A network administrator observes severe latency and frequent frame retries on an enterprise floor using a 2.4 GHz wireless deployment. Spectrum analysis reveals high co-channel interference (CCI) among neighboring access points. Which operational characteristic of the 2.4 GHz band primarily causes this channel reuse constraint when compared to the 5 GHz band?
- The 2.4 GHz spectrum offers only three non-overlapping 20 MHz channels in standard deployments, restricting spatial frequency reuse.Cevap
- B2.4 GHz radio signals experience higher free-space path loss and attenuation through solid walls than 5 GHz radio signals.
- CAccess points operating in the 2.4 GHz band automatically disable DTLS encryption on CAPWAP control tunnels when client density rises.
- DThe 2.4 GHz spectrum relies on Dynamic Frequency Selection (DFS) to assign adjacent access points to identical broadcast channels.
Cevap
The 2.4 GHz spectrum offers only three non-overlapping 20 MHz channels in standard deployments, restricting spatial frequency reuse.
In 802.11 wireless networks using the 2.4 GHz ISM band, 20 MHz channels are spaced only 5 MHz apart. Consequently, only channels 1, 6, and 11 do not overlap with each other. In dense multi-AP deployments, having only three usable non-overlapping channels causes neighboring access points to operate on the same channel, generating high co-channel interference (CCI). In contrast, the 5 GHz band provides a much larger selection of non-overlapping channels, enabling far more flexible channel reuse.
Adım Adım Çözüm
Anahtar Kavram
2.4 GHz vs 5 GHz Non-Overlapping Channels and Co-Channel Interference