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Huawei

H13-629_V3.0 · Question #132

All components and channels of Huawei's hybrid flash high-end storage system are designed with (), without single point of failure. Each component and channel can independently complete fault…

The correct answer is A. Fully redundant. Fully redundant architecture is correct because Huawei's hybrid flash high-end storage systems are engineered so that every component (controllers, power supplies, fans, drives) and every data path has a duplicate counterpart - meaning no single component failure can bring down…

Storage Solution Planning and Design

Question

All components and channels of Huawei's hybrid flash high-end storage system are designed with (), without single point of failure. Each component and channel can independently complete fault detection, repair and isolation to ensure stable operation of the system.

Options

  • AFully redundant

How the community answered

(26 responses)
  • A
    100% (26)

Explanation

Fully redundant architecture is correct because Huawei's hybrid flash high-end storage systems are engineered so that every component (controllers, power supplies, fans, drives) and every data path has a duplicate counterpart - meaning no single component failure can bring down the system. This design ensures each redundant element can autonomously detect faults, trigger repairs, and isolate the failed unit without human intervention or system downtime. Since only one answer choice is provided (A), there are no distractors to evaluate - this appears to be a fill-in-the-blank style question with a single correct term. Memory tip: Think of "fully redundant" as "everything doubled" - if one path or part fails, its twin takes over instantly, making the system self-healing by design.

Topics

#full redundancy#single point of failure#fault isolation#system availability

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