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Chapter 16
W-CDMA Uplink Digital Modulation for Receiver Test
Multiple PRACH Overview
Multiple PRACH Overview
The multiple PRACH feature of the ESG lets you simulate multiple UEs (user equipment/mobile)
attempting to contact a base transceiver station (BTS). This feature is especially beneficial for BTS overload
testing when multiple ESGs are used (see
“Overload Testing with Multiple PRACHs—Multiple ESGs” on
). The following is a list of some of the characteristics you will find in the multiple PRACH feature:
•
80 ms transmission/time period with access slot resolution
•
60 access slots (80 ms / 1.33 ms = 60) numbered 0 to 59
•
transmission simulation of eight UEs using independent signatures that automatically assigns the
channel codes in accordance with the 3GPP TS 25.213
•
transmission of an individual UE’s PRACH multiple times (up to 8 times) within the 80 ms time period
The number of times a UE’s PRACH can be transmitted is dependent on the number of access slots each
PRACH occupies.
•
incorporate AWGN (additive white Gaussian noise) with the multiple PRACH transmission
•
transmit the preamble or the preamble plus the message part
•
synchronize multiple ESGs to increase the number of UEs/PRACHs
Understanding the 80 ms Transmission/Time Period
The multiple PRACH feature incorporates an 80 ms time period in which to transmit the multiple
PRACHs/UEs. This 80 ms period has access slot resolution, so it contains 60 selectable access slots (0–59).
The entire 80 ms period is transmitted each time, even if only one access slot is utilized. Within this 80 ms
period you have eight available UEs. All eight can be active at the same time, and each UE has the capability
of transmitting its PRACH up to eight times.
shows the 80 ms period display.
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 ...