Cisco Wireless Fundamentals With WLC For CCNA 200-301 CWNA

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课程名称:思科无线基础与WLC(针对新CCNA 200-301和CWNA-109) 课程概述: 欢迎参加“思科无线基础与WLC”课程,这是为新CCNA 200-301和CWNA-109量身定制的完整课程,仅需21天,您就能掌握思科无线基础知识,并能够在真实设备上进行配置。课程涵盖每个主题的理论,并在学习结束后进行自我测试,帮助您在考试前做好准备。 课程内容: 1. **无线电波传播基础**: - 学习无线电频率、波长、幅度和相位差的定义。 - 探索与RF信号相关的现象,如吸收、反射、衍射、散射等,并了解自由空间路径损耗和Fresnel区。 - 学习信号强度、RSSI及传输功率计算,了解干扰类型及设备要求。 2. **802.11技术基础**: - 介绍Wi-Fi治理及相关机构,学习IEEE 802.11的必要性与无线信道组合的使用。 - 讲解调制、信道宽度和MIMO技术,了解各种无线框架类型。 3. **思科无线架构**: - 探讨独立、云架构和拆分MAC架构的需求,了解集中式FlexConnect与融合部署的差异。 - 学习无线控制器(WLC)与接入点(AP)管理的连接方式和管理方法。 4. **无线网络的操作**: - 如何为各种思科无线基础设施执行初始设置,包括独立AP和云AP的设置。 - 理解AP的启动过程和CAPWAP的发现方法,并学习简单的WLAN配置。 5. **客户端连接配置**: - 学习如何配置客户端和WLAN,实现安全的身份验证与加密。 - 探讨不同操作系统的客户端连接配置以及移动性架构的组成部分。 6. **无线网络故障排除**: - 了解如何检查WLAN配置设置和故障排除工具的使用,包括Cisco工具和第三方工具。 7. **现场调研**: - 介绍各种现场调研方法,理解如何根据调研结果优化无线设计。 通过此课程,您将获得无线网络管理所需的核心知识,为考试和未来的职业生涯打下坚实基础。期待您的参与!

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Welcome to The Course "Cisco Wireless Fundamentals With WLC For New CCNA 200-301 The Complete Course With Theory Labs "With the help of this course, you will be able to get all necessary information to learn your Cisco Wireless Fundamentals With WLC For For New CCNA 200-301 and CWNA-109 in only 21 DaysYou will learn theory behind each topic and then see how they are configured on real devices. In the end, you will be able to test yourself before The BIG DAY.Welcome to Cisco Wireless Fundamentals With WLC For For New CCNA 200-301 and CWNA-109. In this course you will learn ccna wireless exam topics and important and useful subjects for your profession.Lets go over each chapter and go on more detail about what to come in this course,First off, you will learn a great deal about rf fundamentals.This is the starting point for your wireless journey and it will lay a good foundation for the following chaptersIn the first chapter we will be describing the propagation of radio waves, we will learn about rf signals and the spectrum.We will answer some questions like: What is frequency, what is wavelength, what is amplitude and what is phase difference.We will also learn about different phenomenas related with rf signals such as absorption, reflection, diffraction, scattering, refraction, multipath and fading.We will also learn free space path loss and also fresnel zone. On the second part of this chapter, we will go deep into rf fundamentals, what is signal strength, what does RSSI mean, how to calculate transmit power.We will go over some different interference types and the noise, what are different device requirements and capabilities.We will also learn principles of rf mathematics, how to calculate dB, dBi, dBd, dBm and how we can measure different power levels.We will also learn to calculate EIRP. We will see wifi antenna characteristics, how does the radiation pattern of an antenna occur, what is polarization,how gain is measured, what is the beamwidth of an antenna and we will go over different types of antennas: Omnidirectional, yagi,patch and dish We will explain different antenna connectors and why we need them and lastly, we will study amplifiers and attenuatorsOn our second chapter, we will learn about 802.11 Technology FundamentalsIn this chapter we will describe basic Wi-fi governance, what are the governing regulatory bodies, what is IEEE, why do we need to learn about ieee 802.11 and what is wifi-alliance.On the second part of this chapter, we will also learn about usable channel and power combinations. We already learned about EIRP, we will also learn its limitations. We will be learning about ISM and UNII frequency bands. We will go over rrm fundamentals on the last part of this chapterWe will also learn about 802.11 fundamentals, what is modulation, what is channel width, how do we use them. We will learn about MIMO multiple input multiple output, we will go over wireless topologies and we will learn different wireless frame types such as management, control and data. So simply we will learn a lot about 802.11 fundamentals in this chapterIn Chapter 3 we will learn about various Cisco wireless architectures.We will learn why we need autonomous, cloud architecures, why do we need split mac architecture and we will learn differences regarding centralized flex connect and converged deployment types, then we will go over physical connections for wired and wireless infrastructure. We will understand how to connect wlcs to switches how to connect different ap types to switches and why do we need etherchannel and also learn what do wcms on switches add us in terms of benefits.Then we will examine wlc and ap management access connections, what are different management methods, what are wlc ports, what the different wlc interfaces do and we will also learn why we should disable management via wireless.Capter four is about operating a wireless network. In this chapter we will talk about how to execute initial setup procedures for various cisco wireless infrastructures, how to do initial setup for autonomous access points, how to setup cloud aps and manage them. We will learn how to setup centralized wlcs and wireless control modules. Next up, we will learn ap boot process and different capwap discovery methods, then we will understand what are different capwap join processesand we will learn how access points choose to join a specific wlc. What is the master controller, why do we need primary secondary and tertiary controllersW wil also compare different access point modes, such as monitoring mode flex connect mode and wipsO the second part of this chapter we will configure a simple wlan, what do we need to configure, what are the parameters that need to be configured what do we need to configure for security, whether we should broadcast the ssid or not, different security levels for layer 2 and layer 3 security and how to choose a aaa server and some parameters for advanced topics.We will also go over different platforms for wireless management and configurations, how we can configure a wireless lan controller via gui and cli, how we can configure wireless lan controllers and autonomous access points via cisco prime infrastructure, how we can use ise identity services engine as a aaa server for wireless configurations.Inthe last part we will talk about how to maintain a wireless network, how to get wireless lan controller backups, how to do code updates for wireless components such as autonomous access points, aireos based controllers and ios xe based controllers.Chapter five is all about client connectivity configuration, In this chapter we will learn how to configure your clients and how to configure your wlans to prepare for client connectivity. In this chapter we will talk about authentication and encryption, what is authentication, what are different types of encryption some examples of it, tkip aes.Then we will go over 802.1x and eap, we will understand the eap process and then we will compare most common methods, peap, eap-fast eap-tls and we will go over aaa server options and then we will talk about different client authentication methods, why do we use open authentication, what are benefits and what are disadvantages of open authentication. We will also talk about psk authentication and local eap, then we will learn how to configure them in your wlc. We will go over wireless authentication using ISE a radius server, we will also learn how to configure web authentication on your wlc and we will also talk about different wpa modes: wpa personal wpa enterprise wpa2 personal and wpa2 enterprise, all those different modes will be discussed in detail.And on the second part of chapter fivewe will learn how to provide client connectivity in different operating systems, we will go over how to configure windows ios macos and android devicesand then we will talk about roaming.We will learn different components of mobility architecture such as mobility controller and mobility agent, we will go over different types of roaming, intracontroller roaming and intercontroller roaming. We will also talk about main deployment types centralized mobility and converged mobilityfor both layer 2 and layer 3 roaming and then we will go over how to configure wireless guest networking with anchor controller and foreign controllerThen we will begin chapter six, in this chapter, we will learn how to troubleshoot wireless networks. We will go over different wlan configuration settings that we need to check. What can go wrong for access point settings, and also we will talk about which settings we need to check on client side. Then we will learn some Cisco tools to troubleshoot our controllers and also we will learn some of third party troubleshooting tools such as spectrum analyzers, wifi scanners and packet analyzers and we will go over a couple of examples for these tools.As the last chapter we will learn about site survey. In this chapter we will be talking about different site survey methods, one of them is offsite site survey which is also known as predictive site surveyThe other method is onsite and on onsite site survey we have couple of options. One is predeployment site survey, we can use ap on a stick as an active predeployment onsite site survey. We will also learn the postdeployment site survey and in the post deployment we can have passive and active site survey options. We will also go over the reasons why we need site survey and how we can apply outcomes of those site surveys to get our wireless design betterand we will also talk about what we need for our client application requirements, what are real time applications what are non real time applications and how we can implement those requirements properly.TopicsDescribing The Propagation Of Radio WavesRF Signals for CWNA and CCNAWhat is Frequency and How Do You Measure It for CWNA and CCNAWhat is Amplitude for CWNA and CCNAWhat is Phase for CWNA and CCNAWhat is Wavelength for CWNA and CCNAAbsorption for CWNA and CCNAReflection for CWNA and CCNADiffraction for CWNA and CCNAScattering for CWNA and CCNARefraction for CWNA and CCNAMultipath and Fading for CWNA and CCNAFree Space Path Loss for CWNA and CCNAFresnel Zone for CWNA and CCNASignal Strength RSSI Transmit Power for CWNA and CCNAInterference Types and Noise for CWNA and CCNADevice Requirements and Capabilities for CWNA and CCNAPrinciples of RF Mathematics Overview for CWNA and CCNAEIRP for CWNA and CCNARadiation Pattern Polarization Gain and Beamwidth for CWNA and CCNADifferent Antenna Types for CWNA and CCNAAntenna Connectors Amplifiers Attenuators Lightning Arresters for CWNAWi-Fi Governance Organizations for CWNA and CCNAIEEE and 80211 Standards Overview for CWNA and CCNAWi-Fi Alliance for CWNA and CCNAFHSS Modulation Technique for CWNA and CCNADSSS Modulation Technique for CWNA and CCNAOFDM Modulation Technique for CWNA and CCNA80211b Standard for CWNA and CCNA80211g-a-n-ac Standards for CWNA and CCNAChannel Width for CWNA and CCNAMIMO and Its Features for CWNA and CCNAWireless Network Types for CWNA and CCNAWireless Topologies for CWNA and CCNA Other Wireless Types for CWNA and CCNAAutonomous Architecture for CWNA and CCNACloud Architecture for CWNA and CCNASplit-MAC Architecture for CWNA and CCNACentralized Deployment for CWNA and CCNAFlexconnect Deployment for CWNA and CCNAConverged Deployment for CWNA and CCNAPhysical Connections For Wireless Devices for CWNA and CCNAManagement Connections For Wireless Devices for CWNA and CCNALab Introduction to WLC and Modifying Management Accessfor CWNAThank you for joining me on this journeyI hope you will love to learn with us

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