Low-voltage surge protective devices - Part 32: Surge protective devices connected to the d.c. side of photovoltaic installations - Selection and application principles

IEC 61643-32:2017 describes the principles for selection, installation and coordination of SPDs intended for use in Photovoltaic (PV) systems up to 1 500 V DC and for the AC side of the PV system rated up to 1 000 V rms 50/60 Hz. The photovoltaic installation extends from a PV array or a set of interconnected PV-modules to include the associated cabling and protective devices and the inverter up to the connection point in the distribution board or the utility supply point. This part of IEC 61643 considers SPDs used in different locations and in different kinds of PV systems:PV systems located on the top of a building. PV systems located on the ground like free field power plants characterized by multiple earthing and a meshed earthing system. The term PV installation is used to refer to both kinds of PV systems. The term PV power plant is only used for extended free-field multi-earthed power systems located on the ground. For PV installations including batteries additional requirements may be necessary.
The contents of the corrigendum of June 2019 have been included in this copy.

Parafoudres basse tension - Partie 32: Parafoudres connectés au côté courant continu des installations photovoltaïques - Principes de choix et d'application

IEC 61643-32:2017 décrit les principes de choix, d'installation et de coordination des parafoudres destinés à être utilisés dans les systèmes photovoltaïques (PV) jusqu'à une tension maximale de 1 500 V en courant continu, et en courant alternatif dans un système photovoltaïque d’une tension assignée maximale de 1 000 V en valeur efficace sous une fréquence de 50 Hz/60 Hz. Une installation photovoltaïque englobe à la fois un groupe photovoltaïque ou un ensemble de modules photovoltaïques interconnectés, des dispositifs de câblage et de protection associés, ainsi que l’onduleur et le point de connexion d'un tableau de distribution ou le point d'alimentation du réseau. La présente partie de l'IEC 61643 traite des parafoudres utilisés dans différents emplacements et avec différents types de systèmes photovoltaïques: Les systèmes photovoltaïques situés au sommet d'un bâtiment. Les systèmes photovoltaïques au sol comme les centrales électriques en champ libre caractérisées par plusieurs mises à la terre et un système de mise à la terre maillé. Le terme «installation photovoltaïque» fait référence aux deux types de systèmes photovoltaïques. Le terme «centrale photovoltaïque» s'applique uniquement aux réseaux d'alimentation étendus mis à la terre en des points multiples en champ libre au sol. Des exigences supplémentaires peuvent être nécessaires pour les installations photovoltaïques comportant des batteries.
Mots clés: SPD - surge protective device connectés aux installations photovoltaïques, parafoudres, PV
Le contenu du corrigendum de juin 2019 a été pris en considération dans cet exemplaire.

General Information

Status
Published
Publication Date
19-Sep-2017
Current Stage
PPUB - Publication issued
Start Date
11-Aug-2017
Completion Date
20-Sep-2017
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IEC 61643-32 ®
Edition 1.0 2017-09
INTERNATIONAL
STANDARD
NORME
INTERNATIONALE
colour
inside
Low-voltage surge protective devices –
Part 32: Surge protective devices connected to the d.c. side of photovoltaic
installations – Selection and application principles

Parafoudres basse tension –
Partie 32: Parafoudres connectés au côté courant continu des installations
photovoltaïques – Principes de choix et d'application

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IEC 61643-32 ®
Edition 1.0 2017-09
INTERNATIONAL
STANDARD
NORME
INTERNATIONALE
colour
inside
Low-voltage surge protective devices –

Part 32: Surge protective devices connected to the d.c. side of photovoltaic

installations – Selection and application principles

Parafoudres basse tension –
Partie 32: Parafoudres connectés au côté courant continu des installations

photovoltaïques – Principes de choix et d'application

INTERNATIONAL
ELECTROTECHNICAL
COMMISSION
COMMISSION
ELECTROTECHNIQUE
INTERNATIONALE
ICS 29.240.01; 29.240.10 ISBN 978-2-8322-4583-5

– 2 – IEC 61643-32:2017 © IEC 2017
CONTENTS
FOREWORD . 4
INTRODUCTION . 6
1 Scope . 7
2 Normative references . 7
3 Terms and definitions . 8
4 Systems and equipment to be protected . 12
5 Overvoltages in a PV installation . 12
6 Installation and location of SPDs . 13
6.1 General . 13
6.2 Requirements for different PV installations:. 15
6.2.1 PV installation without an external LPS . 15
6.2.2 PV installation with an external LPS when the separation distance (s) is
maintained (excluding multi-earthed solar systems, such as PV power
plants) . 16
6.2.3 PV installation with an external LPS where the separation distance (s)
cannot be maintained (including multi-earthed systems, such as PV
power plants) . 17
6.2.4 PV installation including communication and signalling circuits . 18
7 Equipotential bonding . 18
8 Requirements for the installation of surge protective devices (SPDs) in a
PV system . 19
9 Selection and installation of SPDs in PV installations . 19
9.1 Selection of SPDs on the AC side . 19
9.1.1 General . 19
9.1.2 Selection of SPDs with regard to nominal discharge current I and
n
impulse current I . 19
imp
9.1.3 Selection of SPDs with regard to voltage protection level U . 20
P
9.1.4 Installation of SPDs on the AC side . 20
9.2 Selection of SPDs installed on the DC side . 22
9.2.1 General . 22
9.2.2 Selection of SPDs with regard to nominal discharge current I and
n
impulse current I . 22
imp
9.2.3 Selection of U of SPDs on the DC side . 22
CPV
9.2.4 Selection of SPDs with regard to voltage protection level U . 22
p
9.2.5 Installation of SPDs on the DC side . 23
9.2.6 Cross-sections of connecting conductors for SPDs on the DC side . 24
9.2.7 Internal connection schemes of multipole SPDs or combinations of
SPDs with a single mode of protection on the DC side . 25
9.2.8 Selection of I of SPDs on the DC side . 26
SCPV
9.2.9 Coordination of SPDs . 27
10 Maintenance . 27
Annex A (normative) Determination of the value of I or I for SPDs according to
imp n
the simplified approach for different structures protected by an LPS . 28
A.1 General . 28
A.2 Building with a PV installation on the roof according to 6.2.3 . 29
A.3 Free- field PV power plant. 32
Annex B (informative) Characteristics of a PV source . 35

B.1 PV source characteristics. 35
B.2 Calculation of U . 36
OC MAX
B.3 Calculation of I . 37
SC MAX
Annex C (informative) Additional information to clause 6: Installation and location of
SPD and to clause 7: Equipotential bonding . 38
C.1 PV installation including communication and signalling circuits . 38
C.2 PV installation and dimensions of equipotential bonding conductors . 40
Annex D (informative) Exceptions in the USA related to Class I tested SPDs . 42
Bibliography . 43

Figure 1 – Installation of SPDs in the case of a building without an external LPS . 15
Figure 2 – Installation of SPDs in the case of a PV installation with an external LPS
where the separation distance (s) is maintained . 16
Figure 3 – Installation of SPDs in the case of a PV-installation with an external LPS
where the separation distance (s) cannot be maintained . 17
Figure 4 – Installation of SPDs on the AC side with a short distance between the
origin of the installation and the PV inverter (E < 10 m) . 21
Figure 5 – Installation of SPDs on the AC side with a long distance between the origin
of the installation and the PV inverter (E ≥ 10 m) . 21
Figure 6 – Example of overvoltage protection on the DC side of a PV installation . 24
Figure 7 – Example of SPD connections on the DC side of an unearthed PV source . 25
Figure 8 – Example of SPD connection on the DC side of a reliable earthed PV source . 26
Figure A.1 – Example of a structure with two external down conductors to determine
the value of the discharge current for the selection of SPDs . 30
Figure A.2 – Example of the structure of an extended PV installation. A PV power
plant with multiple earthing and a meshed earthing system . 33
Figure B.1 – Schematic of a PV current source .
...

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