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 Manchester

Manchester is one of the major cities in the northwest of England. According to 2015 census, its population was 530,300. With 2.55 million population, it is the second most popular urban area in the UK. Manchester City Council is the local authority in the Manchester.

The history of Manchester began with the civilian settlement that was established in AD 79 on a sandstone nearby the rivers Irwell and Medlock. The areas lying on the south bank of the River Mersey were merged in the 20th century and it became the part of Lanchester city.

Manchester remained the manorial township throughout the middle ages but started to expand in the turn of 19th century “at an astonishing rate”.  The unplanned urbanisation of Manchester come to boom with the revolution of textile manufacturing. As a result, it becomes the world’s first industrialised city.

Manchester gained the status of a city in 1853. In 1894, the Ship Canal was opened in Manchester. It creates the Manchester’s Port and joins the city and sea. Its prosperity fainted during the Second World War as this war resulted in deindustrialisation. In 1996, the IRA bombing led to broad investment and regeneration. 

Governance

Manchester City Council governs the city Manchester. In 1986, the prior Greater Manchester County Council was eliminated making it a unitary authority. Manchester is a member of English Core Cities Group since 1995. Thomas Greeley granted an agreement to the town of Manchester in 1301. In 1359, its borough status was gone in some court case.  

Climate

Manchester has an Oceanic temperature climate. The temperature in summer goes to 20 Celsius and reaches 25 particularly in July and August. Temperature now goes to 30 Celsius on occasions. During the winters, the temperature rarely follows below the freezing. There is general rainfall throughout the year. Manchester has an average of annual rainfall is 806.6 mm.

This means that 140.4 days per annum are rainy. The average of UK is 154.4 days per annum. It has high humidity level along with a great supply of soft water. This is one of the crucial factors that results in textile industry localization. Because of urban warming effect in the city, snowfall is not very common.

Demography

In 1931, the population of Manchester started to increase during the Victorian era. After it, the population start reducing rapidly because of the removal of the slum and the increased building of social housing overspill estates. In 2012, the estimated population was 510,700.

It is an increase of 1.6 since the 2011 MYE. The population has evolved to 20.8% since 2001. According to 2011 census, Manchester is the third fastest growing area. Manchester experienced the great percentage of growth outside the London with an increase of 500,000. With the increase of 2.8 % from 2011, the population is projected to reach 532,200 by 2021.

Economy

Along with Salford, Stockport, Tameside and Trafford, the Office for National Statistics produce economic data for Manchester city. The growth of the economy is comparatively high between 2002 and 2012 where growth was 2.3% that is above the national average of the Manchester.

The UK’s wide-ranging economy of the metropolitan is the third largest with GDP of $88.3 bn. As it continues to recover from the recession that is faced in 2008-10, Manchester compares favourably to other geographies. It reports the annual growth of 5% in business stock.

Landmarks

The buildings of Manchester shows the variety of architectural styles that range from Victorian to contemporary architecture. The use of red brick makes the city beautiful. There is a large number of cotton mills just outside the city.