[Jul-2024] Download Real CWISA-102 Exam Dumps for candidates 100% Free Dump Files [Q26-Q48]

[Jul-2024] Download Real CWISA-102 Exam Dumps for candidates. 100% Free Dump Files

Prepare Important Exam with CWISA-102 Exam Dumps(2024) 

NEW QUESTION 26
Which one of the following location tracking technologies is most energy efficient in typical implementations?

 
 
 
 

NEW QUESTION 27
As an RF signal propagates it becomes weaker as it gets farther away from the transmitter. What concept is described?

 
 
 
 

NEW QUESTION 28
You must plan for encryption in a wireless solution deployment. What type of data should always be encrypted? (Choose the single best answer.)

 
 
 
 

NEW QUESTION 29
What software is typically stored in ROM and is used to initialize a device?

 
 
 
 

NEW QUESTION 30
What statement best describes the difference between authentication and authorization?

 
 
 
 

NEW QUESTION 31
What is the most common difference between a single board computer (SBC) and a controller board?

 
 
 
 

NEW QUESTION 32
You are planning a wireless implementation. At what point should you begin to consider security requirements for the implementation?

 
 
 
 

NEW QUESTION 33
In a wireless link, as the signal strength decreases, what else may decrease?

 
 
 
 

NEW QUESTION 34
Within what development environment is XAML most commonly used?

 
 
 
 

NEW QUESTION 35
You are planning a wireless solution. Why should you consider an ongoing monitoring system for use after the solution is deployed?

 
 
 
 

NEW QUESTION 36
You are deploying a ZigBee network based on the frequency band available for ZigBee deployment worldwide. What allowable action will do the most to minimize ZigBee and 802.11 interference?

 
 
 
 

NEW QUESTION 37
You must ensure proper security controls are in place for a wireless solution. The solution allows for the use of groups to grant access to resources and capabilities. What is the term used to describe a situation where an individual is granted more access than required because of inclusion in a group?

 
 
 
 

NEW QUESTION 38
How is ASK modulation different from FSK modulation?

 
 
 
 

NEW QUESTION 39
What is the spacing between ZigBee channels when operating in the 2.4 GHz frequency band?

 
 
 
 

NEW QUESTION 40
How does OFDMA differ from OFDM?

 
 
 
 

NEW QUESTION 41
What is the primary difference between LoRa and LoRaWAN?

 
 
 
 

NEW QUESTION 42
What consideration is found in PtMP systems that is not found in PtP systems?

 
 
 
 

NEW QUESTION 43
What user authentication method is commonly used in guest Wi-Fi networks in the hospitality industry?

 
 
 
 

NEW QUESTION 44
What is a valid reason to continue using older wireless networking technologies?

 
 
 
 

NEW QUESTION 45
What is a common characteristic of Industrial IoT (IIoT) devices that is not a characteristic of all IoT devices?

 
 
 
 

NEW QUESTION 46
You are considering the implementation of a lab for testing wireless equipment. What is the primary benefit of such a lab? (Choose the single best answer.)

 
 
 
 

NEW QUESTION 47
What part(s) of the OSI network model does the IETF primarily focus on for the development of standards?

 
 
 
 

NEW QUESTION 48
What provides the security (encryption) in an HTTPS connection?

 
 
 
 

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New 2024 Realistic Free CWNP CWDP-304 Exam Dump Questions & Answer [Q111-Q129]

New 2024 Realistic Free CWNP CWDP-304 Exam Dump Questions and Answer

CWDP-304 Practice Test Engine: Try These 233 Exam Questions

CWNP CWDP-304 Exam Certification Details:

Exam Name Wireless Design Professional
Duration 90 minutes
Number of Questions 60
Exam Price $275 USD
Passing Score 70%
Exam Code CWDP-304 CWDP

CWNP CWDP-304 Exam Topics:

Section Objectives

Define Specifications for the WLAN – 25%

Collect business requirements and constraints – Business use cases and justification
– User requirements
– Regulatory compliance
– Industry compliance
– Budget
– Aesthetics
– Architectural constraints
– Mounting restrictions
– Access restrictions
– Time constraints
– Building codes and safety codes
Collect and define technical requirements – Vendor selection
– Location services such as RTLS
– Latency requirements
– Signal strength requirements
– Capacity requirements
– Security requirements

  • BYOD and guest access
  • Roaming
  • Monitoring
  • Authentication and encryption

– Applications and their specific requirements
– WLAN upgrade requirements, when applicable
– Bridge link requirements, when applicable
– Voice over WLAN (VoWLAN), when applicable
– Client devices including most important and least capable device
– Requirement areas

Collect project documentation – Validated floor plans
– Network infrastructure

  • Network diagrams
  • AP locations
  • Existing network services including DNS, DHCP, NTP, and authentication servers
  • Switch capabilities and capacity

– Cabling infrastructure

  • Cabling maps and plans
  • Wiring closet locations

– Power availability and PoE capabilities
– Existing wireless systems
– Previous design/survey documentation

Define requirement areas including essential metrics for each requirement – Client device types and capabilities
– Applications and their requirements
– User and device density
– SSIDs
– Security settings
– Understand common vertical markets
Gather information on environmental factors – Building materials
– Attenuation values
– Ceiling heights
– Site annotations (photos, notes, plans)
– Wireless environment scan

  • Packet captures
  • Spectrum captures
  • Wi-Fi scanners

Design the WLAN – 40%

Define WLAN architectures and select the appropriate architecture for a design – Controller-based (physical and virtual) architectures
– Distributed (cloud-based and local WNMS)
– Standalone/Autonomous APs
– Dynamic vs. static channel assignment
– Dynamic radio management
– Software defined radios
– RF profiles
– Select and/or recommend the appropriate equipment for the design and selected architecture (APs, antennas, controllers, managed services)
Produce a design to meet requirements – Select and use the appropriate design tools

  • Design and survey software and hardware
  • Spectrum analysis software and hardware
  • Access points and antennas
  • Portable power source
  • Tripods
  • Measuring tools
  • Cameras
  • Personal Protective Equipment (PPE)

– Select and use the appropriate design methodologies

  • WLAN predictive design (new builds/site or area not accessible)
  • Validated RF modeling
  • AP-on-a-Stick (APoS) measurements
  • Bridge and mesh planning

– Understand and use the common features of wireless design software

  • Import and scale floor plans
  • Model attenuation of the site (including calibration)
  • Select and place APs and antennas
  • Adjust AP and antenna settings
  • Define requirement areas and parameters
  • Define channel and power settings

– Select and use common vendor features and make configuration recommendations

  • Band steering
  • Automatic/static channel selection
  • Load balancing
  • RF/AP templates

– Design for different client and application types

  • VoIP handsets
  • Laptops
  • Handheld scanners
  • Smartphones and tablets
  • IoT and smart devices
  • Location tracking systems
  • Voice and video systems

– Ensure end-to-end QoS is properly implemented

  • WMM
  • Wired and wireless QoS mappings
  • QoS markings, classifications, and queues

– Define and recommend security solutions

  • Monitoring (detection and prevention)
  • Authentication servers
  • EAP methods
  • Authentication types
  • Encryption types

– Design for secure roaming

  • Secure BSS transition (roaming)
  • Vendor roaming solutions
  • Client support issues
Create, distributed, and communicate design documentation – Bill of Materials (BoM)
– Design reports
– Physical installation guide

Deploy the WLAN – 10%

Ensure proper understanding and implementation of the design – Implementation meeting

  • Explain design decisions to implementers
  • Ensure understanding of design deployment

– Distribute required documentation

Recommend or perform essential deployment tasks – Understand and perform installation procedures for different WLAN architectures (cloud-based, controller-based, WNMS, autonomous)
– Infrastructure configuration supporting the WLAN (DHCP, DNS, NTP, switches, and routers)
– Channel assignment, automatic radio management, and transmit power configuration
– Installation procedures for cloud-based APs, controller-based APs, WNMS APs, and autonomous APs
Perform an installation audit for quality assurance – Verify proper AP and antenna location and orientation
– Verify aesthetic requirements are met
– Verify physical security of the installation

Validate and Optimize the WLAN – 25%

Confirm the WLAN system is operational – AP Status
– Verify PoE provisioning of power requirements are met
Perform an RF validation survey – Ensure coverage requirements
– Evaluate impacts of contention and interference
Perform client performance testing – Connectivity testing
– Application testing
– Roaming testing
– Capacity testing
– Security testing
Recommend appropriate physical adjustments – AP
– Antenna and connectors

 

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