PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
April 24, 20260 citationsOpen Access

PCT/IB2025/057924 - Infrasonic System for Subsurface Anomaly Detection Geolocation Rescue Operations Plasma-Enhanced Extreme-Environment Applications and Marine Surveying (InfraEnginery)

View Full Paper
SDSergey Dzhumaev

Key Points

  • The aim is to develop a portable infrasonic system for detecting subsurface anomalies and enhancing communication in extreme environments.
  • Utilized a portable infrasonic system operating between 1–100 Hz for data acquisition.
  • Incorporated a hexagonal phased array of piezoelectric elements with adaptive control for real-time analysis.
  • Employed TinyML for classification and high-penetration sensing across various media.
  • Achieved ±1 m accuracy in 3D anomaly reconstruction for geophysical subsurface scanning.
  • Enabled low-bitrate communication in obstructed environments and improved detection capabilities.
  • Integrated plasma-enhanced signal propagation for effective operation in extreme conditions.

Abstract

5281/zenodo.19699851 CFT-MANUAL-XX — Infrasonic System for Subsurface Anomaly Detection, Geolocation, Rescue Operations, Plasma-Enhanced Applications and Marine Surveying This work is part of the Coherent Field Theory (CFT) framework developed by Sergey Dzhumaev. CFT is a unified mathematical and systems framework for modeling decision-making, coherence, and stability in distributed intelligent systems. It extends classical probabilistic approaches by introducing coherence fields, adaptive control, and multi-layer system integration across physical and informational domains. Core documents: CFT Foundations: https://doi.org/10.5281/zenodo.19678512 Ariadne’s Thread: https://doi.org/10.5281/zenodo.19670642 NonsenseShield: https://doi.org/10.5281/zenodo.19679037 Document Series: CFT-MANUAL This publication contributes to the following layers of the framework:infrasonic communication / subsurface sensing / adaptive signal processing / extreme-environment systems / plasma-enhanced propagation This work presents a portable infrasonic system operating in the 1–100 Hz range for subsurface anomaly detection, geolocation, rescue operations, and hybrid extreme-environment applications, including marine surveying and plasma-enhanced signal propagation. The system is based on a hexagonal phased array of piezoelectric elements combined with an adaptive controller performing real-time FFT analysis and TinyML-based classification. It enables high-penetration, low-energy sensing and communication in dense media such as soil, debris, water, and ionized atmospheres. Core operational modes include: geophysical subsurface scanning with 3D anomaly reconstruction (±1 m accuracy), passive infrasonic monitoring of biological and environmental signals, low-bitrate communication in denied or obstructed environments, non-lethal resonance-based protection and infrastructure defense, plasma-enhanced signal propagation in ionized or extreme environments, marine resonance operations utilizing SOFAR channels for long-range underwater interaction. The architecture integrates: phased-array beamforming and Schumann resonance tuning, GNSS and satellite communication (Inmarsat) for positioning and data relay, energy-harvesting modules for autonomous deployment, plasma-interface mechanisms for enhanced propagation and shielding. Compared to prior art, the system introduces a unified, portable, multi-mode platform combining detection, communication, protection, and adaptive AI-driven classification within a single architecture, suitable for disaster response, geophysical exploration, infrastructure protection, marine operations, and extraterrestrial environments. This work extends a family of related patent applications, forming a coherent technological stack for infrasonic systems, plasma interaction, and distributed sensing frameworks within the broader CFT ecosystem. All works are interconnected and form a single research system. Author:Sergey Dzhumaev (ORCID: https://orcid.org/0009-0004-1979-3730) #hashtags#CoherentFieldTheory #Infrasound #SubsurfaceDetection #Geolocation #RescueTechnology #SwarmSystems #SignalProcessing #TinyML #PlasmaPhysics #MarineTechnology #ExtremeEnvironments #AdaptiveSystems #DistributedSensing

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Sergey Dzhumaev (2025) studied this question.

synapsesocial.com/papers/69eb0b8d553a5433e34b5356https://doi.org/10.5281/zenodo.19699850
Ask AI
Helpful
Bookmark
Share
View Full Paper