Chapter 14
393
Real Time TDMA Formats
Enhanced Observed Time Difference (E-OTD)
Broadcast Control Channel (BCCH)
The broadcast control channel (BCCH) informs the mobile station about specific system parameters it needs
to identify the network. These messages include among others, Location Area Code (LAC) and the Mobile
Network Code (MNC). The BCCH appears once every 51-frame multiframe and lasts for four frames
(occurring in frames 2,3,4, and 5). System information messages contain various information for a mobile
station and are transmitted on the BCCH at different times. The ESG implementation will include only the
system information 3 (SI3) message repeated once per 51-frame multiframe. The SI3 message for the ESG
implementation will have four user definable fields and the rest will be fixed. The user definable parameters
are cell identity, which identifies a cell within a location area and the location area identification. The
location identification is made up of the three parameters listed below:
MNC
The mobile network code consists of 12 bits of data. Normally eight bits are used but for
PCS1900 NA, federal regulation mandates that a 3-digit MNC will be used. If two digits
are used then the upper 4 bits of the field are fixed to 1111. For the ESG implementation
the upper four bits are set to 1111 and the field range is 0–255. This field identifies the
network operator.
LAC
The location area code provides 16 bits to allow network administrator to define a
location.
MCC
The mobile country code defines the country the base station is in.
The following SCPI commands can be used to modify or query the system information 3 (SI3) user
definable parameters:
[:SOURce]:RADio[1]|2|3|4:GSM:SLOT0:NORMal:ENCRyption:BCH:CELLid <val>
[:SOURce]:RADio[1]|2|3|4:GSM:SLOT0:NORMal:ENCRyption:BCH:CELLid?
[:SOURce]:RADio[1]|2|3|4:GSM:SLOT0:NORMal:ENCRyption:BCH:MNC <val>
[:SOURce]:RADio[1]|2|3|4:GSM:SLOT0:NORMal:ENCRyption:BCH:MNC?
[:SOURce]:RADio[1]|2|3|4:GSM:SLOT0:NORMal:ENCRyption:BCH:MCC <val>
[:SOURce]:RADio[1]|2|3|4:GSM:SLOT0:NORMal:ENCRyption:BCH:MCC?
[:SOURce]:RADio[1]|2|3|4:GSM:SLOT0:NORMal:ENCRyption:BCH:LAC <val>
[:SOURce]:RADio[1]|2|3|4:GSM:SLOT0:NORMal:ENCRyption:BCH:LAC?
Содержание E4428C
Страница 22: ...Contents xxii ...
Страница 107: ...Chapter 3 83 Basic Operation Using Security Functions Figure 3 6 ESG Screen with Secure Display Activated ...
Страница 182: ...158 Chapter 4 Basic Digital Operation Using Waveform Clipping Figure 4 22 Rectangular Clipping ...
Страница 183: ...Chapter 4 159 Basic Digital Operation Using Waveform Clipping Figure 4 23 Reduction of Peak to Average Power ...
Страница 224: ...200 Chapter 4 Basic Digital Operation Creating and Using Bit Files ...
Страница 228: ...204 Chapter 5 AWGN Waveform Generator Configuring the AWGN Generator ...
Страница 229: ...205 6 Analog Modulation ...
Страница 276: ...252 Chapter 7 Digital Signal Interface Module Operating the N5102A Module in Input Mode ...
Страница 286: ...262 Chapter 8 Bluetooth Signals Turning On a Bluetooth Signal ...
Страница 287: ...263 9 BERT This feature is available only in E4438C ESG Vector Signal Generators with Option 001 601or 002 602 ...
Страница 330: ...306 Chapter 9 BERT Verifying BERT Operation ...
Страница 366: ...342 Chapter 10 CDMA Digital Modulation IS 95A Modulation ...
Страница 394: ...370 Chapter 12 Multitone Waveform Generator Applying Changes to an Active Multitone Signal ...
Страница 454: ...430 Chapter 15 W CDMA Digital Modulation for Component Test W CDMA Concepts Figure 15 9 Uplink Channel Structure ...
Страница 468: ...444 Chapter 15 W CDMA Digital Modulation for Component Test W CDMA Frame Structures ...
Страница 667: ...643 18 Troubleshooting ...
Страница 700: ...Index 676 Index ...