Internal MV circuits: Difference between revisions
From Electrical Installation Guide
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Internal MV circuits are dedicated to the supply of the secondary MV/LV substations dispersed in the installation. They are three typical principles commonly used for this purpose {{FigRef|D11}}: | |||
Internal MV circuits are dedicated to the supply of the secondary MV/LV substations dispersed in the installation. They are three typical principles commonly used for this purpose | |||
* Single feeder | * Single feeder | ||
* Dual feeder | * Dual feeder | ||
* Open ring | * Open ring | ||
{{FigImage|DB422127_EN|svg|D11|Single feeder, Dual feeder, Open ring}} | |||
Comparison of these three typical principles of internal distribution is given {{FigRef|D12}}. | |||
Comparison of these three typical principles of internal distribution is given | |||
{| class="wikitable | {{tb-start|id=Tab1084|num=D12|title=Comparison of the typical internal circuits|cols=3}} | ||
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! colspan="3" | MV circuit configuration | ! colspan="3" | MV circuit configuration | ||
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| Short interruption not acceptable | | Short interruption not acceptable | ||
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Latest revision as of 09:48, 22 June 2022
Internal MV circuits are dedicated to the supply of the secondary MV/LV substations dispersed in the installation. They are three typical principles commonly used for this purpose Fig. D11:
- Single feeder
- Dual feeder
- Open ring
Comparison of these three typical principles of internal distribution is given Fig. D12.
Fig. D12 – Comparison of the typical internal circuits
MV circuit configuration | |||
---|---|---|---|
Characteristic to consider | Single feeder | Open ring | Dual feeder |
Site topology | Any | Single or several buildings | Single or several buildings |
Power demand | Any | > 1250kVA | > 2500kVA |
Disturbance sensitivity | Long interruption acceptable | Short interruption acceptable | Short interruption not acceptable |