figure 1 Current branches vs. modes of protection of an SPD. 9 Figure 2 Installation of SPDs in case of PV installation without external LPS 10 Figure 3 Installation of SPDs in case of a buildin
18、g with external LPS when separation distance s is kept 11 Figure 4 Installation of SPDs in case of a building with external LPS when separation distance s is kept Installation with data acquisition and control system . 12 Figure 5 Installation of SPDs in case of PV installation with external LPS whe
19、n separation distance s is not kept . 13 Figure 6 Building with external LPS: Dimensions of all equipotential bonding conductors are 6 mm2except the one indicated in the figure (earthing of the SPD Type 1 located at the origin of installation) . 14 Figure 7 Building with external LPS: Dimensions of
20、equipotential bonding conductors in case of a non-isolated LPS . 15 Figure 8 Installation of SPDs on the a.c.-side and short distance between origin of installation and PV-inverter (E 10 m) 17 Figure 10 Example of an overvoltage protection on d.c. side of a PV installation 19 Figure 11 I-configurati
21、on 21 Figure 12 U-configuration 21 Figure 13 L-configuration. 21 Figure 14 -configuration 21 Figure 15 Y-configuration 22 Figure 16 Single mode SPDs to be connected in Y-configuration 22 Figure A.1 Example of a structure with two external down conductors to determine the value of the discharge curre
22、nt for the selection of SPDs . 25 Figure A.2 Example of a structure of an extended PV installation Free field PV power plant with multiple earthing and a meshed earthing system . 28 Figure B.1 Principle of a PV current source 30 Figure B.2 V/I characteristic of a non-linear PV current source 30 Figu
23、re C.1 L calculation . 33 PD CLC/TS 50539-12:2013CLC/TS 50539-12:2013 - 4 - Tables Table 1 Impulse withstand voltage UWfor equipment between PV generator and inverter 19 Table A.1 Values of I10/350and I8/20for voltage limiting and combination type SPDs (having voltage switching and limiting componen
24、ts in series) . 26 Table A.2 Values of Iimpfor voltage switching and combination type SPDs (having voltage switching and limiting components in parallel) 27 Table A.3 Values of I10/350and I8/20for SPDs intended to be used in free field PV power plant with multiple earthing and a meshed earthing syst
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