5G New Radio Information Selection with Parallel Rate Computation
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Solution Overview
Problem
Performing computational operations for radio signal transmission sequentially introduces significant lag, which can be mitigated by performing these operations in parallel.
Innovation Solution
Implementing parallel processing techniques for radio signal transmission, utilizing processors such as CPUs, GPUs, or PPUs to dynamically and continuously calculate and update transmission rates based on available resources, enabling dynamic spectrum sharing and efficient data transmission.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Loss of time
If computational operations for radio signal transmission are performed sequentially, then processing accuracy is maintained, but significant lag is introduced
Solution Approach 1:
The patent divides the computational operations for radio signal transmission into multiple independent segments that can be processed in parallel. Specifically, it separates the determination of first 5G New Radio information (based on first transmission rate) and second 5G New Radio information (based on second transmission rate) into independent parallel processing streams, allowing simultaneous computation without sequential dependencies.
Solution Approach 2:
The patent transitions from sequential one-dimensional processing to parallel multi-dimensional processing by utilizing multiple processors (CPU, GPU, PPU) working simultaneously on different aspects of the transmission rate determination. This dimensional shift enables multiple computational paths to operate concurrently, reducing overall processing time and lag.
2Productivity
If parallel processing is implemented for radio signal transmission, then transmission efficiency is improved, but computational complexity increases
Solution Approach 1:
The patent employs multiple types of processors (CPU, GPU, PPU) that can handle different computational tasks simultaneously. Each processor type leverages its unique architectural strengths - CPU for control logic, GPU for parallel mathematical operations, and PPU for specialized processing - creating a universal processing system that handles various aspects of 5G New Radio information determination in parallel.
Solution Approach 2:
The patent creates parallel copies of the transmission rate determination process across multiple processors. Each processor maintains an independent computational instance that determines 5G New Radio information based on its assigned transmission rate parameters, allowing simultaneous generation of multiple information streams without interference.
3Adaptability or versatility
If dynamic spectrum sharing is implemented, then bandwidth utilization is optimized, but resource management complexity increases
Solution Approach 1:
The patent implements dynamic spectrum sharing by continuously determining 5G New Radio information based on current transmission rates that can change over time. The system adapts to varying spectrum conditions by recalculating transmission parameters dynamically, allowing flexible resource allocation and sharing between different users and services while maintaining optimized bandwidth utilization.
Data Source
AI summary
Apparatuses, systems, and techniques to select fifth-generation (5G) new radio data. In at least one embodiment, a processor includes one or more circuits to select 5G new radio signal information in parallel.


