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HPE7-A06ソフトウエア & HPE7-A06試験情報
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HPE Campus Access Switching Expert Written Exam 認定 HPE7-A06 試験問題 (Q10-Q15):
質問 # 10
Exhibit.
VSX cluster is already configured. Your task is to validate a correct configuration for the Edge-1 switch that is connected to a CCTV provider that will install its switching infrastructure. The CCTV switches do not support STP.
What needs to be configured on the Edge-1 switch ports connecting to CCTV-SW1 and CCTV-SW2 to prevent loop problems with the existing setup with automatic recovery features?
- A. configure spanning-tree and TCN-guard timeout for CCTV switch ports
- B. configure lag with lacp fallback for CCTV switch ports
- C. configure spanning-tree with bpdu-guard timeout values for CCTV switch ports
- D. configure spanning-tree with udld for CCTV switch ports
正解:C
解説:
The requirement is to prevent loops on Edge-1 switch ports connected to third-party CCTV switches that do notsupport STP. The solution must also include an automatic recovery feature if a port gets disabled.
* Loop Prevention without STP:When connecting to non-STP devices, standard STP loop prevention (like BPDU Guard) might not work if the connected device doesn't send BPDUs. AOS-CX offers a feature called loop-protect which sends probes to detect loops in non-STP environments.
* Automatic Recovery:Features that disable ports (like BPDU Guard or Loop Protect) often have a timeout or auto-recovery option (port-disable-timer for Loop Protect) allowing the port to automatically re-enable after a configured period.
* Analysis of Options:
* A: LACP fallback applies to LAGs, not general loop prevention.
* B: TCN-guard is an STP feature, irrelevant here.
* C: Suggests spanning-tree with bpdu-guard timeout. BPDU Guard detects loops by listening for BPDUs, which these CCTV switches don't send. However, the timeout featuredoesprovide the required automatic recovery mechanism if the portweredisabled by BPDU Guard.
* D: UDLD detects unidirectional links, not typically bridging loops caused by topology.
* Re-evaluation:The ideal AOS-CX feature is loop-protect with port-disable-timer. Since this isn't explicitly an option, we must evaluate the given choices. Option C is theonlyone that mentions a mechanism (bpdu-guard timeout) providing automatic recovery from a disabled state. While BPDU Guard isn't the right detection mechanism here, it's the closest fit regarding the auto- recoveryrequirement. It's possible the question implicitly assumes some stray BPDUs might trigger it or that it's the intended "best fit" answer despite the detection mechanism mismatch.
* Conclusion:Given the options, Option C is the most plausible because it includes the timeout feature associated with bpdu-guard, fulfilling the automatic recovery requirement, even though BPDU guard itself is not the ideal detection method for loops involving non-STP devices.
References:AOS-CX Spanning Tree Protocol Guide (BPDU Guard, Timeout), AOS-CX Interface Configuration Guide (loop-protect feature). This relates to "Switching" (19%) and "Network Resiliency and virtualization" (8%) objectives.
質問 # 11
You see the output unknown the first time you in the command, but the next time you see the following information displayed.
What aresome things you could took at in the switch to troubleshootthe issue? (Select two.)
- A. diag cable 1/1/X
- B. diag interface 1/VX transceiver all
- C. diag cable-diagnostic 1/1/X
- D. diag 1/1/X transceiver all
- E. diag interface transceiver al
正解:C、D
解説:
The question involves troubleshooting an issue where the command output is initially unknown, but subsequent executions show diagnostic information for an interface (1/1/X). The task is to identify appropriate diagnostic commands to troubleshoot the issue.
* Analysis of Options:
* Option A (diag interface transceiver al):Incorrect syntax; "al" is not a valid parameter.
* Option B (diag interface 1/VX transceiver all):Incorrect syntax; "1/VX" is not a valid interface format.
* Option C (diag cable-diagnostic 1/1/X):Correct. This command runs a cable diagnostic test (TDR) on interface 1/1/X to check for cable faults, such as opens or shorts.
* Option D (diag cable 1/1/X):Incorrect; "diag cable" is not a valid AOS-CX command.
* Option E (diag 1/1/X transceiver all):Correct. This command displays detailed transceiver information, including status, errors, and signal quality, useful for diagnosing interface issues.
* Why C and E are Correct:The diag cable-diagnostic 1/1/X command is used to perform TDR tests to identify cable faults, which could cause connectivity issues. The diag 1/1/X transceiver all command provides detailed transceiver diagnostics, such as power levels, errors, or hardware issues, helping pinpoint problems with the interface or connected device. These commands align with AOS-CX troubleshooting workflows for physical layer issues.
* Relevance to Certification Objectives:
* Troubleshooting (10%):Involves using diagnostic commands to troubleshoot campus network issues.
* Connectivity (9%):Includes identifying problem areas in device deployment, such as cabling or transceiver issues.
References:
HPE Aruba Networking AOS-CX Configuration Guide: Diagnostic Commands, covering cable diagnostics and transceiver diagnostics.
HPE7-A06Study Guide: Details troubleshooting tools for AOS-CX switches.
HPE Aruba Networking Technical Documentation: AOS-CX Troubleshooting, explaining diagnostic command usage.
質問 # 12
An administrator is monitoringthird-party WLAN transmitters m HPE Aruba Networking Central and some of them are classified as rogue and suspected rogue How aresuspected rogues classified when using the default classification method for the rule "Suspected AP On-Prem" in HPE Aruba Networking Central?
- A. signal level = "-55 dbM" AND WLAN classification =''Interfering"
- B. signal level = "-50 dbM" ANDWLAN classification = "On Wire"
- C. signal level ="-50 dbM" AND WLAN classification = "Interfering"
- D. signal level = '-65 dbM- AND WLAN classification ="On-Prem"
正解:D
解説:
The question asks how suspected rogue APs are classified using the default classification method for the
"Suspected AP On-Prem" rule in HPE Aruba Networking Central.
* Analysis of Options:
* Option A:Correct. Suspected rogues are classified with a signal level of -65 dBm (indicating proximity) and WLAN classification of "On-Prem" (indicating they are on the premises).
* Option B:Incorrect. A signal level of -55 dBm is too strong, and "Interfering" is not specific to on-premises rogues.
* Option C:Incorrect. A signal level of -50 dBm is even stronger, and "Interfering" is incorrect.
* Option D:Incorrect. "On Wire" classification applies to wired rogue detection, not wireless on- premises APs.
* Why Option A is Correct:In HPE Aruba Networking Central, the "Suspected AP On-Prem" rule identifies rogue APs based on their signal strength and location. A signal level of -65 dBm indicates the AP is close enough to be on the premises, and the "On-Prem" classification confirms it's detected within the managed network's environment. This default rule helps identify potential security threats by flagging unauthorized APs with moderate to strong signals, distinguishing them from interfering or distant APs, as per Aruba's wireless security framework.
* Relevance to Certification Objectives:
* WLAN (9%):Designing and troubleshooting RF attributes and wireless security functions.
* Security (10%):Troubleshooting and identifying rogue APs in customer networks.
* Troubleshooting (10%):Analyzing wireless issues using Aruba Central tools.
References:
HPE Aruba Networking Central User Guide: Rogue AP Detection and Classification.
HPE7-A06Study Guide: Covers wireless security and rogue AP management.
HPE Aruba Networking Technical Documentation: Wireless Security and Rogue Detection Best Practices.
質問 # 13
Exhibit.
An end-to-end QoS design needs to be Implemented for wired and wireless. What is needed on the LAN side to maintain the correct DSCP tags?
- A. to create a WMM to DSCP mapping on the LAN Edge
- B. to create a custom DSCP mapping as WLAN DSCP values are different
- C. to trust at DSCP-marked packetsin the QoS interior ports
- D. tocreate a WMM la DSCP mapping on the WLAN side
正解:C
質問 # 14
A customer is trialing the below colorless port configuration on a single switch and has noticed that users roaming to access points connected to the test switch are unable to receive an IP address on the corporate Wi- R network, which is operating in bridged mode All other SSIDs are working as expected and the AP is Online in HPE Aruba Networking Central.
The security team reports that there have been no failed authentications m HPE Aruba Networking ClearPass Access Tracker and that the last entry for the wiredport is returning the KADIUS Aruba-User-Hold attribute
'Access_Point.
Which configuration change is required to resolve the issue?
- A. interface 1/1/1-1/1/48
aaa authentication port-access client-limited 0 - B. port-access client-move enable
- C. port access role Access_point auth-mode device-mode
- D. interface 1/1/1/1-1/48
port-access onboarding-method concurrent enable
正解:A
解説:
The issue involves users roaming to APs connected to a test switch failing to receive an IP address on the corporate Wi-Fi network (bridged mode), with ClearPass reporting a RADIUS Aruba-User-Role attribute of Access_Point. The goal is to identify the configuration change needed to resolve this issue.
* Analysis of Options:
* Option A (port-access client-move enable):Enables client movement between ports but does not address the AP authentication issue.
* Option B (aaa authentication port-access client-limit 0):Correct. Setting the client limit to 0 on the switch ports (1/1/1-1/1/48) disables MAC authentication for APs, allowing them to be treated as trusted devices and preventing the application of an incorrect role.
* Option C (port-access onboarding-method concurrent enable):Enables concurrent onboarding but is unrelated to the AP role issue.
* Option D (port-access role Access_point auth-mode device-mode):Configures a device mode role but does not resolve the IP assignment issue caused by incorrect authentication.
* Why Option B is Correct:The issue arises because the switch is applying 802.1X or MAC authentication to the AP ports, resulting in ClearPass assigning the Access_Point role, which restricts client connectivity. By setting aaa authentication port-access client-limit 0 on the AP-connected ports (1
/1/1-1/1/48), the switch disables port-access authentication for these ports, treating the APs as trusted devices. This allows clients to authenticate properly via the AP and receive IP addresses in bridged mode, resolving the issue.
* Relevance to Certification Objectives:
* WLAN (9%):Involves troubleshooting wireless functions and Layer 2 issues related to AP connectivity.
* Authentication/Authorization (9%):Includes troubleshooting ClearPass integration and 802.1X configurations.
* Security (10%):Covers troubleshooting wired 802.1X implementations.
References:
HPE Aruba Networking AOS-CX Configuration Guide: Port Access Authentication, detailing client-limit configuration.
HPE7-A06Study Guide: Covers ClearPass integration and AP authentication troubleshooting.
HPE Aruba Networking Technical Documentation: Dynamic Segmentation and Port Access Security.
質問 # 15
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