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Efficient receiver design for OFDMA systems with subband carrier allocation strategy
Abstract
Abstract is not available.- Frequency synchronization and correction
- OFDMA
- Polyphase filters
- Carrier allocation
- Carrier offset
- Computational workload
- Doppler shifts
- Frequency offsets
- Mobile users
- Multi-rate processing
- OFDMA systems
- Performance degradation
- Receiver complexity
- Receiver design
- Sub-band
- Sub-carriers
- Synchronization error
- Up-link transmissions
- Degradation
- Frequency allocation
- Frequency division multiple access
- Global system for mobile communications
- Multiple access interference
- Radio interference
- Signal processing
- Synchronization
- Frequency synchronization and correction
- OFDMA
- Polyphase filters
- Carrier allocation
- Carrier offset
- Computational workload
- Doppler shifts
- Frequency offsets
- Frequency synchronization and correction
- Mobile users
- Multi-rate processing
- OFDMA
- OFDMA systems
- Performance degradation
- Polyphase filters
- Receiver complexity
- Receiver design
- Sub-band
- Sub-carriers
- Synchronization error
- Up-link transmissions
- Degradation
- Frequency allocation
- Frequency division multiple access
- Global system for mobile communications
- Multiple access interference
- Radio interference
- Signal processing
- Synchronization