HPE Compute Solutions 온라인 연습
최종 업데이트 시간: 2026년06월04일
당신은 온라인 연습 문제를 통해 HP HPE0-S59 시험지식에 대해 자신이 어떻게 알고 있는지 파악한 후 시험 참가 신청 여부를 결정할 수 있다.
시험을 100% 합격하고 시험 준비 시간을 35% 절약하기를 바라며 HPE0-S59 덤프 (최신 실제 시험 문제)를 사용 선택하여 현재 최신 266개의 시험 문제와 답을 포함하십시오.
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Explanation:
The VMware vSphere Standard license does not include support for advanced features like Distributed Resource Scheduler (DRS) and Distributed Switches. These features are available only with the vSphere Enterprise Plus license. Therefore, to meet the customer's requirement of using Distributed Switches and a DRS cluster, the proposal should include vSphere Enterprise Plus licenses instead of Standard licenses.
Reference: VMware vSphere Licensing Guide
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Explanation:
vSAN licenses and vSphere licenses are separate entities. While vSAN licenses cover the storage virtualization aspect of VMware's hyper-converged infrastructure, vSphere licenses are required for the actual hypervisor operations. Therefore, the customer must ensure they have the appropriate vSphere licenses in addition to vSAN licenses for their compute nodes.
Reference: VMware vSAN Licensing Guide
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Explanation:
When the iLO interface prompts for a login instead of automatically logging in via HPE OneView, a common issue is that the Single Sign-On (SSO) certificate might have been removed or is not properly configured on the iLO. Verifying the presence and validity of the SSO certificate on the iLO interface is a critical step in troubleshooting this issue.
Reference: HPE OneView and iLO Integration Guide

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Explanation:
The exhibit shows the creation of a Logical Interconnect Group (LIG) using HPE Virtual Connect SE 100Gb F32 Modules.
Here is the breakdown of why Option C is correct and why the others are not:
Master Module Placement (Option C): In a redundant HPE Synergy configuration, the two "Master" (or Primary) interconnect modules must be installed in the same frame (referred to as the Master Frame). These modules are placed in the redundant bays of the chosen bay set (e.g., Bay 3 and Bay 6). The other frames in the logical enclosure (Enclosure count: 3) will house Interconnect Link Modules (ILMs), which act as satellite modules to extend the fabric from the masters. This architecture ensures a single management point and a unified control plane for the entire multi-frame fabric.
Bay Set Mapping (Option A): The exhibit explicitly shows the Interconnect bay set is set to 3. In the
HPE Synergy 12000 Frame, bay sets map to specific bays:
Bay Set 1: Bays 1 and 4
Bay Set 2: Bays 2 and 5
Bay Set 3: Bays 3 and 6 Since the LIG is configured for bay set 3, the master modules will be in bays 3 and 6, making Option A incorrect.
Frame Scalability (Option B): The HPE Virtual Connect SE 100Gb F32 Module supports a master/satellite architecture that can scale up to five (5) frames in a single fabric (1 Master Frame + 4 Satellite Frames). The exhibit shows an enclosure count of 3, which is well within the supported limit and not the maximum for a 25 Gb/s downlink configuration.
Compute Node Form Factor (Option D): Both half-height (e.g., Synergy 480) and full-height (e.g., Synergy 660) compute modules can use interconnect bay set 3. Half-height modules have three mezzanine slots, where slot 3 connects to bay set 3. Full-height modules have six mezzanine slots, where slot 3 and slot 6 can connect to these fabrics. There is no requirement that nodes must be half-height to utilize this fabric.
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Explanation:
An HPE OneView support dump includes various diagnostic information, and by default, it contains a logical enclosure support dump. This comprehensive dump helps in troubleshooting by providing detailed logs and configuration data from the appliance and the logical enclosures it manages, enabling effective diagnosis of issues within the managed environment.
Reference: HPE OneView User Guide
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Explanation:
Login Redistribution is a specific feature within HPE Virtual Connect Fibre Channel (FC) modules (including the 16Gb and 32Gb variants) that manages how server NPIV (N_Port ID Virtualization) logins are distributed across physical uplink ports connected to a SAN fabric.
The Purpose of Redistribution: When a Virtual Connect FC module initiates connections to a SAN, it distributes the virtual HBA logins from the compute modules across the available physical uplinks. If an uplink fails, the logins associated with that port are automatically migrated to the remaining active uplinks. However, when the failed uplink is restored (brought back online), the logins do not automatically move back to the restored port by default to avoid a momentary disruption caused by a logout/re-login sequence.
Balancing Logins: Over time, or after multiple link failures and recoveries, the distribution of logins across the physical ports can become uneven (e.g., one port carrying 10 logins while another carries only 2). Login Redistribution (Option D) is the mechanism used to re-balance these logins across all available healthy uplinks to ensure optimal performance and bandwidth utilization.
Modes of Operation: * Manual: The administrator triggers the redistribution via HPE OneView.
Automatic: The system automatically re-balances the logins when a new link is added or a failed link is restored, typically after a configurable delay.
Why other options are incorrect:
Option A: This feature works regardless of whether the storage is a 3par, Primera, or Alletra, and whether it is connected directly (Flat SAN) or through a standard FC fabric.
Option B: Login redistribution is a standard feature of the Virtual Connect firmware and HPE OneView; it does not require additional per-port or feature-specific licenses.
Option C: While it is supported on the SE 32Gb FC modules, it was also supported on the older 16Gb FC modules for Synergy and even the legacy Virtual Connect modules for c-Class.
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Explanation:
When you configure a vVol datastore using the HPE Storage Integration Pack for VMware vCenter, the storage object to check in SSMC (HPE StoreServ Management Console) is the Storage Container. The Storage Container is a logical storage entity that houses virtual volumes (vVols) and represents the vVol datastore in the storage system. Verifying the Storage Container ensures that the vVol datastore is properly configured and managed.
Reference: HPE 3PAR StoreServ Storage Concepts Guide
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Explanation:
The core value proposition of HPE SimpliVity is its high-efficiency data architecture. Regardless of the specific model or hardware generation, deduplication and compression are fundamental features of the platform:
Always-On Data Efficiency: All HPE SimpliVity models utilize always-on, inline deduplication and compression. This process occurs as data is first ingested into the system, before it is written to the physical storage. This reduces I/O overhead, accelerates application performance, and significantly reduces the storage footprint (guaranteeing a 90% capacity savings in many configurations).
Hardware vs. Software Optimization: Older SimpliVity models used a dedicated hardware accelerator card (FPGA) to handle these tasks. Newer "software-optimized" models (like the 380 Gen11 or 325 Gen11) perform these functions using the server's CPU and specialized software algorithms, but the feature itself remains standard and mandatory across the entire portfolio.
Data Protection: These data efficiencies also underpin the "HyperProtected" pillar, allowing for near-instant local backups and restores of large virtual machines because only unique data blocks need to be processed.
Why other options are incorrect:
Option A: While HPE has moved toward "per node" terminology, licensing for HPE SimpliVity software has traditionally been (and in many regions remains) tied to the number of physical sockets in the server. Recent changes to "Term Licenses" (post-July 2025) often package the software per node, but historically and in standard documentation, the socket count is a primary factor in cost.
Option C: While HPE offers excellent AMD-based models (like the SimpliVity 325), many flagship models (like the SimpliVity 380 Gen11) are based on Intel Xeon Scalable processors.
Option D: While HPE recently introduced HPE VM Essentials (based on Morpheus) as an alternative management layer, the core hypervisor support for SimpliVity is still primarily focused on VMware vSphere. It does not currently offer a "flexible" or "open" choice of any hypervisor (such as native Nutanix AHV or Proxmox) in the standard enterprise deployment model.
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Explanation:
Storm control is a feature in HPE Virtual Connect that allows administrators to suppress excessive inbound multicast, broadcast, and destination lookup failure (DLF) packets. This feature helps to mitigate the negative impact of network storms, which can degrade network performance and availability. By configuring storm control, administrators can set thresholds to limit the rate of such packets entering the network, ensuring a stable and reliable network environment.
Reference: HPE Virtual Connect Networking Features
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Explanation:
A logical interconnect group in HPE Synergy is used to define a consistent network configuration across multiple frames. The HPE Virtual Connect SE 100 Gb F32 Module for Synergy allows for logical interconnect groups to span across multiple frames. This is because the 100 Gb module supports high-speed connectivity and the necessary infrastructure to maintain consistent network configurations over multiple frames, which is essential for scalable and flexible Synergy environments.
Reference: HPE Synergy Logical Interconnect Groups
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