A mobile wireless device frame structure includes a termination portion that drives modulation to a known ending state.
A segment parser distributes coded bits across multiple resource units using proportional round-robin allocation to optimize data distribution.
Adjusting maximum transport block sizes for UE categories 6, 7, and 8 enables 256QAM data rates while maintaining existing soft buffer constraints.
Coordinated resource partitioning allocates exclusive time slots to network entities, enabling direct transmission without medium sensing.
Overlaid OOK and OFDM waveforms in a single signal allow low power wakeup receivers to decode information bits without increasing power consumption.
Dynamic receiver architecture selection mechanism switches between VAMOS level II and DARP phase I modes.
A transmission apparatus allocates specific pilot signals in time-frequency grids to support MIMO operations within High Rate Packet Data networks.
An OFDMA tone allocation scheme assigns specific frequency tones to users for simultaneous data transmission.
Multi-rate overlay mode selects appropriate data rates to resolve low throughput and high power consumption in legacy WPANs.
Low-IF topology segments digital signal paths to isolate I/Q mismatch and DC offset impairments while sharing a single analog branch.
A non-orthogonal frequency division multiplexing scheme compresses subcarrier spacing to increase data throughput in wireless networks.