paper-with-me

홈 › Papers

Design and Characteristics of a Thin-Film ThermoMesh for the Efficient Embedded Sensing of a Spatio-Temporally Sparse Heat Source

2026-04-30 · Sajjad Boorghan Farahan, Ahmed Alajlouni, Jingzhou Zhao arxiv

This work presents ThermoMesh, a passive thin-film thermoelectric mesh sensor designed to detect and characterize spatio-temporally sparse heat sources through conduction-based thermal imaging. The device integrates thermoelectric junctions with linear or nonlinear interlayer resistive elements to perform simultaneous sensing and in-sensor compression. We focus on the single-event (1-sparse) operation and define four performance metrics: range, efficiency, sensitivity, and accuracy. Numerical modeling shows that a linear resistive interlayer flattens the sensitivity distribution and improves minimum sensitivity by approximately tenfold for a $16\times16$ mesh. Nonlinear temperature-dependent interlayers further enhance minimum sensitivity at scale: a ceramic negative-temperature-coefficient (NTC) layer over 973-1273K yields a $\sim14{,}500\times$ higher minimum sensitivity than the linear design at a $200\times200$ mesh, while a VO$_2$ interlayer modeled across its metal-insulator transition (MIT) over 298-373K yields a $\sim24\times$ improvement. Using synthetic 1-sparse datasets with white boundary-channel noise at a signal-to-noise ratio of 40dB, the VO$_2$ case achieved $98\%$ localization accuracy, a mean absolute temperature error of $0.23$K, and a noise-equivalent temperature (NET) of $0.07$K. For the ceramic-NTC case no localization errors were observed under the tested conditions, with a mean absolute temperature error of $1.83$K and a NET of $1.49$K. These results indicate that ThermoMesh could enable energy-efficient embedded thermal sensing in scenarios where conventional infrared imaging is limited, such as molten-droplet detection or hot-spot monitoring in harsh environments.

📄 PDF Abstract BibTeX arXiv:2604.28148

Code (0)

등록된 구현이 없습니다.

Similar Papers 제목 키워드 기반

Inferring characteristics of bacterial swimming in biofilm matrix from time-lapse confocal laser scanning microscopy

2022-01-12 · Guillaume Ravel, Michel Bergmann, Alain Trubuil, Julien Deschamps 외

Biofilms are spatially organized microorganism colonies embedded in a self-produced matrix, conferring to the microbial community resistance to environmental stresses. Motile bacteria have been observed swimming in the m…

Smart Data-Driven GRU Predictor for SnO$_2$ Thin films Characteristics

2024-09-18 · Faiza Bouamra, Mohamed Sayah, Labib Sadek Terrissa, Noureddine Zerhouni

In material physics, characterization techniques are foremost crucial for obtaining the materials data regarding the physical properties as well as structural, electronics, magnetic, optic, dielectric, and spectroscopic …

Investigation of inverse design of multilayer thin-films with conditional invertible Neural Networks

2022-10-10 · Alexander Luce, Ali Mahdavi, Heribert Wankerl, Florian Marquardt

The task of designing optical multilayer thin-films regarding a given target is currently solved using gradient-based optimization in conjunction with methods that can introduce additional thin-film layers. Recently, Dee…

5-GHz Antisymmetric Mode Acoustic Delay Lines in Lithium Niobate Thin Film

2019-10-12

We present the first group of acoustic delay lines (ADLs) at 5 GHz, using the first-order antisymmetric (A1) mode in Z-cut lithium niobate thin films. The demonstrated ADLs significantly surpass the operation frequency o…

Anisotropic Diffusion Model of Communication in 2D Biofilm

2024-08-14 · Yanahan Paramalingam, Hamidreza Arjmandi, Freya Harrison, Tara Schiller 외

A biofilm is a microbial city. It consists of bacteria embedded in an extracellular polymeric substance (EPS) that functions as a protective barrier. Quorum sensing (QS) is a method of bacterial communication, where auto…

model