SmartBridges sB3410 manual Dhcp

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i n t e l l i g e n t

w i r e l e s s

p l a t f o r m

According to the IEEE 802.11 standard, Wired Equivalent Privacy (WEP) is intended to provide “confidentiality that is subjectively equivalent to the confidentiality of a wired local area network medium and that does not employ cryptographic techniques to enhance privacy.”

WEP relies on a secret key that is shared between a mobile station and an access point. WEP uses the RC4 stream cipher invented by RSA Data Security. RC4 is a symmetric stream cipher that uses the same variable length key for encryption and decryption. With WEP enabled, the sender encrypts the data frame payload and replaces the original payload with the encrypted payload. The sender then forwards the encrypted frame to its destination. The encrypted data frames are sent with the MAC header WEP bit set. Thus, the receiver knows to use the shared WEP key to decrypt the payload and recover the original frame. The new frame, with an unencrypted payload can then be passed to an upper layer protocol.

WEP keys can be either statically configured or dynamically generated. In either case, WEP has been found to be easily broken.

WPA

Wi-Fi Protected Access (WPA) is a replacement security standard for WEP. It is a subset of the IEEE 802.11i standard being developed. WPA makes use of TKIP to deliver security superior to WEP. 802.1X access control is still employed. The Authentication Server provides the material for creating the keys.

Packet Concatenation

Packet concatenation will increase the throughput of the equipment by simply buffering the packets at the transmitter and convert them into superframe for the transmission over the wireless interface.

Packet Bursting

Packet bursting is for increasing the throughput by increasing the window size and reducing the time for acknowledgement.

Packet Compression

LZO compression is being used to achieve more throughputs.

COFDM

COFDM involves modulating the data onto a large number of carriers using the FDM technique. The Key features which makes it work, in a manner is so well suited to terrestrial channels, includes:

Orthogonality (the “O” of COFDM);

The addition of Guard interval;

The use of error coding (the “C” of COFDM), interleaving and channel-state information

COFDM is resistant to multipath effects because it uses multiple carriers to transmit the same signal.

Spanning Tree Protocol (STP)

STP is a Layer 2 link management protocol that provides path redundancy while preventing loops in the network. For a Layer 2 Ethernet network to function properly, only one active path can exist between any two stations. Spanning-tree operation is transparent to end stations, which cannot detect whether they are connected to a single LAN segment or to a LAN of multiple segments.

RIP

The most popular of the TCP/IP interior routing protocols is the Routing Information Protocol (RIP). RIP is used to dynamically exchange routing information. RIP routers broadcast their routing tables every 30 seconds by default. Other RIP equipments will listen for these RIP broadcasts and update their own route tables.

DHCP

airClient™ Nexus User Guide

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Contents AirClient Nexus SB3410 VersionTable of Contents T e l l i g e n t w i r e l e s s A t f o r m Overview of User Guide About This DocumentRelated Publications Technical Support Center Introduction System RequirementsChecklists Pre-Installation Checklist for airClientParameters Units Site a Site B Signature of Engineer Name DatePost-Installation Checklist for airClient RssiChecklist Parameters Units Site a Site B AirClient Configuration User Login and License AgreementLicense Agreement Web GUI Administrator Password Change Using the Configuration Pages Description of Menus Menu Item Menu Sub-itemsMenu Item Menu Sub-items Description NetworkingSaved profiles and shows last Help Device Mode Configuration Device mode settings same for Router/NAT modeAirClient Bridge to airClient Router/NAT Changing airClient Bridge to airClient Router/NATAirClient Router/NAT to airClient Bridge Changing airClient Router/NAT to airClient BridgeEthernet Configuration AirClient Bridge ConfigurationWireless Configuration 10 airClient Bridge Wireless Settings Bridge Configuration 11 Link StatusConfiguring Spanning Tree Protocol STP 12 Bridge Configuration InformationSTP Settings Configuration Setting Default Value Range Purpose Radio port Radio aAirClient Router/NAT Configuration 13 Bridge Configuration14 airClient Router Ethernet Configuration 15 airClient Router Wireless IP Configuration 16 airClient Router Wireless Association Settings Dhcp Configurations 18 Dhcp Server ConfigurationsDhcp Relay Configurations 19 Disable Dhcp and Dhcp Relay20 Dhcp Relay Agent Configurations Routing Table22 Adding Static Route Wireless Settings Management Wireless SettingsData Encryption Valid Key Key Table24 Data Encryption Disable Link Performance Parameters and Features Performance Parameters and Bandwidth ControllerThroughput OptimizerBandwidth Controller AirClient Bandwidth ControllerSite Survey Tool Site Survey showing associated devicesAntenna Alignment Antenna AlignmentT e l l i g e n t R e l e s s A t f o r m Traffic Statistics Ethernet Traffic StatisticsTransmitted Bytes Transmitted Unicast packetsWireless Traffic Statistics Transmit Success Rate Transmit Multiple retryTransmit Retry rate Transmitted Failure countWireless Traffic Statistics ACK Receives Failure CountRTS Fail No of Aborted FramesSystem Configuration ToolsSnmp Security Reset Options NTP Time Server Setup Delayed Reset SettingsNTP Time Settings Profile ManagerDescription of Commands Save ProfileLoad Operating Profile Profile CalendarScheduling a Profile Link Test Ping Test ResultLink Budget Planning Throughput Test ResultLink Budget Planning Calculator GPS Calculator 10 Link Budget Planning Calculator Link Budget Firmware Upgrade AirClient Nexus Firmware UpgradeAirClient Nexus Firmware Upgrade Firmware transferred Appendix a Snmp Trap Appendix B Useful terms and definitions Acronyms and AbbreviationsDhcp Snmp Appendix C License