Wireless Data Processing Modes for Out-of-Order Throughput
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Solution Overview
Problem
Existing wireless communication systems face inefficiencies in processing data transmissions, particularly in handling out-of-order and overlapping data, leading to increased latency, misalignment between base stations and wireless devices, and higher overhead and retransmissions.
Innovation Solution
Implementing a system where wireless devices can process data based on resource groups and priority indications, allowing for in-order, out-of-order, and overlapping data processing, thereby optimizing channel utilization and reducing latency and overhead.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Manufacturing precision
If wireless devices process data in strict in-order sequence, then data processing accuracy is improved, but system throughput and channel utilization deteriorate due to idle waiting periods
Solution Approach 1:
The patent implements dynamic data processing modes that can switch between in-order and out-of-order processing based on configuration parameters. The wireless device can be configured to process data in different orders (in-order, out-of-order, or overlapping) allowing the system to adapt processing dynamics to optimize both accuracy and throughput for different traffic conditions
Solution Approach 2:
The patent changes the processing order parameter from fixed to configurable, allowing the network to indicate different processing modes via RRC configuration or DCI signaling. This parameter change enables the system to switch between strict sequential processing (high accuracy) and parallel/out-of-order processing (high throughput) based on traffic requirements
2Productivity
If wireless devices use multiple resource groups for flexible data processing, then channel processing efficiency is improved, but device complexity increases
Solution Approach 1:
The patent segments resources into multiple resource groups (first resource group, second resource group, etc.) that can be independently configured and processed. This segmentation allows the wireless device to process different data transmissions associated with different resource groups in parallel or in different orders, improving channel processing efficiency while maintaining manageable complexity through structured resource organization
3Productivity
If wireless devices process overlapping data transmissions, then system throughput is improved, but misalignment between base station and wireless device increases
Solution Approach 1:
The patent implements feedback mechanisms where the base station indicates the desired processing mode to the wireless device through RRC configuration or DCI signaling. This feedback ensures that both the base station and wireless device are aligned on whether to process data in-order, out-of-order, or overlapping, preventing misalignment while still enabling throughput optimization when appropriate
4Reliability
If wireless devices implement strict in-order data processing, then data processing reliability is improved, but communication delay increases
Solution Approach 1:
The patent enables dynamic switching between in-order and out-of-order processing modes based on traffic conditions and configuration. When low latency is required, the system can configure out-of-order or overlapping processing while maintaining reliability through proper resource group management and base station coordination
Solution Approach 2:
The patent uses preliminary configuration through RRC signaling to establish processing modes before data transmission begins. This preliminary action ensures that both base station and wireless device are pre-aligned on the processing approach, allowing the wireless device to immediately implement the appropriate processing mode (in-order or out-of-order) without delay when data arrives
Data Source
AI summary
Wireless communications may be used to support data processing. Data processing may be performed based on a priority indication (or lack thereof) in a message for processing data. At least one parameter may be used to determine a priority associated with data processing if a message does not comprise a priority indication.


