17837354. TECHNIQUES TO MODIFY PROCESSOR PERFORMANCE simplified abstract (NVIDIA Corporation)
Contents
- 1 TECHNIQUES TO MODIFY PROCESSOR PERFORMANCE
- 1.1 Organization Name
- 1.2 Inventor(s)
- 1.3 TECHNIQUES TO MODIFY PROCESSOR PERFORMANCE - A simplified explanation of the abstract
- 1.4 Simplified Explanation
- 1.5 Potential Applications of this Technology
- 1.6 Problems Solved by this Technology
- 1.7 Benefits of this Technology
- 1.8 Potential Commercial Applications of this Technology
- 1.9 Possible Prior Art
- 1.10 Unanswered Questions
- 1.11 Original Abstract Submitted
TECHNIQUES TO MODIFY PROCESSOR PERFORMANCE
Organization Name
Inventor(s)
Sreedhar Narayanaswamy of Sunnyvale CA (US)
Kyle John O'shaughnessy of Santa Rosa CA (US)
Pratikkumar Dilipkumar Patel of Milpitas CA (US)
Chad R. Plummer of San Rafael CA (US)
Benjamin D. Faulkner of Los Altos Hills CA (US)
TECHNIQUES TO MODIFY PROCESSOR PERFORMANCE - A simplified explanation of the abstract
This abstract first appeared for US patent application 17837354 titled 'TECHNIQUES TO MODIFY PROCESSOR PERFORMANCE
Simplified Explanation
The patent application abstract describes methods to optimize the performance of a processor group by increasing a processor's clock frequency based on the performance of other processors in the group.
- Explanation of the patent/innovation:
* The method adjusts a processor's clock frequency based on the performance of other processors in the group. * This optimization technique aims to enhance overall group performance by dynamically adjusting clock frequencies. * By monitoring and comparing the performance of individual processors, the method can make real-time adjustments to maximize efficiency.
Potential Applications of this Technology
The technology could be applied in:
- Data centers
- High-performance computing clusters
- Cloud computing environments
Problems Solved by this Technology
- Uneven workload distribution among processors
- Inefficient use of processing power in a group setting
Benefits of this Technology
- Improved overall performance of a processor group
- Enhanced efficiency and resource utilization
- Dynamic optimization based on real-time performance metrics
Potential Commercial Applications of this Technology
Optimizing processor performance in:
- Server farms
- Supercomputing facilities
- Virtualized environments
Possible Prior Art
There may be prior art related to:
- Dynamic clock frequency adjustment in processors
- Performance optimization techniques in processor groups
Unanswered Questions
How does this technology impact power consumption in a processor group?
The article does not address the potential effects on power consumption when increasing clock frequencies based on other processors' performance.
Are there any limitations to the scalability of this optimization technique?
The scalability of this method in large processor groups or complex computing environments is not discussed in the article.
Original Abstract Submitted
Apparatuses, systems, and techniques to optimize performance of a processor group. In at least one embodiment, a method increases a processor's clock frequency based, at least in part, on performance of other processors in a group.