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最新的 Professional Level Exams 3V0-23.25 免費考試真題 (Q69-Q74):
問題 #69
A Virtual Infrastructure (VI) Admin is investigating chronic congestion alerts on a VCF 9.0 vSAN Cluster. The storage hardware consists of high-end NVMe drives which are only at 30% utilization, yet the vSAN Performance Service shows significant "Network Congestion".
The network architecture is configured as follows:
- 2x 25 Gbps physical NICs per host.
- vSAN traffic and vMotion traffic share the same Distributed Port
Group.
- Network I/O Control (NIOC) is enabled.
- Jumbo Frames (MTU 9000) are configured on the vSphere Distributed
Switch (vDS) but MTU 1500 is configured on the physical ToR switches.
The admin suspects that network misconfigurations are propagating faults into the storage stack.
Which of the following interactions explain how the current network design is causing the storage backend latency and congestion? (Select all that apply.)
- A. The Network Congestion metric specifically indicates that the vSAN Distributed Object Manager (DOM) is delaying host-to-host replication traffic to match the limited throughput of the physical switch buffers.
- B. The 25 Gbps NICs are fundamentally insufficient for vSAN ESA requirements; VCF 9.0 strictly requires 100 Gbps RDMA networking for NVMe performance.
- C. Sharing vSAN and vMotion traffic without appropriate NIOC shares allows large vMotion migrations to starve the vSAN network stack, triggering log-congestion on the storage devices.
- D. The MTU mismatch between the vDS (9000) and ToR switches (1500) causes silent packet drops for large vSAN I/O payloads, forcing TCP retransmissions that vSAN interprets as storage latency.
答案:A,C,D
問題 #70
What is the benefit of vSAN encryption?
- A. Better compression
- B. Reduced latency
- C. Faster reads
- D. Data security at rest
答案:D
問題 #71
An administrator is monitoring a vSAN ESA backed workload domain that is dedicated for running AI inferencing. When the administrator navigates to the Storage Performance dashboard in VMware Cloud Foundation Operations, the performance dashboard shows:
* High backend write latency ( > 8 ms)
* Low read latency ( < 1 ms)
* Normal network throughput
* Disk Group Health = Green
Based on the readings above, what would be the explanation?
- A. The workload's small-block writes are compressed inline, lowering backend throughput and increasing cache misses.
- B. A wrongly sized read cache tier is throttling the write buffer, thus forcing the reads to trespass to the capacity tier.
- C. This is caused due to transient commit-queue delays, since the workload is exhibiting random-writes saturating ESA's write buffer.
- D. A vSAN network congestion event on the vSAN TCP port 2233 is throttling mirror acknowledgements.
答案:C
解題說明:
The readings indicate a write-path pressure condition rather than a read- cache, network, or device- health issue. In vSAN ESA, storage devices are organized into a storage pool architecture where NVMe devices contribute both capacity and performance. The dashboard shows low read latency and normal network throughput, so the read path and vSAN network are not the likely bottlenecks. Disk Group Health being green also rules out an obvious device or pool-health failure. AI inferencing environments can still create bursts of small random writes from logs, metadata updates, temporary files, checkpoints, and application-side write activity. When backend write latency rises while reads remain low, the most likely explanation is transient write-buffer or commit-queue pressure. ESA does not use the traditional OSA read-cache tier model, so option B is incorrect. ESA also does not rely on OSA- style inline deduplication and compression behavior for the stated cause, making option C incorrect.
Normal network throughput makes option D unlikely. Reference topics: vSAN ESA Architecture, Storage Pool Metrics, Backend Write Latency, VCF Operations Storage Performance.
問題 #72
A CTO is designing a Disaggregated vSAN (HCI Mesh) topology for VCF 9.0.
[Architecture Diagram: HCI Mesh showing Compute-Only Client Cluster mounting a vSAN Max Server Cluster] The CTO applies a strict IOPS Limit: 1000 SPBM policy to the database VMs running on the Compute- Only Client cluster to protect the centralized vSAN Max backend.
Where and how does the HCI Mesh architecture efficiently enforce this IOPS Limit constraint? (Select all that apply.)
- A. The IOPS limit is forwarded as metadata tags to the vSAN Max Server cluster, which throttles the I/O at the NVMe device level (LSOM).
- B. If a VM generates 5,000 IOPS, the Compute-Only host throttles 4,000 of them instantly, ensuring only the allowed 1,000 IOPS are transmitted across the Datacenter Interconnect.
- C. The IOPS Limit is enforced strictly by the DOM Client running inside the hypervisor of the Compute- Only Client host.
- D. The IOPS limit dynamically adjusts standard vSphere DRS CPU allocation on the Client cluster to match the storage capability.
- E. IOPS Limits are strictly unavailable for remotely mounted datastores; policies must be managed at the vSAN Max local level.
答案:B,C
問題 #73
While creating a recovery plan that matches the business continuity plan, an administrator needs to add custom steps to the recovery plan.
Which three custom steps are available? (Choose three.)
- A. IP reconfiguration
- B. Pause
- C. Top level commands
- D. Per machine commands
- E. Message prompt
- F. Create writable Storage Snapshots
答案:C,D,E
解題說明:
The available custom recovery steps are top-level commands, message prompts, and per-machine commands.
VMware Live Site Recovery recovery plans operate like automated runbooks, and administrators can insert custom steps to match business continuity requirements. Broadcom TechDocs states that custom recovery steps can run commands or present messages to the user during a recovery. Command recovery steps are divided into two categories: top-level commands and per-virtual-machine commands. Top-level commands are inserted directly into the recovery plan and run on the VMware Live Site Recovery server. Per-machine commands are associated with individual recovered VMs and run before or after that VM is powered on, depending on placement in the workflow. Message prompts are interactive steps that pause the plan until an operator acknowledges the message, making them useful for manual validation, external approvals, or runbook checkpoints. IP reconfiguration is handled through recovery plan networking and guest customization, not as a custom step type. Writable storage snapshots are part of test recovery/storage behavior, not a custom recovery step. Reference topics: VMware Live Site Recovery Recovery Plans, Creating Custom Recovery Steps, Top-Level Commands, Message Prompts, Per-VM Commands.
問題 #74
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