1V0-605 · Question #43
Which technique does VMware vRealize Operations for Horizon 6 use to determine the upper and lower range of normal behavior for each metric?
The correct answer is C. Dynamic Thresholding. deployment-guide.pdf
Question
Which technique does VMware vRealize Operations for Horizon 6 use to determine the upper and lower range of normal behavior for each metric?
Options
- APro-Active Smart Alerts
- BSuper Metrics
- CDynamic Thresholding
- DSelf Learning Analytics
How the community answered
(36 responses)- A14% (5)
- B6% (2)
- C69% (25)
- D11% (4)
Explanation
deployment-guide.pdf
Topics
Community Discussion
6Dynamic Thresholding is the correct answer here. vRealize Operations builds a baseline for every metric by watching it over time and calculating what "normal" looks like, then it sets upper and lower bounds automatically based on that learned behavior. That is completely different from static thresholds where some admin just types in a number and hopes for the best. Super Metrics are custom formula-based calculations you build yourself, Self Learning Analytics is a broader marketing term, and Pro-Active Smart Alerts are the notifications that fire when something crosses those thresholds, not the mechanism that defines the range.
Solid breakdown, Imani, just worth noting that what VMware officially calls it in the product is "Dynamic Thresholds" (plural) so if you see that wording on the exam do not let it throw you off.
Dynamic Thresholding is your pick here, C, and it is the one the exam wants. The trap is D, Self Learning Analytics, which sounds like it fits because "learning" implies adapting over time, but that is a made-up distractor, not a named vROps feature. Dynamic Thresholding is the actual mechanism that calculates those upper and lower bounds automatically based on observed metric behavior.
Got C on this one, dynamic thresholding sets those bands automatically, saw it pop up twice on my actual test.
Pro-Active Smart Alerts drive that upper/lower range detection, hands down, pick A.
Appreciate the input Ivana, but C is the right call here because RMON threshold alarms are what actually define separate rising and falling trigger points for that upper/lower range detection, while Pro-Active Smart Alerts is vendor marketing language that does not map to a discrete exam objective.