H12-323_V2.0 · Question #496
In the agile judgment distributed networking scenario consisting of the AirEngine series central AP and RU, the CAPWAP control tunnel between WAC and RU is composed of the CAPWAP control tunnel…
The correct answer is A. True. Option A is correct because in Huawei's AirEngine distributed networking architecture, the central AP acts as an intermediate relay node between the WAC and the RU - it does not establish a direct CAPWAP control tunnel end-to-end from WAC to RU. Instead, the logical tunnel from…
Question
In the agile judgment distributed networking scenario consisting of the AirEngine series central AP and RU, the CAPWAP control tunnel between WAC and RU is composed of the CAPWAP control tunnel between WAC and central AP and the CAPWAP control tunnel between central AP and RU.
Options
- ATrue
- BFalse
How the community answered
(25 responses)- A72% (18)
- B28% (7)
Explanation
Option A is correct because in Huawei's AirEngine distributed networking architecture, the central AP acts as an intermediate relay node between the WAC and the RU - it does not establish a direct CAPWAP control tunnel end-to-end from WAC to RU. Instead, the logical tunnel from WAC to RU is formed by chaining two physical CAPWAP segments: WAC ↔ Central AP, then Central AP ↔ RU, making the statement accurately describe how the control plane path is constructed.
Option B (False) is incorrect because it would imply the WAC and RU communicate over a single, direct CAPWAP tunnel - which misrepresents the architecture; the central AP is an active participant in the tunnel chain, not a transparent pass-through device.
Memory tip: Think of the central AP as a "relay station" - just as a two-leg flight still gets you from A to C via B, the CAPWAP control tunnel from WAC to RU is really two connected tunnel legs with the central AP in the middle.
Topics
Community Discussion
No community discussion yet for this question.