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3、property of the Copyright holder and all Notice of Disclaimer . Response Authentication Response Unique Challenge Authentication Response Analog Voice Channel Begin Continue Broadcast Control Channel Broadcast Channel Change Notification Flag Bit Error Rate Begin Indicz?or Base Station MSC and Inten
4、vorking Function Bit Positiori Busy Reserved Idle Base Station Manufacturer Code Burst Type Burst Usage Coded Digital Control Channel Locator Coded Digital Verification Color Code Candidate Eligibility Filtering Change Indicator Continuation Length Indicator Control Mobile Attenuation Code Cellular
5、Messaging Teleservice Coded Partial Echo Channel Quality Measurement Cyclic Redundancy Check Customer Service Center Coded Superfi-ame Phase Digital Color Code Digital Control Channel Digital Control Channel Locator 1 STDmEIA TIA-13b-ENGL 1999 W 3234b00 Ob05707 125 TIAEIA-136-000 DMAC DTC DTX DVCC E
6、-BCCH EC ECL EHFC EH1 ESN FACCH F-BCCH FC FDCCH FDTC FEC FILLER FOCC FRNO FRNOMAP FVC G HF HFC HLR LDT IE IEI IMSI IR4 ISOR L2 L3 WDATA WLI LREG LSB LTM LT-RSS MACA Digital Mobile Attenuation Code Digital Traffic Channel Discontinuous Transmission Digital Verification Color Code Extended Broadcast C
7、ontrol Channel E-BCCH Change flag E-BCCH Cycle Length Extended Hyperframe Counter Extension Header indicator Electronic Serial Number Fast Associated Control Channel Fast Broadcast Control Channel F-BCCH Change flag Forward Digital Control Channel Forward Digital Traffic Channel Forward Error Correc
8、tion Filler Data Forward Analog Control Channel Frame Number Frame Number Map Forward Analog Voice Channel Guard Time Hyperkame Hyperfi-a.me Counter Home Location Register Identity Type Information Element Information Element Identifier International Mobile Station Identity Intemational Reference Al
9、phabet (formerly IA5) Ineligible for Service Offering Reasons Layer 2 Layer 3 Layer 3 Data Layer 3 Length Indicator Location Registration Least Significant Bit Long Term MACA Long Term Received Signal Strength Mobile Assisted Channel Allocation 2 STD-EIA TIA-13b-ENGL 1977 3234b00 Ob05708 Ob1 TINEIA-
10、I 36-000 MAHO MCC MEA MEK MIN MM MNC MPCI MRLQ MS MSB MSID NAM NEB NFB NL NL3M NMSI NPSDCCH m NSB OATS OLC OTAF PACA PAID PCH PCI PCON PDREG PDU PE PEA PF PFC PFM PFN PI PIN PLMN Mobile Assisted Handoff Mobile Country Code Message Encryption Algorithm Message Encryption Key Mobile Station Identifica
11、tion Number Message Mapping Mobile Network Code Mobile Protocol Capability Indicator Monitoring Of Radio Link Quality Mobile Station Most Significant Bit Mobile Station Identity Number Assignment Module Number of E-BCCH slots per Superfiame Number of F-BCCH slots per Superframe Neighbor List Number
12、of Layer 3 Messages National Mobile Station Identity Non-Public Mode Search DCCH Number of Reserved slots per Superframe Number of S-BCCH slots per Supe otherwise, it is an Order message. The following are examples of valid order-message names: Send Burst DTMF, Send Burst DTMF Order, Send Burst DTMF
13、 Order message, and Send Burst DTMF message. The following are examples of valid acknowledgment- message names: Send Burst DTMF Ack, Send Burst DTMF Ack message, Measurement Order Ack, and Measurement Order Ack message. Mobile Assisted Handoff (MAHO). A process where a mobile station in digital mode
14、, under direction from a base station, measures signal quality of specified RF channels. These measurements are forwarded to the base station upon request to assist in the handoff process. Mobile Identification Number WN). The 34-bit number that is a digital representation of the IO-digit directory
15、telephone number assigned to a mobile station. Mobile Protocol Capability Indicator (MFCI). A 2-bit field used to indicate the mobile stations capabilities. Mobile Station. A station in the Domestic Public CellularPCS Radio Telecommunications Service intended to be used while in motion or during hal
16、ts at unspecified points. It is assumed that mobile stations include portable units (e.g., hand- held personal units) and units installed in vehicles. Mobile Station Class. Mobile station classes are defined in TIMIA-136-270 for 800 MHZ and 1900 MHz operation. Power Down Registration (PDREG). A I-bi
17、t field used to indicate the Power Down Registration status. Power Up Registration (PUREG). Registration status. A I-bit field used to indicate the Power Up Numeric Information. Numeric information is used to describe the operation of the mobile station. The following subscripts are used to clarifi
18、the use of the numeric information: 0 “s” to indicate a value stored in a mobile stations temporary memory, csv” to indicate a stored value that varies as a mobile station processes various tasks, “sl” to indicate the stored limits on values that vary, Y to indicate a value received by a mobile stat
19、ion over a forward channel, “p” to indicate a value set in a mobile stations permanent security and identification memory, and “s-p” to indicate a value stored in a mobile stations semi-permanent security and identification memory. 0 9 STD-EIA TIA-LIb-ENGL 1799 9 3234b00 Ob05715 2T1 = 1 6 7 a 9 10 1
20、1 12 13 14 15 i6 17 I8 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 TINEIA-I 36-000 The numeric indicators are: ACCOL$. A 4-bit number used to identifj which overload class field controls access attempts. BISs. Identifies whether a mobile station must check for an idle-to-
21、busy transition on a reverse analog control channel when accessing a system. CCLISTs. The list of analog control channels to be scanned by a mobile station processing the Directed-Retry task (see TIA/EI.A-136-140). CMAXs. The maximum number of channels to be scanned by a mobile station when accessin
22、g a system. A modulo-64 count held in the mobile station. is maintained during power off. CPAs. Identifies whether the access functions are combined with the paging functions on the same set of andog control channels. DCC,. A DCC value stored in a mobile stations tempor-y memory. DTXs. Discontinuous
23、-Transmission mode on the analog voice channel. DVCC,. A DVCC value stored in a mobile stations temporary memory. DVCC, A DVCC value received by a mobile station over the forward digital trafic channel. Es. The stored value of the E field sent on the forward analog control channel. Es identifies whe
24、ther a home mobile station must send only MINp or both MiNlp and MIN2p when accessing the system. EXp. Identifies whether home mobile stations must send MIN lp or both MIN lp and MIN2p when accessing the system. E% differs ftom E each system is assigned a unique number. 14 5 User * Information 14 15
25、 FACCH * SACCH i6 17 18 19 20 21 22 23 24 25 TINEIA-I 36-000 Traffic Channel. That portion of the digital information transmitted between the base station and the mobile station, or between the mobile station and the base station, that is dedicated to the transport of user and signaling information
26、as depicted in the figure below. * FACCH and user information cannot be sent simultaneously. Unique Challenge Authentication Response (AUTHU). An 18-bit pattern generated by the authentication algorithm. AUTHLJ is used to support the Unique ChallengeResponse procedure. Unique Challenge-Response Proc
27、edure. An exchange of information between a mobile station and a base station for the purpose of confirming the mobile station$ identity. The procedure is initiated by the base station and is characterized by the use of a challenge-specific random number (i.e., RANDU) instead of the random variable
28、broadcast globally (MND). Unique Random Variable (RANDU). A 24-bit random number generated by the base station in support of the Unique Challenge-Response procedure. User Alert. The User Alert order is sent to activate user alerting at a mobile station. Voice Mobile Attenuation Code (VMAC). A 3-bit
29、field in the Extended Address Word commanding the initial mobile station power level, when assigning a mobile station to an analog voice or traffic channel. Voice Privacy. The process by which user voice transmitted over a digital traffic channel is afforded a modest degree of cryptographic protecti
30、on against eavesdropping in the mobile station-base station segment of the connection. Wait-for-Overhead Message (WFOM). A I-bit field in the Control-Filler message that when set to one causes the mobile station to wait for an overhead message before transmitting on a reverse control channel. 15 1 2
31、 3 4 5 6 7 8 9 IO 11 12 13 14 15 16 17 18 19 20 21 22 23 24 2s 26 27 28 29 30 31 STD-EIA TIA-Llb-ENGL 1777 m 323Lib00 Ob051721 5T5 m TINEIA-I 36-000 3. General 3.1 Specification Scope This section outlines the intended scope of this standard. For a list of parts currently comprising the standard, se
32、e section 8. TIA/EIA-136-000 TUlEIA-136-OXX t MIA-136-010 t TIA/EIA-136-020 TIA/EIA-136-1XX t t t t t t t t t t TIA/EIA-136-100 TIAEIA-136-110 TIA/EIA- 13 6- 12 1 TIAIEIA- 136- 122 MIA- 136- 123 MIA-136- 13 1 TIA/EIA- 136- 132 TIAEIA-1 36- 133 TIA/EIA- 136- 140 TIA/EIA- 1 3 6- 1 5 O TIA/EIA-136-2XX
33、t TIA/EIA- 13 6-200 t TIARIA-136-210 + TIAIELA-136-220 t MIA-136-270 t TIA/EIA-136-280 TIA/EIA-136-3XX t TIABCIA-136-300 t TIAEIA- 13 6-3 1 O t MIA-136-320 t TIA/EIA-136-330 t TWEIA-136-350 IntroductionList of Parts Miscellaneous Information Optional Mobile Station Facilities SOC, BSMC, and Carrier
34、Specific HLPI assignments Channels Introduction to Channels RF Channel Assignments Digital Control Channel Layer 1 Digital Control Channel Layer 2 Digital Control Channel Layer 3 Digital Traffic Channel Layer 1 Digital Traffic Channel Layer 2 Digital Trafc Channel Layer 3 Analog Control Channel Anal
35、og Voice Channel . Minimum Performance Introduction ACELP Minimum Performance VSELP Minhum Performance Mobile Stations Minimum Performance Base Stations Minimum Performance Data Services Introduction Radio Link Protocol- 1 Radio Link Protocol-2 Packet Data Async Data/Fax 16 STD-EIA TIA-13b-ENGL L777
36、 m 3234b b05722 431 m TINEIA-I 36-000 TIA/EIA-136-4XX Voice Coders 1 + TIAEIA-136-400 + TIAEIA- 136-4 1 O + TIAEIA- 136-420 t TIAEIA- 1 3 6-43 O Introduction ACELP VSELP us 1 TIA/EIA-136-5XX Security 6 + TIAELA-136-500 t TIABEIA-136-510 Introduction Authentication, Encryption of Signaling Informatio
37、n/ User Data, and Privacy 7 8 9 TIA/EIA-136-6M + TIAEIA- 136-600 + TIAEIA- 1 3 6-6 1 O + TIAEIA- 136-620 TIAEIA-136-630 Teleservice Transport Introduction R-DATNSMDPP Transport Teleservice Segmentation and Reassembly (TSAR) Broadcast Teleservice Transport (BATS) ia TMIA-136-7XX Teleservices I5 + TIA
38、ELA-136-700 t TIAEIA-136-710 Introduction to Teleservices Short Message Service Over-the-Air Activation Teleservice (OATS) IRBD Download (DIRT) Broadcast Short Message Service - Cellular Messaging Teleservice 16 17 18 19 20 21 + TIAEIA-136-720 t TIAEIA-136-730 TIAEIA- 136-740 TMIA-136-9XX AnnexeslAp
39、 pendices 22 + TIAELA-136-900 + TIAEIA-136-905 t TIAEIA- 136-9 1 O introduction Normative Information Informative Information 23 24 25 ther useful documents include: IS-130 800 MHz Cellular Systems TDMA Radio Interface Radio Link Protocol 1 800 MHz Cellular Systems TDMA Services Async Data and Fax C
40、ellular Radio Telecommunications Intersystem Operations IS-135 TIABEIA-4 1 TIAEIA-664 Cellular Features Description IS-64 1 800 MHz Cellular System, TDMA Radio Interface, Enhanced Full- Rate Speech Codec 26 17 STD-EIA TIA-13b-ENGL 1979 323Lib00 b05723 378 - TINEIA-1 36-000 ITU-T E. 163 ITU-T E. 164
41、ITU-T E.2 12 ITU-T F.69 ITU-T 1.330 ITU-T 1.334 ITU-T T.50 ITU-TX.121 ITU-T X.2 13 ITU-T X.25 EMTIA-553 TIA/EIA-627 TIA/EIA-628 TIA/EIA-629 TSB 50 TSB 16 Numbering Plan for the International Telephone Service Numbering Plan for the ISDN Era Identification Plan for Land Mobile Stations The Intemation
42、al Telex Service - Service and Operational Provisions of Telex Destination Codes and Telex Network Identification Codes 94/06 ISDN Numbering and Addressing Principles Principles Relating ISDN Numbers/Subaddresses to the IS0 Reference Model Network Layer Addresses International Alphabet No. 5 Intemat
43、ional Numbering Plan for Public Data Networks Network Service Definition for Open Systems Interconnection for CCITT Applications Interface Between Data Terminal Equipment (DTE) and Data Circuit-Terminating Equipment CE) for Terminals Operating in the Packet Mode and Connected to Public Data Networks
44、 by Dedicated Circuit 93/03 Mobile Station-Land Station Compatibility Specification 800 MHz Cellular System, TDMA Radio Interface, Dual-Mode Mobile Station-Base Station Compatibility Standard 800 MHz Cellular System, TDMA Radio Interface, Minimum Performance Standards for Dual Mode Mobile Stations 8
45、00 MHz Cellular System, TDMA Radio Interface, Minimum Performance Standards for Base Stations Supporting Dual Mode Mobile Station User Interface for Authentication Key Entry Assignment of Access Overload Classes in the Cellular Telecommunications Services 18 STDDEIA TIA-13b-ENGL 1779 3234b00 Ub05724
46、 204 = TINEIA-I 36-000 I 4. Timing Tolerances Unless otherwise specified, all call-processing timers and call-processing timing values have a tolerance of +lo%. Tolerances of other parameters are provided for guidance only. Refer to TIAEIA-136-270 and TIAEIA-136-280 for minimum standards, definition
47、s, tolerances, and measurement methods. 19 TIA/EIA-136-000 d15 I d14 I d13 d12 I dll I d10 10 bits 10 bits 1 5. d9 I d8 I d7 d6 I d5 I d4 10 bits 10 bits 10 bits d3 I d2 I dl Identification 2 3 4 8 5. II Mobile Station Identification (MSID) All mobile stations may be identified using one or more of
48、the following MSID formats included in the air interface: 0 0 0 MIN (a 34-bit MSID). IMSI (encoded as a 50-bit MSID). TMSI (a 20 or 24-bit MSID). 5.1 .I IMSI 9 5.1.1.1 Definition 10 11 12 5.1.1.2 13 14 19 20 26 The International Mobile Station Identity (IMSI) is a number with a maximum length of 15
49、decimal digits, as defined in IT-T (formerly CCIT) Recommendation E.2 12. IMSI Encodina For transmission over the air interface the IMSI is always encoded as a 50-bit MSID as follows: 0 Any IMSI less than 15 decimal digits in length is first padded with leading zero digits (i.e., d15, d14, .) as necessary to produce a 15 decimal digit string as shown in Figure 1. The 15 decimal digits are then divided in 5 groups of 3 digits each. Each 3 digit group is translated into its IO-bit binary equivalent using a normal decimal to binary
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