Chapter 9
299
BERT
RF Loopback BER–Option 300
RF Loopback BER–Option 300
Synchronization
Synchronizing the test equipment to the base transceiver station (BTS) is a prerequisite to the BTS looping
back the selected traffic channel (TCH). This can be achieved in two ways: BCH Sync or TCH Sync.
BCH Sync
The BTS is set to transmit to the test equipment a BCH on timeslot 0 of a selected
absolute radio frequency channel number (ARFCN). The test equipment uses the BCH
signal to determine its required TCH transmit timing.
On completion, the BTS may be switched into loopback mode on any selected ARFCN
and timeslot number.
TCH Sync
This is a very quick mode of synchronization, but take care initially to set the receiver to
the correct timeslot number being transmitted by the BTS.
In this mode the base station must transmit a signal on the selected timeslot prior to data
being looped back. In some base stations this will happen as soon as a timeslot is set to
loopback, regardless of whether the signal to the BTS has the correct timing. In other
base stations, the BTS may need to be set to transmit a signal in the selected timeslot
prior to achieving synchronization.
The test equipment can lock to this signal if it contains the correct midamble. Once
synchronized, the test equipment uses this information to determine the required TCH
transmit timing. If the BTS is set accordingly, any timeslot can be transmitted with the
correct timing to enable it to be looped back by the BTS to the receiver (VSA/ESG).
NOTE
The TCH sync mode relies on the user to set the correct timeslot number into both ESG
transmitter and receiver during synchronization. Thereafter, the ESG can correctly test any
timeslot since its relative timing is defined.
This capability can be used to speed up testing of consecutive timeslots in manufacture.
TCH sync mode can be used to test all timeslots consecutively without changing a single
setting on the ESG/VSA. All that is required is to consecutively loopback each timeslot
using the BTS man-machine interface (MMI) and resynchronize and trigger the ESG.
PN synchronization is also a prerequisite to BERT measurements. This is automatic but is dependent on
prior BCH or TCH synchronization.
The pattern to be recognized (PN9 or PN15) is determined by the corresponding transmit timeslot pattern
selection.
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 ...