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Published on: May 8, 2021
Film dance creation practice supported by Cyber Physical System
1College of Music, Capital Normal University, Beijing, 100048, China.
This study introduces an energy-aware scheduling framework for film and dance creation, balancing equipment performance with energy efficiency. The proposed algorithm optimizes energy consumption while ensuring functional safety and improving schedulability.
Area of Science:
- Film and Media Studies
- Computer Science
- Systems Engineering
Background:
- Dance is increasingly integrated into film production, demanding advanced shooting technologies.
- Balancing high equipment performance with energy efficiency in film creation presents a significant challenge.
Purpose of the Study:
- To propose a novel energy-aware scheduling framework for film and dance creation.
- To develop an energy-efficient and stable scheduling algorithm addressing functional safety and performance.
Main Methods:
- A Cyber-Physical System-based framework utilizing allocation technology and list scheduling.
- Construction of a scheduling algorithm addressing functional safety, verification, and energy optimization.
Main Results:
- The proposed system achieves better schedulability with lower time complexity.
- The framework effectively balances dynamic and static energy constraints.
- A dynamic step-size approach demonstrated superior time performance.
Conclusions:
- The developed energy-aware scheduling framework offers a theoretical reference for film dance creation equipment algorithms.
- The research promotes the integration of technical practice and theoretical advancements in film dance.
- The study contributes to the development process of film dance creation by optimizing energy efficiency and performance.
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