CCNP Wireless Training

CCNP Wireless training with MSP Training at best price.

ABOUT THE PROGRAM

The motive of developing CCNP Wireless Training is to make candidate proficient at design, execution and functioning of Cisco Wireless networks. Furthermore, this training includes the comprehensive explanation about mobility set-ups. During the advancement of the CCNP Wireless certification, MSP training gives due importance to the theory as well as a practical portion of Wireless networking course. It also acknowledges the command and technical insight of wireless professionals who can classify and convert network business inputs into required technical descriptions. 

  • Sectional awareness of network solutions

  • Well trained Faculty arranges for delivering CCNP Wireless Training

  • Master the concept of LAN and WAN networks

  • Awareness of routing and switching

  • Aim for high perks after certification

  • One to one doubt clearing sessions after lectures

WHAT'S INCLUDED ?

Find out what's included in the training programme.

Includes

Courseware

Courseware will also be provided to the delegates so that they can revise the course after the training.

Includes

Pre Course Material

It provides some basic knowledge about the course before training.

Includes

Tutor Support

A dedicated tutor will be at your disposal throughout the training to guide you through any issues.

Includes

Certificate

Delegates will get certification of completion at the end of the course.

PREREQUISITES

There is one mandatory condition to enrol in this training course is to have either a valid CCNA Wireless certification or a CCIE certification prior to it.

TARGET AUDIENCE

The target audience for this course is all the network professionals who want to learn the skills and knowledge to become proficient at maintaining networks efficiently.

WHAT WILL YOU LEARN?

  • Get familiar with the use of Flex Connect, Independent or Cloud designs so that it would be an easy task to execute small as well as big remote access wireless networks
  • Delegate will also get to learn maintenance and checking of WLAN
  • Delegate will be clear regarding the requirements for designing a Wireless Local Area Network i.e WLAN
  • Delegate will be proficient at Knowing how to perform a combined WAN using IOS-XE converged entrance switches and wireless LAN controllers
  • Opportunity to Learn the basic points of RF
  • Opportunity to Learn WLAN security procedures to gain access to differing client plans
  • Clear thought in the Cisco WLAN architecture and the concealed infrastructure used to support it
  • Execute a Centralised WAN using AireOS or IOS-XE wireless LAN controllers
  • Decide the necessary reserves and execute VLAN based solution
  • Managing security of the WLAN using integrated security features of network controller
  • Design infrastructure devices for implementing a voice-over-WLAN
  • Prepare the wireless LAN for high-bandwidth applications and video support
  • Integrate WLAN controller with high-security stages of a wired network
  • Design and configure Switch based Layer 3 services
  • Implement an eBGP based solution and arrange BGP routeing
  • Setup an IPv6 based solution and document execution results
  • Execute and arrange an IPv4 or IPv6 redistribution solution
  • Do check of Multi-Protocol systems, such as EIGRP, NAT and OSPF
  • Execute and arrange an EIGRP based solution
  • Create a multi-area OSPF Network and arrange OSPF routing
  • Knowledge of Location-based Services & Mobility Services Engine

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PROGRAM OVERVIEW

The purpose of Cisco Network Professional Wireless training course is to make the delegate proficient at design, execution and securing Wireless Networks and also work associated to the web. The course gives due importance to both the theories and principles of the wireless networks. After successful completion of the course candidate will have that much confidence to manage works such as setting and maintaining the wireless network set-up.


PROGRAM CONTENT

  • Outline and design voice ended wireless architecture
    • Outline wireless for voice
    • Use of other design considerations, as per the principles of View Design Guide (VAD, MoH, Load balancing, and so on)
    • Define voice in relation to the wireless network
    • Validate infrastructure requirements for end-to-end voice over wireless (CUCM, CUCME, QoS, ACS, DHCP, TFTP, routers, security devices, etc.)
    • Outline VoWLAN integration with cellular providers
    • Validate wireless network design for voice readiness
  • Implement VoWLAN
    • Configure wireless client devices
    • Set the WLAN for VoWLAN
    • Troubleshoot VoWLAN implementation
  • Implement multicast over wireless
    • Configure multicast in a wireless network
    • Troubleshoot multicast in a wireless network
    • Describe general multicast concepts
    • Describe implications for multicast in 802.11
  • Implement QoS for wireless applications
    • Describe and perform general considerations for wired QoS
    • Define the Wireless QoS deployment schemes and learn to implement them
    • Configure WCS/WLC for QoS
    • Reference most current best practice guidelines
  • Prepare the wireless network for video/high-bandwidth applications
    • Explain benefits of 802.11n for video
    • Identify application specific wireless network requirements
    • Determine bandwidth requirements for specified applications
  • Design and deploy WLAN infrastructure for mobility
    • Configure single Service Set Identifier (SSID) plans w/mobility
    • Analyse implications of L2 and L3 roaming
    • Tune RF situation for context-aware services
    • Troubleshooting inter-controller communications
    • Troubleshoot AP join process using the following solutions
    • Implement the following Cisco Unified Wireless best practices
    • Define and implement mobility groups/list
    • Implement high availability
    • Adjust authentication/EAP timers
  • Deploy and manage indoor and outdoor Mesh
    • Describe wireless Mesh and its benefits
    • Identify the following Mesh operation modes:
    • Apply Mesh
    • Explain Mesh convergence
    • Utilise Cisco WCS for Mesh monitoring
    • Use workgroup bonds
  • Execute advanced services and manage with Cisco WCS and Navigator
    • Describe Navigator's role, types, and occupations
    • Configure background tasks
    • Configure and apply controller and access point templates
    • Monitor and convert autonomous Apps
    • Install and maintain Cisco WCS/Navigator and complete the following tasks
    • Configure WLC auto-provisioning
    • Utilise configuration auditing in Cisco WCS
    • Implement Cisco WCS partitioning and Navigator domains
    • Perform time of day AP power savings
    • Implement scheduled WLAN availability
    • Create and customise Cisco WCS reports
  • Propose and integrate wireless network with NAC
    • Define the architectures; inband, out-of-band, agent vs. agentless, and the Cisco Network Admission Control (NAC) appliance.
    • Define the high-level authentication process flow
    • Configure the WLC for Network Access Controller (NAC)
    • Verify wireless authentication with NAC
  • Develop and Execute Guest Access services
    • Describe the architectures for guest access services
    • Set guest access accounts
    • Configure controller web authentication
    • Set the anchor and internal controllers
    • Troubleshoot guest access issues
  • Device MSE style
    • Integrate and manage MSE with Cisco WCS integration with wireless network architecture
    • Maintain MSE
    • Troubleshoot MSE operations
    • Deploy context-aware facilities for specific environments
    • Integrate third-party applications
  • Execute secure wireless connectivity services
    • Configure authentication
    • Configure autonomous AP for RADIUS authentication
    • Set management frame protection on clients, APs and controllers
    • Configure IBN (RADIUS-based VLAN and ACLs, AAA override)
    • Define ACS restrictions for integration with wireless network
    • Determine client and server-side digital certificate requirements
    • Implement ACLs on controller
    • Troubleshoot secure wireless connectivity services

 

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ABOUT Canterbury

Canterbury is a historic cathedral city located on the River Stour in the Southeast England. It is located 55 miles southeast of London with a population of around 43,432 in 2011 census. The nearby villages and suburbs of the city include Rough Common, Harbledown, Tyler Hill, Hales Place, Sturry, and Wincheap. The River Stour segregates the south-east part of the city into two wings, one wing flowing through the city and other around the position of the former walls. The two wings further combine on the northeast edge of the city. Canterbury local government district covers the area of Herne and Whitstable Bay and Member of Parliament elected in the city is Rosie Duffield of Labour Party. Under Local Government Act, the city became a county borough, later on, it lost its county borough status and afterward, Kent County Council has taken the full control.

History

The first early settlement of Canterbury dates back to prehistoric times. Romans captured the settlement of Celtic tribe in the 1st century and given the name Durovernum Cantiacorum. The city was redeveloped with the construction of the temple, public baths, theatre and roads with grid pattern by the Romans. They also built a wall with seven gates and an earth bank around the city to safeguard from Barbarians attack. After the abandonment of Roman period, Anglo-Saxon community developed within the city walls and trade developed in textile, pottery and leather sector.

The most serious epidemics Black Death affected the city in the 13th century and a population of the city declined from 10,000 to 3,000. Between 17th and 18th century, the castle of the city fell into disrepair and six gates were demolished. The silk industry was closed and trade was limited to only wheat and hops. The world’s first passenger railway came into existence in 1830 connected the town to a larger network of South Eastern Railway. The city was affected by First and Second World War destroyed 296 buildings and 731 homes and resulted in the death of 115 people. The redevelopment of the city took place ten years after the war and ring road was constructed to avoid growing problem of traffic congestion along with the development of Christ Church College and the University of Kent at Canterbury.

Economy

Canterbury is the second largest economy in the Kent and also known as wealthiest places in the south-east. The city is home to 4761 businesses provide job opportunities to more than 60,000 employees. Unemployment in the city has dropped largely with the involvement of Lakesview International Business Park, Whitefriars shopping complex and Canterbury Enterprise Hub. According to a survey in September 2011, unemployment rate recorded at just 5.7% which is quite low as compared to other cities of the England. Tourism plays a crucial role in the development of the city and contributes 258m dollars to the economy.

Education

Canterbury has several primary and secondary schools including Kings School, Barton Court Grammar School, The Canterbury High School and Archbishops School. For higher education, the city has three main universities and several other higher colleges and institutions providing education to 22% of the population according to 2011 census. The universities include the University of Kent, University for the Creative Arts and Canterbury Christ Church University.

Tourism

The city is famous for its beautiful beach fronts, stunning architecture, surrounding coastal towns and world-famous buildings. The tourism of the city is a perfect combination of city, countryside, and coast. The city is also a pilgrimage site and its renowned cathedral is recognised by UNESCO World Heritage Site drawing the attention of million tourists. The top rated tourist attractions in the city include Canterbury Cathedral, St Augustine’s Abbey, Heritage Museum, Norman Castle, Roman Museum, Chilham Castle and St Martin’s Church.