Tuesday, September 29, 2020

HPE0-V13 Designing HPE Software-Defined Infrastructure Solutions

 

Exam ID HPE0-V13 - Designing HPE Software-Defined Infrastructure Solutions, Rev. 19.41
Exam type Proctored
Exam duration 1 hour 15 minutes
Exam length 50 questions
Passing score 63%
Delivery languages English, Japanese
Supporting resources These recommended resources help you prepare for the exam:

Register for this Exam
You need an HPE Learner ID and a Pearson VUE login and password.

No reference material is allowed at the testing site. This exam may contain beta test items for experimental purposes.

During the exam, you can make comments about the exam items. We welcome these comments as part of our continuous improvement process.

Exam description
This exam tests the candidate's ability to display competency in the area of software defined infrastructure (SDI), including designing HPE Software Defined Infrastructure solutions, and the candidate's ability to analyze workloads and prescribe the appropriate infrastructure platform, including compute, storage, and networking.

Ideal candidate for this exam
This certification is targeted to solution architects who have experience designing and implementing a complex solution and want to validate their skills to leverage HPE solutions in multi-site environments. Candidates typically define business needs, propose, and may deploy the solution.

Exam contents
This exam has 50 questions. Here are types of questions to expect:

Discrete Option Multiple Choice

Advice to help you take this exam
Complete the training and review all course materials and documents before you take the exam.
Use HPE Press study guides and additional reference materials; study guides, practice tests, and HPE books.
Exam items are based on expected knowledge acquired from job experience, an expected level of industry standard knowledge, or other prerequisites (events, supplemental materials, etc.).
Successful completion of the course or study materials alone, does not ensure you will pass the exam.

What to Expect with Discrete Option Multiple Choice (DOMC) exams:

This exam uses the DOMC question format. It is quite different than traditional multiple choice exams. It is designed to increase exam fairness, to protect exam integrity, your exam scores and your time.

How is DOMC different?
Instead of presenting all the answer options together at one time, DOMC questions present answer options one at a time, at random
When an answer option is presented, you select either Yes or No to indicate if the option is correct or not. This process repeats until the question concludes
You may see more than one correct option
You may receive as few as one option for each test question or several options
Once you move forward, you may not go back and change your response to a previous option


We created an HPE sample test to help you practice using this DOMC test format. During registration, you will be asked to confirm that you have completed the HPE DOMC sample test and understand how this exam will perform.
Become acquainted with DOMC:
HPE DOMC sample test
DOMC FAQs

Be sure to complete the supporting resources and review all materials and documents before you take the exam. Successful completion of the supporting resources alone does not ensure you will pass the exam.

Objectives
This exam validates that you can:

20% Describe Software Defined Infrastructure:
Explain the benefits of a software defined infrastructure
Given a set of customer requirements, position software defined solutions to solve their problem
Position supported software defined solution based on use case
Position supported software defined storage solutions
Position SDN (Software Defined Networking) solutions and their use cases
Describe the HPE Composable Strategy and position HPE value prop for SDI and SDDC
Describe the customer operational models as it relates to SDI

36% Plan and Design Software Defined Infrastructure Solutions
Given a set of customer requirements, determine the appropriate storage virtualization technology
Given a set of customer requirements, determine the appropriate software defined platform
Given a set of customer requirements, determine the appropriate software defined compute technology
Given a set of customer requirements, determine the appropriate software defined storage
Given a set of customer requirements, determine the appropriate software defined Networking/composable fabric technology
Given a set of customer requirements, determine the appropriate software defined orchestration and automation tools
Given a customer requirements, determine the appropriate migration methodology of workloads to SDI

20% Deploy Software Defined Infrastructure Solutions
Deploy composable bare metal workloads on Synergy
Deploy HPE integrations for Hyper-V
Deploy HPE integrations for containers
Deploy a SimpliVity solution, including integration with SCOMM, vCenter
Deploy software defined network
Document the solution
Create baseline reports for infrastructure (firmware and configuration)
Troubleshoot software

12% Defined Infrastructure Solutions
Given a scenario, diagnose and troubleshoot the issue, using the appropriate tools and/or process
Given a scenario, identify the steps to remediation
Given a scenario, create an action plan
Given a scenario, remediate based on an action plan

12% Manage, Monitor, and Maintain Software Defined Infrastructure Solutions
Given a scenario, manage, monitor, and maintain the solution using the appropriate tool
Create baseline reports for infrastructure (firmware and configuration)
Use appropriate HPE update mechanism (Support Pack for ProLiant (SPP), SimpliVity Upgrade Manager, etc.)
Apply OEM-specific patches per vendor recommendations
Demonstrate maintenance of baselines over solution lifecycle

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300-535 SPAUTO Automating and Programming Cisco Service Provider Solutions Exam

 

Exam overview
This exam tests your knowledge of implementing service provider automated solutions, including:

Programming concepts
Orchestration
Programming OS
Automation tools

Automating and Programming Cisco Service Provider Solutions v1.0 (300-535)
Exam Description: Automating and Programming Cisco Service Provider Solutions v1.0 (SPAUTO 300-535) is a 90-minute exam associated with the CCNP Service Provider Certification and DevNet Professional Certification. This exam tests a candidate's knowledge of implementing service provider automated solutions, including programming concepts, orchestration, programming OS, and automation tools. The course, Implementing Cisco Service Provider Automation Solutions, helps candidates to prepare for this exam.

The following topics are general guidelines for the content likely to be included on the exam. However, other related topics may also appear on any specific delivery of the exam. To better reflect the contents of the exam and for clarity purposes, the guidelines below may change at any time without notice.

10% 1.0 Network Programmability Foundation
1.1 Utilize common version control operations with git (add, clone, push, commit, diff, branching, and merging conflict)
1.2 Describe characteristics of API styles (REST and RPC)
1.3 Describe the challenges encountered and patterns used when consuming APIs synchronously and asynchronously
1.4 Interpret Python scripts containing data types, functions, classes, conditions, and looping
1.5 Describe the benefits of Python virtual environments
1.6 Explain the benefits of using network configuration tools such as Ansible and Puppet for automating IOS XE or IOS XR platforms

30% 2.0 Automation APIs and Protocols
2.1 Describe the characteristics and use of YANG Data Models (OpenConfig, IETF, and Vendor)
2.2 Describe common HTTP authentication mechanisms (basic, token, and oauth)
2.3 Compare common data types (JSON, XML, YAML, plain text, gRPC, and protobuf)
2.4 Identify the JSON instance based on a YANG model
2.5 Identify the XML instance based on a YANG model
2.6 Interpret a YANG module tree generated by pyang
2.7 Implement configuration and operation management using RESTCONF protocol
2.8 Implement configuration and operation management using NETCONF protocol
2.9 Compare the NETCONF datastores

30% 3.0 Network Device Programmability
3.1 Deploy device configuration and validate operational state using ncclient
3.2 Construct a Python script using NETCONF with YDK
3.3 Deploy device configuration and validate operational state using NetMiko
3.4 Deploy device configuration and validate operational state using Ansible playbooks
3.5 Compare gNMI with NETCONF
3.6 Construct a Python script using RESTCONF with JSON
3.7 Construct Xpath notation for a given node or instance of a node
3.8 Diagnose model-driven dial-in/-out telemetry streams with gRPC for a Cisco IOS XR

30% 4.0 Automation and Orchestration Platforms
4.1 Describe ETSI NFV
4.2 Describe NSO architecture
4.3 Identify the benefits of NSO
4.4 Construct a Python script to configure a device using NSO RESTCONF API
4.5 Describe the management and automation of Cisco ESC components
4.6 Implement XR traffic controller (including topology information transfer to XTC)
4.7 Identify the uses of Cisco WAE
4.8 Construct a service template using NSO
4.9 Deploy a service package using NSO

QUESTION 1
Which command configures the remote peer when the Cisco IOS XR Traffic Controller is used?

A. peer-sync ipv4 192.168.0.3
B. state ipv4 192.168.0.3
C. peer ipv4 192.168.0.3
D. state-sync ipv4 192.168.0.3

Answer: D

QUESTION 2
An automation engineer is trying to configure a destination group to use dial-out telemetry with gRPC on a Cisco IOS XR platform. The template created is failing to apply. Which parameters must be configured?

A. source IP address, source port, encoding, and sampling interval
B. source IP address, source port, encoding, and protocol
C. destination IP address, destination port, encoding, and sensor path
D. destination IP address, destination port, encoding, and protocol

Answer: D

QUESTION 3
Which two use cases are valid for Cisco WAN Automation Engine? (Choose two.)

A. deployment of SR policies
B. integration with Cisco XTC
C. what-if analysis
D. device manager
E. network controller

Answer: A,B

QUESTION 4
Which schema allows device configuration elements to be enclosed within a remote procedure call message when NETCONF is implemented?

A. JSON-RPC
B. XML
C. YAML
D. JSON

Answer: B

QUESTION 5
What is a key feature of YANG?

A. use identification
B. error prediction
C. JAVA compatibility
D. reusable types and groupings

Answer: D

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