Günün Sorusu

Her gün yeni bir CompTIA Network+ sorusu — alışkanlık kazan.

In a high-ceiling logistics warehouse with large metal shelving units, wireless handheld inventory scanners experience severe frame loss (~40%) and dropped connections despite exhibiting a strong Received Signal Strength Indicator (RSSI) reading of 52 dBm-52\text{ dBm}. A packet analysis reveals a massive spike in 802.11802.11 Layer 2 retransmissions and corrupted preamble headers. Spectrum analysis confirms no adjacent or co-channel Wi-Fi networks exist in the area. Which of the following wireless phenomena is the primary root cause of this degraded performance?

  1. Multipath interference caused by radio frequency reflections creating excessive delay spreadCevap
  2. B
    Adjacent channel overlap from misconfigured 2.4 GHz access point channel assignments
  3. C
    Free-space path loss resulting in signal attenuation across extended physical distances
  4. D
    Physical duplex mismatch on the upstream switch port connecting the access point

Cevap

Multipath interference caused by radio frequency reflections creating excessive delay spread is the primary root cause.
In environments with dense metal structures like warehouses, radio frequency (RF) signals bounce off reflective surfaces. These bounced signals arrive at the receiving antenna via different paths at slightly different times. This phenomenon, known as multipath interference, causes delay spread. When the delay spread exceeds the guard interval of the Wi-Fi transmission, the overlapping reflections destructively interfere with one another, corrupting frame preambles and causing severe retransmissions despite high overall received power (RSSI).

Adım Adım Çözüm

1
Analyze reported signal metrics and physical environment
The RSSI reading is strong (52 dBm-52\text{ dBm}), eliminating severe signal attenuation or excessive distance as the root cause. The environment consists of reflective metallic shelving racks.
RSSI measures total received power, including reflected signals, but does not measure signal quality or phase alignment.
2
Evaluate packet capture and spectrum analysis findings
Corrupted preamble headers and high 802.11802.11 retransmission counts without active co-channel or adjacent channel interference point directly to Layer 1 RF distortion rather than channel congestion.
Corrupted preambles occur when the receiver cannot synchronize due to phase distortion and overlapping signal reflections.
3
Correlate symptoms with physical RF behavior
RF waves bounce off metallic structures, causing multiple delayed versions of the same signal to arrive at the receiver at slightly different times (delay spread), resulting in destructive multipath interference.
When delay spread exceeds the guard interval of the 802.11802.11 standard, symbols overlap and corrupt the frame headers.

Anahtar Kavram

Multipath Interference and Delay Spread