This paper introduces the Hyper‑Temporal Saturation Law, a synthetic and theoretical framework for analyzing interception effectiveness against maneuvering hypersonic glide vehicles (HGVs). The study demonstrates that in systems where target trajectory evolution occurs faster than discrimination, decision-making, and maneuvering times, the overall kill probability is maximized not by increasing individual interceptor accuracy, but by preemptive spatial saturation of the predicted target path.The work combines mathematical formulation, conceptual diagrams, and numerical simulations to illustrate how increasing the number of Multiple Kill Vehicle (MKV) units across the predicted path enhances overall system effectiveness, even when per-unit accuracy is low. This synthetic research offers a novel perspective on hypersonic defense strategies, providing theoretical and operational insights into system design under extreme temporal constraints.
Yasser DarkCode (Sun,) studied this question.