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無庫存,下單後進貨(採購期約45個工作天)
控制網絡技術(簡體書)
人民幣定價:52元
定  價:NT$312元
優惠價: 87271
可得紅利積點:8 點

無庫存,下單後進貨(採購期約45個工作天)

商品簡介

目次

本書是將計算機網絡與工業控制網絡相結合,針對現代工業企業各層次組網和優化問題,提出一攬子理論和實踐的解決方案,培養能夠適應未來發展需要的高層次、高水平本科畢業生。本書的讀者對象為高等本科和大專院校在讀學生,授課教師以及廣大工業企業、研究院所、工程公司的工程技術人員。
Chapter1Preface1.1Enterpriseintegratedautomationsystem1.1.1alayeredstructure1.2reviewofcomputernetworks1.2.1terminal-orientedcomputernetwork1.2.2networkcenteredonacommunicationsubnet1.2.3openstandardizednetwork1.2.4high-speedintelligentnetwork1.2.5Thefunctionandapplicationofcomputernetwork
1.2.6Thecompositionofcomputernetwork1.2.7Theindexesofcomputernetwork1.3overviewofindustrialfieldbus1.3.1controlnetworkandfieldbus1.3.2industrialdatacommunication1.3.3earlybustechnology1.3.4Newstructureofcontrolsystem1.3.5Thecharacteristicsofnetworkintegratedcontrolsystem
1.3.6Therequirementsofthecontrolsystemtothenetwork1.4ThedevelopmentandstandardizationofcontrolnetworksExercise1Chapter2Datacommunicationfoundation2.1basicconceptsofdatacommunication2.1.1Basicconceptsofdatacommunicationsystem2.1.2data,informationandsignals
2.2datatransmissionandchannel2.2.1datatransmissionmodeanditsclassification2.2.2channelanditsmaincharacteristics2.3datacoding2.3.1theconceptofdatacoding2.3.2standardcharactercodingcommonlyusedin2.3.3codetypeanditscodingmethod2.3.4severalcodingmethodsofnetworkphysicallayer
2.4channelmultiplexingtechnology2.4.1frequencydivisionmultiplexing2.4.2wavelengthdivisionmultiplexing2.4.3timedivisionmultiplexing2.4.4codedivisionmultiplexing2.4.5timedivisionsynchronizationcodedivisionmultiplexing2.5indexofcommunicationsystem2.5.1effectivenessindex
2.5.2reliabilityindex2.5.3Frequencycharacteristicsofcommunicationchannel2.5.4mediumbandwidth2.5.5channelcapacity2.5.6Influenceofsignal-to-noiseratioonchannelcapacity2.6datatransmissionmode2.6.1serialandparalleltransmission2.6.2synchronousandasynchronoustransmission
2.6.3synchronizationmethod2.7workingmodeofcommunicationline2.7.1singleworkcommunication2.7.2halfduplexcommunication2.7.3fullduplexcommunication2.8thetransmissionmodeofsignal2.8.1basebandtransmission2.8.2carriertransmission2.8.3broadbandtransmission2.8.4asynchronoustransfermodeATM2.9errorcontrol2.9.1errordetectionmethod2.9.2theprincipleofCRC2.9.3errorcorrectionmethodExercise2Chapter3thecomputernetworkfoundation3.1networktopology3.1.1ringtopology3.1.2startopology3.1.3bustopology3.1.4treetopology
3.2Transmissionmediumofnetwork3.2.1twistedpairline3.2.2coaxialcable3.2.3opticalfibercable3.2.4wirelesscommunication3.3accesscontrolmodeofnetworktransmissionmedium3.3.1carriermonitoringmultipleaccessconflictdetection3.3.2Thetokenmodeofmediaaccesscontrol3.3.3timedivisionmultiplexingExercise3Chapter4thestructureofcomputernetwork4.1Anoverviewofcomputernetworkarchitecture4.1.1Basicconceptsofnetworkarchitecture4.1.2Thelayerednetworkarchitecture4.2ISO-OSIreferencemodel4.2.1physicallayer4.2.2datalinklayer
4.2.3networklayer4.2.4transportlayer4.2.5sessionlayer,presentationlayerandapplicationlayer4.3TCPIPstructure4.3.1VariouslevelsintheTCPIPstructure4.3.2NetworkinterfacelayerinTCPIP4.4five-layerprotocolmodel4.5importantconcepts4.5.1entities,protocols,services,andserviceaccesspoints
4.5.2connectionserviceandconnectionlessservice4.6networkinterconnectedequipment4.6.1networkcardandmodem4.6.2repeaterandhub4.6.3bridgeandswitch4.6.4router4.6.5gatewayExercise4Chapter5LANtechnology5.1LANoverview5.1.1ThebasiccompositionandcharacteristicsofLAN
5.1.2TopologyofLAN5.1.3ThemainprotocoloftheLAN5.2IEEE8025.3mediaaccesscontrolmethod5.3.1controlledaccesscontrolmethod5.3.2randomaccesscontrolmethod5.4EthernetTechnology5.4.1ThegenesisanddevelopmentofEthernet5.4.2ThephysicalmediumofEthernetanditsnamingmethod
5.4.3CSMACD5.4.4ThephysicaladdressoftheMAClayer5.4.5MACframeformat5.4.6errorcheckingmechanism5.5extensionofLAN5.5.1extendstheLANonthephysicallayer5.5.2extendstheLANonthedatalinklayer5.6highspeedlocalareanetwork5.6.1FastEthernet5.6.2GigabitEthernet5.6.3tenGigabitEthernet5.6.4fiberdistributeddatainterface5.6.5virtualLAN5.7wirelessLAN5.7.1OverviewofwirelessLAN5.7.2Thephysicallayerinthe802.11standard5.7.3TheMAClayerinthe802.11standardExercise5Chapter6networkinterconnection6.1overviewofnetworkinterconnection
6.1.1Basicproblemsofnetworkinterconnection6.1.2networkinterconnectionmode6.2NetworkinterconnectionprotocolinTCPIPsystem6.2.1IPaddress6.2.2subnetandsubnetmask6.2.3unclassifiedcoding6.2.4addressresolutionprotocolandinverseaddressresolutionprotocol6.2.5TheformatofIPdatagram
6.2.6IPlayerforwardingpacketprocess6.3routingprotocol6.3.1routinginformationprotocol6.3.2openshortestpathpriorityprotocol6.3.3externalgatewayprotocol6.4ICMP6.5introductionofnetworkinterconnectionprotocolIPv66.5.1IPv6'smessagefirst6.5.2TheaddressschemeofIPv6
6.5.3transitionfromIPv4toIPv66.5.4ICMPv6Exercise6Chapter7thetransportlayer7.1Anoverviewofthetransportlayer7.2ThetransportlayerintheTCPIPsystem7.2.1Twoprotocolsinthetransportlayer7.2.2TheconceptofportandSocket7.3UDPprotocol7.3.1UDPoverview7.3.2ThefirstformatoftheUDPdatagram
7.4TCPprotocol7.4.1Themainfeatures7.4.2ThefirstpartoftheTCPmessagesegment7.4.3Theprincipleofreliabletransmission7.4.4Connectionmanagement7.4.5Trafficcontrol7.4.6Congestioncontrol7.4.7MaintenanceclockandtimeoutretransmissionmechanismExercise7Chapter8Generalserialportdatacommunication
8.1serialcommunication8.1.1Thestartingandstoppingbits8.1.2connectionhandshake8.1.3confirmation8.1.4interruption8.1.5polling8.1.6errortest8.2EIA-232-Dinterfacestandard8.2.1Mechanicalproperties8.2.2Theelectricalcharacteristics8.2.3Thefunctionalfeatures8.2.4ThespecificationofEIA-232-D8.2.5DB-9connector8.2.6DirectconnectionofEIA-232-Dport8.3EIA-4858.3.1TechnicalparametersofEIA-4858.3.2TheinternalcircuitofEIA-4858.4PortconnectionofEIA-4858.4.1HalfduplexconnectionofEIA-4858.4.2FullduplexconnectionofEIA-485
8.4.3ConversionofEIA-232toEIA-485port8.5EIA-485networkconnection8.5.1Themechanicalandelectricalinterface8.5.2networktopology8.5.3addinggroundwire8.5.4electricalisolation8.5.5shieldingandgrounding8.6Themasterandslavecommunicationmanagement8.6.1master-slaveprotocol
8.6.2universalserialprotocol8.6.3ModbusandModbusPlusExercise8Chapter9PROFIBUS9.1overview9.1.1BasiccharacteristicsofPROFIBUS9.1.2PROFIBUS-DP9.1.3PROFIBUS-PA9.1.4PROFIBUS-FMS9.2PROFIBUScommunicationprotocol9.2.1PROFIBUSandISOOSIreferencemodel9.2.2PROFIBUSdevicesettings
9.2.3connection-orienteddataexchangesequencediagram9.3ImplementationofPROFIBUS9.3.1TheimplementationofDPfromthestationsinglechip9.3.2ImplementationofintelligentFMSandDPslavestation9.3.3TheimplementationofcomplexFMSandDPmasterstations9.3.4ImplementationofPAfieldequipment
9.4PROFIBUScontrollerASPC29.4.1overview9.4.2functionsummary9.4.3pindescription9.4.4ASICinterface9.4.5processorinterface9.4.6serialbusinterface9.4.7encapsulation(P-MQFP100)9.4.8examples9.4.9PROFIBUSinterfaceExercise9Chapter10IndustrialEthernet10.1IntroductionofIndustrialEthernet
10.1.1IndustrialEthernetandEthernet10.1.2IndustrialEthernetsolutiontonon-deterministicproblems10.1.3CommunicationframestructureanddataencapsulationofEthernet10.2thephysicallayerofEthernetandtheMACsublayer10.2.1IEEE802.3andEthernet10.2.2Ethernetphysicallayer
10.2.3FrameformatofEthernetandIEEE80210.3TCPIPprotocolgroup10.3.1ThecompositionoftheTCPIPprotocolgroup10.3.2IPprotocol10.3.3userdatagramprotocol10.3.4transmissioncontrolprotocolTCP10.3.5simplenetworkmanagementprotocolSNMP10.4EthernetIP10.4.1CommunicationreferencemodelofEthernetIP
10.4.2Objectandidentification10.4.3ThetypeofmessageofEthernetIP10.4.4TechnicalfeaturesofEtherNetIP10.5PROFINET10.6.1switch10.6.2router10.6.3VLAN10.6.4caseExercise10

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