ANSI ATIS 0700716-2000 Air Interface Standard for Broadband Direct Sequence CDMA for Fixed Wireless PSTN Access C Layer 1 (Formerly ATIS T1.716).pdf
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1、 AMERICAN NATIONAL STANDARD FOR TELECOMMUNICATIONS ATIS-0700716.2000(R2009) Air Interface Standard for Broadband Direct Sequence CDMA for Fixed Wireless PSTN Access Layer 1 ATIS is the leading technical planning and standards development organization committed to the rapid development of global, mar
2、ket-driven standards for the information, entertainment and communications industry. More than 250 companies actively formulate standards in ATIS 20 Committees, covering issues including: IPTV, Service Oriented Networks, Home Networking, Energy Efficiency, IP-Based and Wireless Technologies, Quality
3、 of Service, Billing and Operational Support. In addition, numerous Incubators, Focus and Exploratory Groups address emerging industry priorities including “Green”, IP Downloadable Security, Next Generation Carrier Interconnect, IPv6 and Convergence. ATIS is the North American Organizational Partner
4、 for the 3rd Generation Partnership Project (3GPP), a member and major U.S. contributor to the International Telecommunication Union (ITU) Radio and Telecommunications Sectors, and a member of the Inter-American Telecommunication Commission (CITEL). For more information, please visit . AMERICAN NATI
5、ONAL STANDARD Approval of an American National Standard requires review by ANSI that the requirements for due process, consensus, and other criteria for approval have been met by the standards developer. Consensus is established when, in the judgment of the ANSI Board of Standards Review, substantia
6、l agreement has been reached by directly and materially affected interests. Substantial agreement means much more than a simple majority, but not necessarily unanimity. Consensus requires that all views and objections be considered, and that a concerted effort be made towards their resolution. The u
7、se of American National Standards is completely voluntary; their existence does not in any respect preclude anyone, whether he has approved the standards or not, from manufacturing, marketing, purchasing, or using products, processes, or procedures not conforming to the standards. The American Natio
8、nal Standards Institute does not develop standards and will in no circumstances give an interpretation of any American National Standard. Moreover, no person shall have the right or authority to issue an interpretation of an American National Standard in the name of the American National Standards I
9、nstitute. Requests for interpretations should be addressed to the secretariat or sponsor whose name appears on the title page of this standard. CAUTION NOTICE: This American National Standard may be revised or withdrawn at any time. The procedures of the American National Standards Institute require
10、 that action be taken periodically to reaffirm, revise, or withdraw this standard. Purchasers of American National Standards may receive current information on all standards by calling or writing the American National Standards Institute. Notice of Disclaimer Layer 2 is defined in another standard (
11、T1.717-2000). The shaded services shown in the Layer 3 row are not defined in this standard. Physical Layer (PHY)Medium Access Control (MAC) SublayerData Link Control (DLC) SublayerNetwork (NWK)Layer 3Layer 2Layer 1User Service ApplicationsFigure 1 - Reference Model 1.1 Scope This document specifies
12、 the transmit functions of Layer 1 to define the air interface for a Broadband Direct Sequence CDMA system for Fixed Wireless PSTN Access (FWPA). This air interface satisfies the requirements defined in T1.TR.67-2001 for the single-line subscriber architecture. This standard provides the detailed de
13、finition of all component entities within Layer 1, and the services and primitives provided to other layers by Layer 1. ATIS-0700716.2000 2 1.2 Overview Figure 2 shows the interfaces among the lower three layers, and includes a high-level summary of the Layer 1 functionality. Figure 3 shows a block
14、diagram of the PHY, applicable to both the Wireless Access Subscriber Function (WASF) and the Wireless Access Network Function (WANF). The model for this air interface varies from the classical OSI model in the following areas: Data Link Control sublayer (DLC) is limited to data link control of the
15、dedicated control channels. Dedicated traffic channels are not managed by the DLC. MAC, not PHY, performs encoding/decoding for Forward Error Correction (FEC), encipherment/decipherment, symbol repetition/combining, and power control for Quality of Service (QoS). PHY is limited to modulation/demodul
16、ation, spreading/despreading, and RF combining/splitting. The PHY layer performs the following functions: Generation of CDMA codes based on code seeds assigned by higher layers; Synchronization between transmitter and receiver; Generation and transmission of pilot signals; Providing bearers to the M
17、AC layer; and Spreading and transmission of baseband data on a CDMA code specified by the MAC and at a power level specified by the MAC. The PHY provides physical channels (bearers) of 128 Kbps (64 Ksps QPSK). The PHY multiplexes multiple physical channels into the same RF spectrum by the use of dir
18、ect sequence spread spectrum, with a distinct spreading sequence for each channel. The data sequence for each physical channel modulates the spreading sequence, and the resulting sequence modulates the RF carrier. The chip rate of the spreading sequence determines the transmit bandwidth. The Layer 1
19、 receive functions are not specified. The details of the demodulator depend upon the implementation, but must perform the reverse functions to recover the data. Pilot signals are generated by the PHY as necessary and transmitted with the modulated data signals. The pilot signals are intended for syn
20、chronization, carrier phase recovery, and for estimating the impulse response of the radio channel. Pilot signals exist only within the PHY, with the MAC determining the power level. A WASF has a single pilot generator for the uplink pilot signal plus sufficient modulator and demodulator (modem) ins
21、tances for the service in use. A WANF has a single pilot generator for the global pilot signal plus sufficient modem instances for all the logical channels (both global and assigned) in use by all the WASFs being served. ATIS-0700716.2000 3 NWK LayerHigher LayersDLCSublayerMACSublayerPHYLayerAPCCHAC
22、CHTRCH(variablenumberCTAPCCHCTCHAXCH SBCCHFBCCHModulation/Demodulation, Spreading/Despreading, and RF Combining/SplittingPilotGenerationandTrackingDCCHDTCHLayer 3SignallingControlS-APCCHS-ACCHS-TRCH(variablenumber)S-CTAPCCH1S-CTCH1S-AXCH2S-SBCCH1S-FBCCH1SAXPT2LAXPT2GLPT1ASPT2Note:1 Indicates that th
23、e channel exists only in downlink2Indicates that the channel exists only in uplinkControlP-SAPUnspreadPhysicalChannelsPhysicalChannelsFigure 2 - Interfaces Among Layers 1, 2, and 3 ATIS-0700716.2000 4 BasebandfilterMap 0,1to +1,-1BasebandfilterMap 0,1to +1,-1TransmittedSignalcos 2fctsin 2fctI phases
24、preadingcodeQ phasespreadingcodePhysicalchannelpowerlevelsMap 0,1to +1,-1Map 0,1to +1,-1I phasespreadingcodeQ phasespreadingcodePilotpowerlevelPhysicalChannelsPilotSignalPilot power levelMACLayerPHYLayer64 ksym/sperchannelReceivedSignalDemodulatorComplexreceive dataQ dataI dataComplextransmit dataGl
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