Paper
24 May 2012 Fusion solution for soldier wearable gunfire detection systems
George Cakiades, Sachi Desai, Socrates Deligeorges, Bruce E. Buckland, Jemin George
Author Affiliations +
Abstract
Currently existing acoustic based Gunfire Detection Systems (GDS) such as soldier wearable, vehicle mounted, and fixed site devices provide enemy detection and localization capabilities to the user. However, the solution to the problem of portability versus performance tradeoff remains elusive. The Data Fusion Module (DFM), described herein, is a sensor/platform agnostic software supplemental tool that addresses this tradeoff problem by leveraging existing soldier networks to enhance GDS performance across a Tactical Combat Unit (TCU). The DFM software enhances performance by leveraging all available acoustic GDS information across the TCU synergistically to calculate highly accurate solutions more consistently than any individual GDS in the TCU. The networked sensor architecture provides additional capabilities addressing the multiple shooter/fire-fight problems in addition to sniper detection/localization. The addition of the fusion solution to the overall Size, Weight and Power & Cost (SWaP&C) is zero to negligible. At the end of the first-year effort, the DFM integrated sensor network's performance was impressive showing improvements upwards of 50% in comparison to a single sensor solution. Further improvements are expected when the networked sensor architecture created in this effort is fully exploited.
© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
George Cakiades, Sachi Desai, Socrates Deligeorges, Bruce E. Buckland, and Jemin George "Fusion solution for soldier wearable gunfire detection systems", Proc. SPIE 8388, Unattended Ground, Sea, and Air Sensor Technologies and Applications XIV, 838802 (24 May 2012); https://doi.org/10.1117/12.924733
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CITATIONS
Cited by 6 scholarly publications and 1 patent.
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KEYWORDS
Sensors

Design for manufacturing

Acoustics

Computing systems

Network architectures

Sensor networks

Global Positioning System

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