MSIP-COM: A Physical-Layer Communication Architecture Based on Multi-Source Interference Patterns
Abstract
This paper presents MSIP-COM (Multi-Source Interference Pattern Communication), an architecture registered with the Turkish Patent and Trademark Office (TürkPatent) under application number 2026/001213. The core principle is simple: data is first converted into a binary bit sequence; this sequence is converted into RF signals by an array of N coherent transmitters; the transmitters jointly shape a pre-computed interference pattern at the target coordinate; a receiver array reads this pattern back into bits by resolving constructive-interference points as bit '1' and destructive-interference (collapse) points as bit '0'. The same antenna array can operate as either transmitter or receiver. This approach achieves an N² coherent-combining gain in signal-to-noise ratio and derives its security not from computational complexity but from the fact that the signal is only meaningful at the intended spatial coordinate. We present the closed-form mathematical model, simulation visualizations for an N=10, 100-element receiver-array configuration, a link-budget analysis, an achievable capacity of approximately 100 Gbps bounded by the number of independently controllable transmitters (K ≤ N), and a low-cost ground-based verification protocol (Phase 0).
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Authors: Ramazan Canaz