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| Section | Weight | Objectives |
|---|---|---|
| Topic 1: Sales and Business Support | 20% | - Sales process and key requirements - Partner policies and authorization process - Project delivery and after-sales service |
| Topic 2: Smart PV Solution Design and Application | 25% | - Commercial and industrial PV application scenarios - Ground-mounted PV power plant solution - Distributed PV system design and configuration - Smart PV system safety and protection design |
| Topic 3: Quality, Safety and Compliance | 10% | - Safety specifications in installation and operation - Compliance and risk management - Product quality standards and assurance system |
| Topic 4: Overview of Smart PV Industry and Huawei Strategy | 15% | - Huawei Smart PV development strategy and positioning - Global PV market development and trends - Industry policies and standards related to PV |
| Topic 5: Huawei Smart PV Product Knowledge | 30% | - Smart PV inverter series: features, specifications and application scenarios - Energy storage system matching and solutions - Smart module and power optimization technology - Smart PV controller and management system |
>> H19-260_V2.0 Current Exam Content <<
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NEW QUESTION # 85
The intelligent fusion diagnosis system (IV&CV fusion) integrates IV scanning and UAV AI image recognition technologies to implement two converged diagnosis modes: IV and UAV associated inspection, site-wide scanning, and cross-verification.
Answer: A
Explanation:
The exact extract states that the intelligent fusion diagnosis system, or IV&CV fusion, integrates IV scanning and UAV AI image recognition to implement two converged diagnosis modes: IV and UAV associated inspection, site-wide scanning, and cross-verification. The correct answer is A. True. Huawei Smart PV plant O&M increasingly depends on intelligent diagnosis because large PV plants contain thousands or millions of modules and strings. IV scanning helps detect electrical performance abnormalities such as mismatch, degradation, string faults, and underperformance. UAV AI image recognition adds visual inspection capability, detecting hot spots, dirt, broken modules, shading, physical damage, or abnormal module appearance. By fusing IV data with computer-vision inspection, the system can cross-check electrical and visual evidence, improving fault-location accuracy and reducing manual inspection workload. The statement correctly describes the convergence of IV diagnosis and UAV AI inspection in Smart PV Plant O&M. Reference: Huawei HCSA-Sales-Smart PV V2.0 Smart PV Plant Solution training extract.
NEW QUESTION # 86
How does the traditional solution ensure the security of the PV DC side?
Answer: A,C,D
Explanation:
A fuse is a traditional protection component used to interrupt excessive current on the DC side. A DC combiner box is also a traditional PV-side component that combines strings and normally contains fuses, surge protection, and DC isolation/protection elements. A manual disconnect switch is another traditional method for isolating PV strings or DC circuits during maintenance or fault handling. These three options are directly associated with DC-side protection and isolation.
Option D, AC switch, is not correct because it belongs to the AC side of the inverter output, not the PV DC side. The question is specifically about the security of the PV DC side, so AC-side switching cannot be counted as a DC-side protection method. Huawei's newer C&I safety materials contrast these conventional protections with intelligent DC-side disconnection and rapid active protection.
NEW QUESTION # 87
Which factor most directly affects the "usable capacity" of a battery pack/rack in Huawei's Smart String ESS design?
Answer: B
Explanation:
Inconsistencies among packs/cells -- differing state of charge, state of health, internal resistance, and aging -- force conventional systems to be limited by the weakest unit. Huawei's rack/pack- level optimization mitigates this by managing units more independently, improving usable capacity. A, C, and D are not technical factors affecting usable capacity.
NEW QUESTION # 88
Which of the following is the quality guideline of Huawei Digital Power? ( )
Answer: A,B,C,D
Explanation:
The exact extract asks for the quality guideline of Huawei Digital Power and presents checkbox-style choices, so all valid guideline elements must be selected. The correct answer is A, B, C, D. "Win with quality and build industry-benchmark quality" is the strategic quality direction. "Raise a sense of responsibility" reflects quality ownership, meaning quality is not only the responsibility of an inspection team but of all roles involved in delivery, service, and operations. "Do the right thing at the first time" aligns with defect prevention rather than repeated rework. "Stick to the zero defect principle" expresses the quality-management target: prevent defects, reduce variation, and create value for customers and partners. Huawei Digital Power public materials consistently emphasize quality-first, lifecycle quality, safety, reliability, and customer value in PV and ESS solutions. Therefore, all four statements match the quality-guideline logic. Reference: Huawei Digital Power quality and lifecycle-safety materials.
NEW QUESTION # 89
If a fire occurs on energy storage equipment, after the fire is extinguished, how long should the spraying continue to ensure that the equipment temperature drops below 65°C? ( )
Answer: B
Explanation:
The exact extract asks how long water spraying should continue after an energy storage equipment fire has been extinguished to ensure the temperature drops below 65°C. The correct answer is C. ≥ 2 hours. The reason is that lithium battery fires can reignite after visible flames are extinguished because residual internal heat and damaged cells can continue generating heat. Huawei's ESS emergency-handling guidance states that a lithium battery fire may last for several hours and that, after the open flame is extinguished, water spraying should continue to cool the batteries. The guidance also requires monitoring until the battery temperature is reduced and stable before removal or follow-up handling. In the exam extract, the specified operational threshold is below 65°C, and the required cooling duration is at least two hours. Options B and D are too short for post-fire cooling, while option A is longer than the stated exam requirement. Reference: Huawei LUNA2000-S1 ESS emergency-handling guidance.
NEW QUESTION # 90
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