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Before connecting, mounting, and powering 213 total controller-based APs, what action should be taken to ensure that they are configured by the controller once powered on and connected to the network?
A. Configure the controller to provide PoE to the APs
B. Configure the network to allow the APs to have direct Internet access immediately
C. Ensure that TLS tunnels will work between the APs and the controller
D. Configure profiles in the controller and assign them to the APs
答案:D
解題說明:
When using controller-based WLANs, configuration profiles (e.g., for SSIDs, VLANs, radio settings, etc.) are defined on the controller and then assigned to APs-often by AP group or based on AP naming convention or location. This enables automatic provisioning once APs connect to the network.
From CWDP-305:
"Prior to deployment, profiles should be configured on the controller and associated with AP groups or individual APs. Once connected, APs will download their configuration from the controller automatically."
- Reference: CWDP-305 Official Study and Reference Guide, Chapter on Infrastructure Design
問題 #14
After deploying a 5 GHz-only WLAN infrastructure in the USA, using 20 MHz channel widths and all 25 available channels, a manager tests the Guest SSID on his 802.11n tablet. During testing, he experiences several areas with poor RSSI (below -80 dBm) or no signal at all. Upon checking, all APs are operational, and coverage was validated post-deployment. What is the likely cause of this issue?
A. His tablet doesn't support the 5 GHz band
B. His tablet doesn't support MU-MIMO
C. His tablet does not support one or more of the 5 GHz channels
D. His tablet only supports a 40 MHz channel-width
答案:C
問題 #15
Main Topic:Wireless Design Process
Question:
What are the three biggest WLAN enterprise verticals? (Choose all that apply.)
A. Office environments
B. Education
C. Healthcare
D. Retail
E. Warehouses
答案:B,C,D
解題說明:
Comprehensive and Detailed Explanation:
In the context of WLAN design, certain enterprise verticals have distinct requirements and considerations:
A: Education:Educational institutions often require robust WLANs to support high-density environments, BYOD policies, and seamless roaming across campuses.
C: Healthcare:Healthcare facilities demand WLANs that support critical applications, real-time data access, and stringent security protocols to protect sensitive patient information.
E: Retail:Retail environments utilize WLANs for point-of-sale systems, inventory management, and customer engagement through Wi-Fi services.
B: WarehousesandD. Office environmentsare also important but are not typically categorized among the top three enterprise verticals in WLAN design considerations.
Reference:CWDP-305 Study Guide, Chapter on Wireless Design Process - Enterprise Vertical Market Considerations.
問題 #16
When designing for OFDMA, why might the same channel bandwidth result in greater efficiency than that available in 802.11n and 802.11ac?
A. The design will use MU-MIMO, which is not available in either 802.11n or 802.11ac.
B. The clients will use UL MU-MIMO coupled with DSSS, which was not available in 802.11n or 802.11 ac.
C. The design will use RUs that allow for transmissions to multiple client devices concurrently without the use of MU-MIMO.
D. The design will use transmit beamforming, which is not available in either 802.11n or 802.11ac.
答案:C
解題說明:
Orthogonal Frequency Division Multiple Access (OFDMA), introduced in 802.11ax, enhances efficiency by dividing a channel into smaller sub-channels called Resource Units (RUs). This allows multiple devices to transmit simultaneously within the same channel bandwidth, reducing latency and improving throughput.
Unlike previous standards like 802.11n and 802.11ac, which primarily support single-user transmissions per channel, OFDMA's ability to handle multiple concurrent transmissions without relying on MU-MIMO leads to more efficient spectrum utilization and better performance in dense environments.
Reference: CWDP-305 Official Study and Reference Guide, Chapter on Designing for Specific Applications
問題 #17
How much more power can a 1 Mbps 802.11b signal have than a 54 Mbps 802.11g signal if it is sent through a saturated amplifier?
Response: