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HPE Storage Architect Sample Questions:
1. A Storage Administrator is assessing an aging legacy environment for migration to an HPE Alletra platform. The administrator reviews the following performance telemetry snippet from a critical Oracle volume:
Time: 10:00:00 | Vol: Ora_Data_01 | IOPS: 45,000 | Latency_Read: 1.2ms | Latency_Write:
8.5ms | Queue_Depth: 128
Time: 10:05:00 | Vol: Ora_Data_01 | IOPS: 48,000 | Latency_Read: 1.5ms | Latency_Write:
12.1ms | Queue_Depth: 144
Time: 10:10:00 | Vol: Ora_Data_01 | IOPS: 46,000 | Latency_Read: 1.3ms | Latency_Write:
10.5ms | Queue_Depth: 132
Which TWO conclusions can be drawn from this telemetry data regarding the legacy array's current state? (Choose 2.)
A) The current workload profile exhibits significant write latency that the target Alletra must address
B) The legacy array is experiencing a critical read performance bottleneck due to insufficient cache
C) The read latency indicates a complete failure of the legacy array's predictive tiering algorithms
D) The legacy storage backend is struggling to destage write operations during high transactional loads
E) The host queue depth limits are set too low, artificially throttling the database application's I/O
2. An Infrastructure Planner is reviewing a predictive capacity alert.
[InfoSight Capacity Forecast]
Physical Used: 420 TB
Physical Free: 28 TB
Forecasted Exhaustion: 24 Days
Application Growth: 0.6 TB/month
Snapshot Growth: 18 TB/month
Recent Changes:
Immutable retention enabled
Snapshot retention extended from 14 days to 180 days
Which THREE conclusions are supported by the telemetry? (Choose 3.)
A) Fibre Channel congestion is preventing snapshot expiration
B) Retention requirements should be reviewed before purchasing additional storage
C) Deduplication engines automatically disable themselves when immutable retention is enabled
D) Retained changed blocks are likely driving physical consumption increases
E) Snapshot retention policy changes are contributing more significantly to capacity growth than application growth
3. A Storage Solutions Architect is reviewing a capacity sizing worksheet during a legacy-to-modern storage migration assessment. The customer is moving from a legacy array with zero data reduction to an HPE Alletra B10000.
Workload A (Database): 20 TB Written, 0% Dedup, 0% Compression
Workload B (VDI): 15 TB Written, 0% Dedup, 0% Compression
Workload C (File): 50 TB Written, 0% Dedup, 0% Compression
Estimated Target Ratios: Database (1.5:1), VDI (4:1), File (2:1)
Based on the provided assessment data, which workload represents the most significant opportunity for capacity footprint reduction on the new platform?
A) Workload B, because the high deduplication ratio of identical OS images yields the highest percentage reduction
B) Workload C, because it has the largest initial written footprint prior to any data reduction application
C) Workload A, because databases typically yield the highest inherent compression savings on modern platforms
D) Workload C, because unstructured file data inherently compresses at ratios exceeding both database and VDI workloads
4. A Storage Administrator is troubleshooting intermittent performance degradation on a unified storage array that was recently deployed to consolidate the company's infrastructure.
[Unified Array - Peak Telemetry (10:00 AM - 11:00 AM)]
Global Controller CPU: 96%
Protocol Split: 60% File (SMB/NFS) / 40% Block (Fibre Channel)
Block Workload (SQL Server): Read Latency spiking to 18ms
File Workload (User Shares): Heavy sequential metadata scanning active
Backend Disk Utilization: 35%
Which TWO conclusions accurately diagnose the root cause of this performance bottleneck on the unified platform? (Choose 2.)
A) The unified array's automated tiering engine has incorrectly promoted the SMB file metadata to the NVMe tier, physically forcing the SQL database down to the spinning disks
B) The shared, unified architecture has allowed a "noisy neighbor" file workload to negatively impact the performance of the mission-critical block workload
C) The backend physical disks are overwhelmed by the combination of sequential file reads and random database writes, creating a mechanical bottleneck that drives up the latency
D) The Fibre Channel SAN switches are deliberately throttling the SQL Server's block traffic to prioritize the bandwidth required by the SMB/NFS Ethernet protocols
E) The array's controllers are computationally saturated by the heavy metadata processing required by the file protocols, leaving insufficient CPU cycles to rapidly process the block storage SCSI commands
5. A multinational manufacturing company is evaluating two expansion strategies.
Option A:
Purchase additional NVMe shelves immediately.
Option B:
Enable inline deduplication and compression on selected workloads.
Current Environment:
Controller CPU: 76%
Physical Utilization: 89%
Workload Mix:
VDI
VMware
Oracle Databases
Encrypted Backups
Which THREE considerations should influence the final recommendation? (Choose 3.)
A) Different workload types will achieve significantly different data reduction outcomes
B) Future capacity planning should account for projected growth regardless of anticipated reduction savings
C) Encrypted backup datasets often provide minimal deduplication benefit compared to VDI environments
D) Additional data reduction processing may increase controller resource consumption and should be evaluated against current utilization
E) Data reduction universally improves write latency and should therefore always be preferred over hardware expansion
Solutions:
| Question # 1 Answer: A,D | Question # 2 Answer: B,D,E | Question # 3 Answer: A | Question # 4 Answer: B,E | Question # 5 Answer: A,C,D |








