802.11 Equipment Last Update 2008.12.09 1.2.0 1Copyright 2005-2008 Kenneth M. Chipps Ph.D. www.chipps.com.

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Presentation transcript:

Equipment Last Update Copyright Kenneth M. Chipps Ph.D.

The Basic Equipment Only two parts are needed to create a b network The parts are –Access Point –NIC Such a network looks like this 2 Copyright Kenneth M. Chipps Ph.D.

The Basic Equipment 3 Copyright Kenneth M. Chipps Ph.D.

What is an Access Point An access point or AP provides a means to connect a wireless device to a wired network It is the intermediary in the connection between the wired and wireless networks 4 Copyright Kenneth M. Chipps Ph.D.

Access Point Operating Modes An AP can operate in one of three modes –Root Mode –Repeater Mode –Bridge Mode 5 Copyright Kenneth M. Chipps Ph.D.

Root Mode In root mode the AP is connected directly to the wired network by attaching a cable to the Ethernet port in the AP and to a hub or switch on the wired network This is the default configuration for most access points In root mode one access point can talk to another one by going through the wires they both share 6 Copyright Kenneth M. Chipps Ph.D.

Root Mode This type of conversation is required when a device communicating with one AP needs to talk to a device that is attached to another AP on the same wired network APs also use this connection to coordinate roaming among access points similarly configured In this mode an AP is operating as a bridge at layer 2 of the OSI model 7 Copyright Kenneth M. Chipps Ph.D.

Communication in Root Mode 8 Copyright Kenneth M. Chipps Ph.D.

Bridge Mode In this mode the AP operates like a bridge A bridge is a way to connect two physical parts of the same network together Devices do not connect to bridges 9 Copyright Kenneth M. Chipps Ph.D.

Bridge Mode 10 Copyright Kenneth M. Chipps Ph.D.

Repeater Mode In repeater mode an additional access point is used to wirelessly extend the range of an existing access point This is done by having the clients at the extended distance connect wirelessly to the AP that is located away from the main access point This extended access point then connects wirelessly back to the main AP 11 Copyright Kenneth M. Chipps Ph.D.

Repeater Mode The cell of the extended AP must overlap the cell of the main AP by 50 percent for this to work effectively The throughput of the wireless LAN – Local Area Network is cut significantly as the repeater must receive and retransmit each frame on the channel This basically doubles the traffic on the wireless media Copyright Kenneth M. Chipps Ph.D. 12

Repeater Mode In general, to setup an AP for this role all that is required is to switch the AP to repeater mode, then set the SSID, which is the name of the wireless network, to match the SSID of the root mode AP Not all APs have a repeater mode 13 Copyright Kenneth M. Chipps Ph.D.

Repeater Mode 14 Copyright Kenneth M. Chipps Ph.D.

Access Point Management There is an ongoing argument concerning the way to manage an increasing number of access points As organizations add more and more access points there is a need to limit the amount of time required to manage these The suggested method is to use limited access points and wireless switches 15 Copyright Kenneth M. Chipps Ph.D.

Access Point Management The term wireless switch is an unfortunate marketing term for taking all of the intelligence out of the access points, which is fine, and placing it in a single box at the junction point between the wireless and wired networks Copyright Kenneth M. Chipps Ph.D. 16

Access Point Management Here is a discussion on this from Ortronics –Centralized wireless LANs use a wireless controller to manage, process, and configure your radio frequency (RF) environment –The access points, sometimes called "thin APs", communicate directly with the central controller located at the edge of the wired network 17 Copyright Kenneth M. Chipps Ph.D.

Access Point Management –Unlike a traditional more costly access point, all the functionality and intelligence is offloaded to the controller –This provides a single point of administration for various policies relating to security, intrusion detection, user roles, and software upgrade Copyright Kenneth M. Chipps Ph.D. 18

Access Point Management –A traditional wireless LAN uses decentralized "fat" access points that perform all the network processing and functionality in each unit –Manual configuration of each access point consumes valuable network administrator time to manually set power levels, channel, security, and many other configurable parameters 19 Copyright Kenneth M. Chipps Ph.D.

Access Point Management –In larger deployments, this could lead to configuration mistakes that go unnoticed causing performance problems or network security risks –Firmware upgrades, to fix or add functionality, can be a painstaking process with as few as six access points –Each AP will most likely have to be individually updated and touched by the administrator if remote upgrade tools are not available Copyright Kenneth M. Chipps Ph.D. 20

Access Point Management –New standards, such as i for robust security, may require hardware replacement due to a lack of processing power or incompatibility with your existing access points –Centralized deployment lowers total cost of ownership and solves many of the problems associated with older architectures 21 Copyright Kenneth M. Chipps Ph.D.

Access Point Management –Enhanced integrated functionality i.e. VPN, Secure VoIP fast roaming support, intrusion detection, stateful firewall, and auto calibration redundancy, are typically unsupported by distributed access points Copyright Kenneth M. Chipps Ph.D. 22

Access Point Management –Wireless controllers inspect all wireless traffic prior to being sent to the wired network. Ortronics wireless controllers are able to automatically download minimal configuration parameters and are aware of surrounding access points so that calibration of power and channel settings occur Copyright Kenneth M. Chipps Ph.D. 23

Antenna Types Most APs come with either a single dipole antenna or diversity antennas A diversity antenna is simply multiple antennas connected to a single receiver This helps to overcome multipath reception problems 24 Copyright Kenneth M. Chipps Ph.D.

Access Point Options Depending on price and manufacturer an access point may have some of the following options available –Detachable Antenna –Filtering –Radio Cards –Variable Power Output –Wired Network Connection 25 Copyright Kenneth M. Chipps Ph.D.

Detachable Antenna With a detachable antenna it is possible to –Mount the AP away from the antenna, such as the antenna outside and the AP inside –Allow a higher gain antenna to be exchanged for the standard dipole 26 Copyright Kenneth M. Chipps Ph.D.

Filtering Filtering that is possible on an AP is usually –MAC filtering –Protocol filtering In MAC filtering a table of those devices that are allowed on the network is kept based on the MAC address of each device 27 Copyright Kenneth M. Chipps Ph.D.

Filtering Protocol filtering allows the restriction of what type of network access is allowed through the wireless portion of the network Copyright Kenneth M. Chipps Ph.D. 28

Radio Cards Most APs have a radio that is fixed in place To change the radio requires a fork lift upgrade In other words, throw out the existing AP and buy another one Radio cards, added through PCMCIA slots, allow the radio portion of the AP to be upgraded 29 Copyright Kenneth M. Chipps Ph.D.

Radio Cards Another use of a radio card slot is to allow a single AP to perform two functions, such as standard access point and bridge in a single unit A last use is to use the slot to add capacity without buying another AP Copyright Kenneth M. Chipps Ph.D. 30

Variable Power Output Variable power output allows the power, in milliwatts, can be adjusted Normally this is used to control the cell size the AP serves 31 Copyright Kenneth M. Chipps Ph.D.

Wired Network Connection The standard way of connecting an access point to the wired network is either a 10BaseT or 100BaseT connection But this limits the distance the AP can be from the wired network to 100 meters A fiber port, such as 100BaseFX, allows a more distant connection 32 Copyright Kenneth M. Chipps Ph.D.

Example Access Point Let’s look at an example of a typical access point In this case a DLink DWL-900AP+ On the front of the unit are three lights –Power –LAN activity –WAN activity 33 Copyright Kenneth M. Chipps Ph.D.

Example Access Point On the back –Reset button –Wired LAN connection –Power supply connection Copyright Kenneth M. Chipps Ph.D. 34

DLink DWL-900AP+ Front 35 PowerWired LAN Activity Wireless LAN Activity Copyright Kenneth M. Chipps Ph.D.

DLink DWL-900AP+ Back 36 LAN Connection Reset Power Supply Copyright Kenneth M. Chipps Ph.D.

Setup Once the physical connections are made the access point must be configured In this example the DLink DWL-900AP+ is setup using the built-in setup program as seen in the pages that follow In the first few screenshots the setup wizard is being used 37 Copyright Kenneth M. Chipps Ph.D.

Setup Then the normal method is shown where the individual setup pages are selected Typical configuration steps include –Login –Set a password –Select the SSID and channel Copyright Kenneth M. Chipps Ph.D. 38

Setup –Enable WEP –Set an IP address and subnet mask for the AP –Setup the built-in DHCP server –Set the operating mode –Adjust the performance –Setup MAC filtering 39 Copyright Kenneth M. Chipps Ph.D.

Setup After the AP is in operation the status of the network can be checked through the AP’s management program Copyright Kenneth M. Chipps Ph.D. 40

Login 41 Copyright Kenneth M. Chipps Ph.D.

Setup Opening Menu 42 Copyright Kenneth M. Chipps Ph.D.

Setup Wizard 43 Copyright Kenneth M. Chipps Ph.D.

Password Setup 44 Copyright Kenneth M. Chipps Ph.D.

SSID and Channel Setup 45 Copyright Kenneth M. Chipps Ph.D.

WEP Setup 46 Copyright Kenneth M. Chipps Ph.D.

Setup Wizard Finish 47 Copyright Kenneth M. Chipps Ph.D.

Setup Wizard Finish 48 Copyright Kenneth M. Chipps Ph.D.

WEP Setup 49 Copyright Kenneth M. Chipps Ph.D.

IP Address Setup 50 Copyright Kenneth M. Chipps Ph.D.

DHCP Server Setup 51 Copyright Kenneth M. Chipps Ph.D.

Mode Setup 52 Copyright Kenneth M. Chipps Ph.D.

Performance Adjustment 53 Copyright Kenneth M. Chipps Ph.D.

MAC Filtering Setup 54 Copyright Kenneth M. Chipps Ph.D.

Setup Saving and Recovery 55 Copyright Kenneth M. Chipps Ph.D.

Password Setup 56 Copyright Kenneth M. Chipps Ph.D.

Firmware Upgrade 57 Copyright Kenneth M. Chipps Ph.D.

Activity 58 Copyright Kenneth M. Chipps Ph.D.

Activity 59 Copyright Kenneth M. Chipps Ph.D.

Activity 60 Copyright Kenneth M. Chipps Ph.D.

Wireless Status 61 Copyright Kenneth M. Chipps Ph.D.

Help Topics 62 Copyright Kenneth M. Chipps Ph.D.

Wireless NIC The next piece of equipment needed when creating a wireless network based on the standards is a NIC – Network Interface Card Recall that as in a wired network the NIC is used to allow a device to connect to the network This is the link between a device and the network 63 Copyright Kenneth M. Chipps Ph.D.

Wireless NIC It puts information onto the network It takes information off of the network Copyright Kenneth M. Chipps Ph.D. 64

NIC Forms Wireless NICs come in several forms including these typical ones –PCMCIA –Adaptor Card –USB Port Adaptor –Compact Flash –Wired to Wireless Bridge 65 Copyright Kenneth M. Chipps Ph.D.

PCMCIA Form PCMCIA is the format designed for laptop computers As in 66 Copyright Kenneth M. Chipps Ph.D.

PCMCIA NIC 67 Copyright Kenneth M. Chipps Ph.D.

PCMCIA NIC 68 Copyright Kenneth M. Chipps Ph.D.

PCMCIA NIC 69 Copyright Kenneth M. Chipps Ph.D.

PCMCIA NIC 70 Copyright Kenneth M. Chipps Ph.D.

CardBus v PC Card There are two types of PCMCIA interfaces used in laptops PC Card –This is a 16 bit 3.3 or 5 volt interface CardBus –This is a 32 bit 3.3 volt interface PC Card is the older one It has not been used much since Copyright Kenneth M. Chipps Ph.D.

CardBus v PC Card This style of NIC an also be used in a desktop system by using an adaptor Copyright Kenneth M. Chipps Ph.D. 72

Desktop Wireless NIC The PCMCIA form is sometimes used to make a NIC for use in a desktop computer When used this way the PCMCIA card is inserted into a carrier that will attach to the bus in a desktop computer, such as the PCI bus For example 73 Copyright Kenneth M. Chipps Ph.D.

Wireless NIC – PCI 74 Copyright Kenneth M. Chipps Ph.D.

Compact Flash Form The CF - Compact Flash form of the NIC is used for PDAs and other handheld devices smaller than a laptop computer These look like 75 Copyright Kenneth M. Chipps Ph.D.

CF NIC 76 Copyright Kenneth M. Chipps Ph.D.

CF NIC 77 CF NIC Copyright Kenneth M. Chipps Ph.D.

USB Port Form A new form for a NIC is using the USB port to attach the NIC to the computer As in 78 Copyright Kenneth M. Chipps Ph.D.

USB Port Form Copyright Kenneth M. Chipps Ph.D. 79

Wired to Wireless Adaptor Another new form for a NIC of sorts is the wired to wireless adaptor, also called a wireless bridge This device functions like a bridge to allow a device with a built in wired NIC to attach to a wireless network without altering the built in NIC As in 80 Copyright Kenneth M. Chipps Ph.D.

Wired to Wireless Adaptor 81 Copyright Kenneth M. Chipps Ph.D.

Wireless NIC Setup The setup for a wireless NIC mirrors that of the access point for the most part In this example, after the two opening screens the following is seen –System parameters –Radio frequency setup –Performance setup –Security setup 82 Copyright Kenneth M. Chipps Ph.D.

NIC Utility Program 83 Copyright Kenneth M. Chipps Ph.D.

NIC Setup Screen 84 Copyright Kenneth M. Chipps Ph.D.

NIC System Parameters 85 Copyright Kenneth M. Chipps Ph.D.

NIC RF Setup 86 Copyright Kenneth M. Chipps Ph.D.

NIC Performance Setup 87 Copyright Kenneth M. Chipps Ph.D.

NIC Security Setup 88 Copyright Kenneth M. Chipps Ph.D.

Review What are the major parts of a wireless LAN Copyright Kenneth M. Chipps Ph.D. 89