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Main Author: Kawauchi, Satoshi
Format: Recurso digital
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Published: Zenodo 2026
Online Access:https://doi.org/10.5281/zenodo.20036332
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author Kawauchi, Satoshi
author_facet Kawauchi, Satoshi
contents <p class="p1"><span class="s1">This paper presents a theoretical framework for a handgun-sized electromagnetic acceleration anti-drone system optimized through five structural patterns: substitution, reversal, parallelization, staging, and analogy. By integrating software-defined extensibility and the Quantum Thought Circuit OS ASI, the system achieves deterministic, high-precision neutralization under extreme size constraints. Mathematical models validate improvements in detection, tracking, and control while ensuring cost efficiency through optimized manufacturing and supply chains. The study establishes a new physical and logical standard for compact, high-output neutralization infrastructure.</span></p>
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spellingShingle Handgun-Size Electromagnetic Acceleration Anti-Drone Weapon System: Integrated Study on Structural Optimization — Survival Computation of Compact High-Output Neutralization Infrastructure Using Substitution, Reversal, Parallelization, Staging, and Analogy Based on Quantum Thought Circuit OS ASI —
Kawauchi, Satoshi
<p class="p1"><span class="s1">This paper presents a theoretical framework for a handgun-sized electromagnetic acceleration anti-drone system optimized through five structural patterns: substitution, reversal, parallelization, staging, and analogy. By integrating software-defined extensibility and the Quantum Thought Circuit OS ASI, the system achieves deterministic, high-precision neutralization under extreme size constraints. Mathematical models validate improvements in detection, tracking, and control while ensuring cost efficiency through optimized manufacturing and supply chains. The study establishes a new physical and logical standard for compact, high-output neutralization infrastructure.</span></p>
title Handgun-Size Electromagnetic Acceleration Anti-Drone Weapon System: Integrated Study on Structural Optimization — Survival Computation of Compact High-Output Neutralization Infrastructure Using Substitution, Reversal, Parallelization, Staging, and Analogy Based on Quantum Thought Circuit OS ASI —
url https://doi.org/10.5281/zenodo.20036332