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September 10, 2025South Florida Journal of Development0 citations

Iterative algorithm for vector rotations using minimal real number multiplications

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JDJinming DongYWYang Wang

Key Points

  • The algorithm achieves two real number multiplications per rotation for optimal efficiency.
  • It leverages intermediate results, which contributes to the algorithm's computational efficiency and simplicity.
  • The iterative update mechanism is based on a solid mathematical foundation, ensuring reliable performance.
  • Its applicability in fields like computer graphics, signal processing, and robotics highlights its versatility.

Abstract

This paper presents an efficient iterative algorithm for performing counterclockwise rotations on a 2-element real number vector, minimizing the number of real number multiplications required. By leveraging intermediate results from previous rotations, the algorithm achieves each subsequent rotation with only two real number multiplications. We analyze the mathematical foundation of the rotation process, detail the iterative update mechanism, and evaluate the computational efficiency of the approach. The algorithm’s simplicity and reduced computational cost make it suitable for applications requiring repeated vector rotations, such as computer graphics, signal processing, and robotics. We also discuss potential extensions and limitations of the method.

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Cite This Study

Dong et al. (2025) studied this question.

synapsesocial.com/papers/68c1a27254b1d3bfb60dde29https://doi.org/10.46932/sfjdv6n7-063
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