IFJ_6_2024_smart_fabrics_10_2024 IFJ – AFFOA Advanced Fiber Article Figures-4


Figure 4: Selected system applications for fibers with embedded microelectronics: Selected system applications for fibers with embedded micro-electronics; (Left) System concept with sensor-embedded fibers deployed undersea for persistent ocean monitoring. A range of sensing nodes can be integrated along the axis of the fiber. (Center) System concept showing an optical communication link between a UAV and dismounted soldiers. Light emitted by the fabrics (in green) enables identification of friendly forces. (Right) System concept showing HALO jumpers equipped with physiological status monitoring headbands.
Figure 4: Selected system applications for fibers with embedded microelectronics: Selected system applications for fibers with embedded micro-electronics; (Left) System concept with sensor-embedded fibers deployed undersea for persistent ocean monitoring. A range of sensing nodes can be integrated along the axis of the fiber. (Center) System concept showing an optical communication link between a UAV and dismounted soldiers. Light emitted by the fabrics (in green) enables identification of friendly forces. (Right) System concept showing HALO jumpers equipped with physiological status monitoring headbands.

Figure 4: Selected system applications for fibers with embedded microelectronics: Selected system applications for fibers with embedded micro-electronics; (Left) System concept with sensor-embedded fibers deployed undersea for persistent ocean monitoring. A range of sensing nodes can be integrated along the axis of the fiber. (Center) System concept showing an optical communication link between a UAV and dismounted soldiers. Light emitted by the fabrics (in green) enables identification of friendly forces. (Right) System concept showing HALO jumpers equipped with physiological status monitoring headbands.