Server Node Layout for Native-Format Multi-Stream Rendering
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Solution Overview
Problem
Current systems for handling multiple high-quality data sources from various input devices, such as video conferencing and surveillance systems, are costly and inefficient, often requiring numerous devices for conditioning and conveying data, which leads to degradation and high power consumption in mobile devices.
Innovation Solution
A server node arrangement that processes and converts data from multiple sources into native rendering formats for output devices, reducing processing requirements and enabling real-time data streaming and rendering, while minimizing power consumption and bandwidth usage.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Measurement precision
If multiple input devices are connected to their own monitors or collected in high-resolution mosaic picture, then data quality is preserved, but system cost and complexity increase significantly
Solution Approach 1:
The patent combines multiple input data streams from different devices into a single integrated output stream processed by one or more servers. Instead of connecting each input device to separate monitors or creating complex mosaic pictures, the system merges all inputs through centralized server processing, reducing the number of required output devices and simplifying system architecture while maintaining data quality through selective processing.
Solution Approach 2:
The patent introduces server nodes as intermediary components between multiple input devices and output devices. These servers act as mediators that receive, process, and convert data from various input sources into formats suitable for output devices. This intermediary layer eliminates the need for direct connections between each input and output device, significantly reducing system complexity.
2Adaptability or versatility
If data is processed and converted at multiple intermediate devices, then compatibility with output devices is improved, but power consumption and processing requirements increase
Solution Approach 1:
The patent extracts the data processing and format conversion functions from the output devices and concentrates them in dedicated server nodes. Instead of requiring each output device to perform complex processing and conversion operations, the system separates these functions into specialized servers that handle all format conversions centrally, reducing the processing burden and power consumption of individual output devices.
Solution Approach 2:
The server nodes automatically detect the native rendering formats required by output devices and independently perform the necessary data conversions without requiring the output devices to request or initiate conversion processes. This self-service approach optimizes power consumption by performing conversions proactively at the server level rather than reactively at the client level.
3Measurement precision
If high-quality data is transmitted to multiple output devices, then output quality is maintained, but communication bandwidth requirements increase
Solution Approach 1:
The patent dynamically changes data parameters such as resolution, format, and compression level based on the specific requirements of each output device. Instead of transmitting identical high-quality data to all output devices, the system adjusts data parameters to match each device's native rendering capabilities, maintaining optimal output quality while minimizing bandwidth consumption through adaptive parameter optimization.
Data Source
AI summary
A server node arrangement includes a plurality of server nodes. The server node arrangement is coupled via communication network to a plurality of sources of input data, and to one or more output devices. The server node arrangement receives data content from the plurality of sources of input data, and processes the data content to supply to at least a subset of the output devices. The server node arrangement hosts one or more processes which process the data content into a form which is compatible to a native data rendering format of the subset of the output devices. The at least a subset of the output devices are operable to render the data content simultaneously. The server node arrangement provides a system which communicates content data in a more computationally efficient manner, which is capable of saving energy utilization.


