Communication Frame Assignment for Space-Time Stream Management
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Solution Overview
Problem
Current communication systems face challenges in efficiently managing and transmitting data packets with multiple space-time streams across multiple receivers, particularly in scenarios where the number of data portions exceeds the number of available space-time streams in a single data packet, leading to inefficiencies in data transmission and reception.
Innovation Solution
The system employs a processing system and method for communication that assigns member information and position information to receivers, allowing for the differentiation and management of space-time streams within data packets, enabling efficient transmission and reception by configuring frames and data packets to prioritize receivers based on quality of service (QoS) and data size, thereby optimizing data packet configuration and transmission.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Productivity
If data packets are configured to accommodate multiple space-time streams, then communication throughput is improved, but device complexity increases due to the need for frame assignment and stream management
Solution Approach 1:
The patent segments data packets into multiple space-time streams, with each stream carrying a portion of the data to multiple receivers. This segmentation allows parallel transmission across multiple spatial and temporal dimensions, increasing throughput while managing complexity through structured division of data flow
Solution Approach 2:
The patent introduces spatial dimension (multiple receivers) and temporal dimension (multiple time slots) to the data transmission system. By organizing data packets into space-time streams, the system transforms traditional single-dimension transmission into multi-dimensional parallel transmission, achieving higher throughput without linearly increasing complexity
2Quantity of substance
If the number of data portions exceeds the number of available space-time streams, then data transmission capacity is improved, but loss of time increases due to waiting for additional streams
Solution Approach 1:
The patent performs preliminary assignment of data portions to space-time streams using frame configuration before actual transmission. This advance organization ensures that when data exceeds available streams, the system has pre-established mapping relationships, eliminating wait time for stream allocation and enabling immediate transmission
Solution Approach 2:
The patent implements continuous transmission by maintaining active space-time streams without idle wait periods. Through persistent frame assignment and stream management, the system ensures that transmission resources are continuously utilized, preventing time loss even when data volume exceeds the number of physical streams
3Reliability
If padding is added to data packets to accommodate varying sizes, then reliability of transmission is improved, but loss of substance increases due to wasted transmission resources
Solution Approach 1:
The patent applies local quality optimization by assigning different padding strategies to different data portions based on their specific size requirements and QoS parameters. Instead of uniform padding across all packets, the system tailors padding application to local needs, maintaining transmission reliability while minimizing overall resource waste
Solution Approach 2:
The patent dynamically adjusts packet configuration parameters including padding length, stream assignment, and QoS weights based on real-time data characteristics. By changing these parameters adaptively, the system optimizes the balance between transmission reliability and resource efficiency for each data packet
4Ease of operation
If quality of service prioritization is implemented for different receivers, then ease of operation is improved, but device complexity increases due to additional management overhead
Solution Approach 1:
The patent implements a universal frame assignment mechanism that handles multiple functions simultaneously: data routing, QoS prioritization, stream allocation, and padding management. This multi-functional approach consolidates what would otherwise be separate complex management systems into a single integrated framework, improving ease of operation while controlling overall complexity
Data Source
AI summary
Apparatuses, methods, and computer program products for communication are provided. In an aspect, an apparatus for communication may include a processing system configured to receive a frame configured to assign at least member information or position information for one or more identifiers, and receive a data packet associated with a particular identifier and indicating a number of space-time streams for one or more position information. In another aspect, an apparatus for communication may include a processing system configured to transmit a frame configured to assign at least member information or position information for one or more identifiers, and transmit a data packet associated with a particular identifier and indicating a number of space-time streams for one or more position information.


