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Each network zone can be protected using different protection arrangement depending on their configurations.
Here DC network Zone 1 (±320 kV DC) which is a radial network is protected using ACCBs and DC switches.
Each DC network zone can be protected using any combination of slow mechanical DCCBs, ACCBs and DC switches depending on the zone configuration.
Each DC network zone is protected using either AC circuit breakers coordinated with DC switches or slow mechanical type DC circuit breakers to minimize the capital cost.
As for the DC network Zone 2 (±400 kV DC), a meshed network configuration is used with increased reliability due to redundant supply channels.
The main concept of this protection arrangement in DC network Zone 2 (meshed network) is that, in case of any fault events within Zone 2, the DC-DC converter can quickly isolate the faulty zone by blocking its converter such that the DC network Zone 1 can remain operational all the times.
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In case of a fault event in one of the DC network zones at least two DC network zones can remain operational.
No Fast acting DCCBs are used within any DC network zones so as to reduce the cost and power loss.
For the two tree species we highlighted crucial network zones in relation to habitat quality and connectivity.
Such a heuristic focuses on the application of NDE operators to alarming network zones according to technical constraints.
The partitioned DC network zones can be protected by means of ACCBs, DC Switches and slow DCCBs depending on their individual network configuration.
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