Atoll Overview
Configuration
General Features
GSM/TDMA/GPRS/EDGE
UMTS/HSDPA
CDMA2000 1xRTT/EV-DO
TD-SCDMA
WiMAX
Microwave Links
Architecture/Atoll Developer's Toolkit

   

CDMA2000 1xRTT/EV-DO Features



Forsk has been working with market leaders in the USA and Asia to deliver state-of-the-art CDMA2000 planning features, including a mixed 1xRTT/1xEV-DO traffic model. Atoll fully supports EV-DO Release A

 

 



Network and Radio Parameter Modelling
 

• Network database
• Support for repeaters
• Radio configuration and channel modelling
• Radio Resource Modelling
• Support for multiple carriers and frequency bands

Traffic Modelling
  • Modelling of voice and data services
• Support for multiple sources of traffic data
     - user distribution maps
     - live traffic data per service per cell
     - service demand maps (raster/vector)
CDMA Simulation
  • State-of-the-art Monte Carlo based CDMA simulator including RRM and carrier allocation algorithms
• Forward and reverse link power control
• Carrier selection modelling
CDMA Prediction Plots
 

Based on Monte-Carlo simulation results or on user-defined cell load figures
• Ec/Io pilot prediction plots
• Forward and reverse link Eb/Nt prediction plots
• Service areas (pilot + forward & reverse link traffic)
• Handoff status prediction plots
• Number of servers
• Pilot pollution prediction plots
• Total forward link noise and noise rise prediction plots
• Real-time point analysis tool

Neighbour and PN-offset Planning
  • Manual and automatic neighbour planning
• Multi-carrier neighbour planning
• Automatic PN-offset allocation
• PN-offset allocation analysis
 
 

CDMA2000 Specific Features

CDMA2000 1xRTT - handoff analysis

 


The general CDMA features presented above are also available for CDMA2000 planning, along with the CDMA2000-specific features listed below.

Network and Radio Parameter Modelling
  • Carrier type modelling (1xEV-DO, 1xRTT)
• FCH and SCH modelling
• Additional radio configurations (RC3, RC4, RC5)
• Hybrid-ARQ modelling
Data Services Modelling
 

• FCH activity factor/SCH variable rate modelling
• SCH and FCH forward/reverse link Eb/Nt thresholds
• 1xEV-DO Rel.0 and Rel.A quality tables (C/I vs. forward link data rate)
• Reverse link 1xEV-DO Rel.0 and Rel.A physical channels modelling
• Forward/reverse Rel.A bearer modelling

1xRTT Simulation and Analysis
  • Extended multi-service Monte Carlo simulations
• SCH and FCH power control modelling
• Reverse and forward link SCH data rate downgrading
• Forward and reverse link coverage per SCH rate
• Reports
1xEV-DO Simulation and Analysis
  • Modelling of mixed 1xRTT/1xEV-DO traffic
• Reverse link power control simulation including data rate downgrading
• Forward link cell capacity calculation
• Forward and reverse link prediction plots per data rate