ITU-T T 71-1988 LINK ACCESS PROTOCOL BALANCED (LAPB) EXTENDED FOR HALF - DUPLEX PHYSICAL LEVEL FACILITY《具有半双工物理层性能的扩充的平衡型链路接入协议(LAPB)》.pdf
《ITU-T T 71-1988 LINK ACCESS PROTOCOL BALANCED (LAPB) EXTENDED FOR HALF - DUPLEX PHYSICAL LEVEL FACILITY《具有半双工物理层性能的扩充的平衡型链路接入协议(LAPB)》.pdf》由会员分享,可在线阅读,更多相关《ITU-T T 71-1988 LINK ACCESS PROTOCOL BALANCED (LAPB) EXTENDED FOR HALF - DUPLEX PHYSICAL LEVEL FACILITY《具有半双工物理层性能的扩充的平衡型链路接入协议(LAPB)》.pdf(9页珍藏版)》请在麦多课文档分享上搜索。
1、INTERNATIONAL TELECOMMUNICATION UNION)45G134 4 TELECOMMUNICATIONSTANDARDIZATION SECTOROF ITU4%2-).!,G0G0%15)0-%.4G0G0!.$G0G002/4/#/,3G0G0 amended at Melbourne, 1988)The CCITT,considering(a) that the Teletex service will be introduced in different types of networks, i.e. circuit switched public datan
2、etworks (CSPDN), packet switched public data networks (PSPDN) and public switched telephone networks(PSTN);(b) that depending on the service provided by the physical level, the link level procedures may have to cater fora half-duplex transmission facility;(c) that some Administrations are considerin
3、g the provision of a Teletex service with a half-duplextransmission facility on the PSTN;(d) that modems according to Recommendation V.26 bis are suitable for half-duplex transmission at 2400 bit/son PSNTs,unanimously declaresthat this Recommendation defines the link level procedure using LAPB exten
4、ded for half-duplex physical levelservice.1 Introduction1.1 General1.1.1 Figure 1/T.71 shows the half-duplex transmission module (HDTM) for extending the use of LAPB foroperation of Teletex terminals connected to the PSTN where use of half-duplex 2400 bit/s modems is planned. This isreferred to in R
5、ecommendation T.70 as LAPX.2 Fascicle VII.5 - Rec. T.711.1.2 Before the HDTM begins operation the physical circuit must be established by the appropriate PSTN callcontrol procedures. The operation of the HDTM is such that the calling DTE will initially have the right to transmit.For the link address
6、ing conventions refer to Recommendation T.70.1.2 Architecture1.2.1 Level relationshipsIt is an objective to avoid modification of the definition of LAPB in order to adapt it for half-duplex operation.However, there is a functional requirement that the HDTM inhibit LAPB from sending frames during cer
7、tain phases ofthe half-duplex procedure. The means of accomplishing this functional requirement is not defined.The logical relationships between LAPB, the HDTM and the physical level are as shown in Figure 2/T.71.1.2.2 Control (C) and status (S) functionsThe following logical functions are defined t
8、o describe the interactions between LAPB and the HDTM:Control Revert to the HDTM idle state since LAPB has entered the disconnected phase (equivalent to ADM ofHDLC).Status LAPB is enabled to send frames.Status LAPB is inhibited from sending frames.Fascicle VII.5 - Rec. T.71 32 State diagram and desc
9、riptions2.1 State diagramThe state diagram shown in Figure 3/T.71 describes the procedure for controlling the right to transmit. Thenumber in each ellipse is the state reference number.2.2 State definitions2.2.1 Idle state (state 0)The DTE is in an inactive state. This is the initial state prior to
10、call establishment and the final state after calltermination.4 Fascicle VII.5 - Rec. T.712.2.2 Half-duplex sending state (state 1)The DTE is in a half-duplex sending state, so that all signals generated by LAPB are passed to the physicallevel.2.2.3 Wait for receiving state (state 2)The DTE is awaiti
11、ng indication that the remote DTE has entered the half-duplex sending state. No signalsgenerated by LAPB are passed to the physical level.2.2.4 Half-duplex receiving state (state 3)The DTE is in a half-duplex receiving state, so that no signals generated by LAPB are passed to the physicallevel. The
12、remote DTE is considered to be in the half-duplex sending state.2.2.5 Wait for sending state (state 4)The DTE is awaiting indication of the availability of the physical level for transmission of frames to the remoteDTE. All signals generated by LAPB are passed to the physical level, but LAPB is inhi
13、bited from sending frames.2.3 Table of transitions between statesTable 1/T.71 shows the events that cause transitions from one state to another, along with any resulting actions.This shows a generalized description of the operation of the HDTM.2.4 State definitions expressed in terms applicable to a
14、 modem interfaceThe following definitions apply to the use of the HDTM with the V.26 bis modem interface, as an example.2.4.1 Idle state (state 0)Circuit 107 is OFF.2.4.2 Half-duplex sending state (state 1)Circuit 105, circuit 106 and circuit 107 are ON. LAPB is connected to circuit 103 and enabled
15、to send frames.2.4.3 Waitfor receiving state (state 2)Circuit 107 is ON, circuit 105 is OFF. LAPB is inhibited from sending frames and disconnected from circuit103, which is held in the binary 1 condition. Timer T is running.2.4.4 Half-duplex receiving state (state 3)Circuit 107 is ON, circuit 105 i
16、s OFF. LAPB is inhibited from sending frames and disconnected from circuit103, which is held in the binary 1 condition.2.4.5 Wait for sending state (state 4)Circuit 105 and circuit 107 are ON, and circuit 106 is OFF. LAPB is connected to circuit 103 but is inhibitedfrom sending frames.2.5 Table of t
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