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Microbolometer uncooled thermal imaging sensors for law enforcement applications

机译:用于执法应用的微生物计未处理热成像传感器

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Since the early 1990's, microbolometer uncooled thermal imaging sensor technology has moved out of the basic development laboratories of the Honeywell Corporation in Minneapolis into applied development at several companies companies that have licensed the basic technology, and now out into the real world to address military, government, and commercial applications. Today, thousands of production microbolometer uncooled thermal imaging sensors are being sold and shipped annually. At the same time, applied research and development on the technology continues at an unabated, if not increasing, pace. These research and development efforts have two primary goals: 1) improving sensor performance in terms of increased resolution and greater thermal sensitivity and 2) reducing sensor cost. Success is being achieved in both areas. In this paper we will describe advances in microbolometer uncooled thermal imaging snesor technology as they apply to law enforcement applications. Improvements in sensor performance that will be described include: a) reduced pixel pitch, b) increased spatial resolution, c) increased thermal sensitivity, d) reduced electrical power, and e) reduced size. Since cost considerations dominate many, if not most, potential law enforcement applications, microbolometer sensor cost issues will be addressed in terms of current and projected cost trends. In addition to the use of theoretical considerations in describing microbolometer technology advancements currently being made or planned, examples of actual improvements, in the form of real imagery and/or actual performance measurements, will be provided in the paper. Finally, we will look at those areas of law enforcement that are most likely to benefit from the application of microbolometer uncooled thermal imaging sensor technology. These include: a) surveillance sensor systems, b) unattended sensor systems, c) mobile sensor systems and platforms, and d) gunfire localization and counter sniper systems.
机译:自20世纪90年代初以来,微生物仪未加工的热成像传感器技术迁出了明尼阿波利斯的霍尼韦尔公司基本开发实验室进入了许多公司公司的应用开发,该公司已经获得了基本技术,现在进入了现实世界来解决军事,政府和商业应用。如今,成千上万的生产微生物仪未加工的热成像传感器每年销售和发货。与此同时,如果没有增加,速度,技术的研究和开发就会在一个不减的情况下继续。这些研究和开发工作有两个主要目标:1)在提高分辨率和更高的热敏性方面提高传感器性能,2)减少了传感器成本。在这两个领域都取得了成功。在本文中,我们将描述微生物仪未加工的热成像斯诺斯队技术的进步,因为它们适用于执法应用。将描述的传感器性能的改进包括:a)降低的像素间距,b)增加的空间分辨率,c)增加热敏性,d)降低电力,并且e)减小尺寸。由于成本考虑因素占主导地位,如果不是大多数,潜在的执法应用,将在当前和预计的成本趋势方面解决微水表传感器成本问题。除了使用理论考虑目前正在制造或计划的微生镜技术进步之外,将在纸质中提供实际图像和/或实际性能测量的实际改进的例子。最后,我们将研究最有可能从微生物仪加工热成像传感器技术的应用中受益的执法领域。这些包括:a)监视传感器系统,b)无人看管的传感器系统,c)移动传感器系统和平台,d)枪声定位和计数器狙击系统。

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