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SELF-SUSTAINED INFRARED TEMPERATURE SENSOR ARRAYS

机译:自我维持的红外温度传感器阵列

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摘要

This paper studies infrared contactless sensors. There are growing needs for enhanced-functionality temperature sensors. The micromachined infrared (IR) sensors are designed, fabricated, tested, characterized and evaluated. We examine the nonlinear Seebeck effect, device physics, physical parameters and key characteristics. The existing solutions and technologies are discussed. Considering N×M sensor arrays, we address and solve infrared thermo-sensing and thermal-imaging enhancement problems in order to improve perception of information, enhance spatiotemporal accuracy, improve resolution, etc. The processing algorithms are developed and verified. Energy harvesting, energy storage and energy management are of an importance for autonomous portable sensors in aerospace, biomedical, consumer electronics, medical, reconnaissance, security and other applications. In many applications, networked IR sensors powered by renewable energy modules may guarantee autonomy. Experimental results for sensor arrays and energy management modules are performed. Our findings are justified and substantiated.
机译:本文研究了红外非接触式传感器。对功能增强的温度传感器的需求不断增长。设计,制造,测试,表征和评估微机械红外(IR)传感器。我们研究了非线性塞贝克效应,器件物理,物理参数和关键特性。讨论了现有的解决方案和技术。考虑到N×M传感器阵列,我们解决并解决了红外热敏和热成像增强问题,以改善对信息的感知,提高时空精度,提高分辨率等。开发并验证了处理算法。能量收集,能量存储和能量管理对于航空,生物医学,消费电子,医疗,侦察,安全和其他应用中的自主便携式传感器至关重要。在许多应用中,由可再生能源模块提供动力的联网IR传感器可以保证自主性。进行了传感器阵列和能量管理模块的实验结果。我们的发现是合理的和有根据的。

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