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多くのFortinetのFCSS_LED_AR-7.6認定試験を準備している受験生がいろいろなFCSS_LED_AR-7.6「FCSS - LAN Edge 7.6 Architect」認証試験についてサービスを提供するサイトオンラインがみつけたがJapancertはIT業界トップの専門家が研究した参考材料で権威性が高く、品質の高い教育資料で、一回に参加する受験者も合格するのを確保いたします。
質問 # 76
An LDAP server has been successfully configured on FortiGate, which forwards authentication requests to a Windows Active Directory (AD) server. Users can authenticate using PAP, but authentication fails with MSCHAPv2. Why is it not recommended to use PAP for authentication?
Response:
正解:D
質問 # 77
Refer to the exhibit.
On FortiGate, a RADIUS server is configured to forward authentication requests to FortiAuthenticator, which acts as a RADIUS proxy. FortiAuthenticator then relays these authentication requests to a remote Windows AD server using LDAP.
While testing authentication using the CLI command diagnose test authserver, the administrator observed that authentication succeeded with PAP but failed when using MS-CHAPv2.
Which two solutions can the administrator implement to enable MS-CHAPv2 authentication?
(Choose two.)
正解:B、C
解説:
MS-CHAPv2 is a challenge-response protocol, so FortiAuthenticator cannot validate it against a back-end LDAP server because LDAP does not process MS-CHAPv2 exchanges. To support MS-CHAPv2, FortiAuthenticator must either proxy the request to a back-end RADIUS server that understands MS-CHAPv2, or use Windows Active Directory domain authentication so it can validate the credentials through direct AD integration.
質問 # 78
What is the expected behavior when enabling auto TX power control on a FortiAP interface?
正解:B
解説:
Auto TX power control on FortiAP is an RF-optimization feature:
* FortiGate (as wireless controller) continuously evaluatesRSSI of associated clientson each FortiAP radio.
* The algorithm focuses on theweakest client(the one with the worst signal) and adjusts the AP's transmit power so that this client's signal level stays within a configured / target range.
* This helps balance coverage and limit co-channel interference: APs don't transmit at maximum power when clients are close, but will increase power when the weakest client signal drops too low.
Therefore the correct behavior description is:
#C- AP power is adjusted based on the weakest associated client's signal.
Why the others are wrong:
* AandBtalk about matching nearby APs' power or forcing everything to -70 dBm, which is not how FortiAP auto TX works.
* Dincorrectly states the AP "evaluates its own transmission from the client perspective"; the AP can only infer client-side conditions from theclient's RSSI at the AP, not the inverse.
質問 # 79
Refer to the exhibit.
Which shows the WTP profile configuration.
The AP profile is assigned to two FAP-231F APs that are installed in an open plan area.
The first AP has 32 clients associated with the 5 GHz radios and 22 clients associated with the
2.4 GHz radio. The second AP has 12 clients associated with the 5 GHz radios and 20 clients associated with the 2.4 GHz radio.
A dual-band-capable client enters the area near the first AP and the first AP measures the new client at - 33 dBm signal strength. The second AP measures the new client at -43 dBm signal strength.
If the new client attempts to conned to the student 01 wireless network, which AP radio will the client be associated with?
正解:D
解説:
From theWTP profile:
set handoff-rssi 30
set handoff-sta-thresh 30
config radio-1
set band 802.11n-2G
set vaps "Student01"
config radio-2
set band 802.11ac-5G
set darrp enable
set arrp-profile "arrp-default"
set vaps "Student01"
Key points:
Same SSID (Student01)is broadcast onboth APsand onboth bands(2.4 and 5 GHz).
handoff-sta-thresh 30 enablesclient load-balancingbetween APs:
When an AP radio hasmore than 30 associated clients, it starts rejecting new associations so that clients connect to a neighboring AP instead (as long as RSSI is still acceptable).
Current client counts:
AP1:32 clients on 5 GHz, 22 on 2.4 GHz
AP2:12 clients on 5 GHz, 20 on 2.4 GHz
So on 5 GHz:
AP1's 5-GHz radioexceedsthe 30-client threshold (32 > 30) it will try topush new clients away.
AP2's 5-GHz radio iswell belowthe threshold (12 clients) and will happily accept new clients.
The new dual-band client is seen at:
-33 dBmby AP1
-43 dBmby AP2
Even though AP1 has the stronger signal, its 5-GHz radio is already overloaded according to the configured threshold, so AP1 will refuse association attempts from that client. The client will then associate toAP2's 5-GHz radio, which:
Hasfewer clients(better airtime per device), and
Still has an acceptable signal (-43 dBm is easily usable on 5 GHz).
That matches option C exactly.
質問 # 80
You are deploying a FortiSwitch device managed by FortiGate in a secure network environment. To ensure accurate communication, you must identify which protocols are required for communication and control between FortiGate and FortiSwitch.
Which three protocols are used by FortiGate to manage and control FortiSwitch devices? (Choose three.)
正解:C、D、E
解説:
The LAN Edge 7.6 Architect Study Guide identifies the following communication mechanisms between FortiGate and FortiSwitch:
C - FortiLink Protocol (Primary Management Protocol): The study guide states: " FortiLink, also known as the switch controller function, allows FortiGate firewalls to remotely manage FortiSwitch devices. FortiLink defines the management interface and remote management protocol between FortiGate and FortiSwitch, enabling seamless control and integration. " FortiLink is the foundational protocol for the entire management relationship.
B - HTTPS (REST API): The study guide confirms: " FortiGate applies the quarantine-related configuration for the quarantined device to FortiSwitch using the FortiSwitch REST API. " FortiGate communicates with FortiSwitch via HTTPS-based REST API calls for specific configuration pushes such as quarantine enforcement, port configuration, and security policy application.
A - SNMP: SNMP is referenced in the study guide as a management protocol used by FortiGate to monitor and gather status information from FortiSwitch devices. SNMP is a standard network management protocol used for monitoring switch status, which aligns with its role in FortiSwitch management.
Why the other options are wrong:
* D is incorrect - CAPWAP (UDP 5246/5247) is the protocol used between FortiGate and FortiAP for wireless AP management, NOT between FortiGate and FortiSwitch. The study guide explicitly states: " FortiGate manages FortiAPs using the CAPWAP protocol. "
* E is incorrect - IGMP is an IP multicast group management protocol. It plays no role in the management or control channel between FortiGate and FortiSwitch. It is not mentioned in the LAN Edge 7.6 study guide in the context of FortiSwitch management.
質問 # 81
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