Geolocating thermal binoculars based on a software defined camera core incorporating HOT MCT grown by MOVPE

L. Pillans, J. Harmer, Tim Edwards, L. Richardson
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Abstract

Geolocation is the process of calculating a target position based on bearing and range relative to the known location of the observer. A high performance thermal imager with integrated geolocation functions is a powerful long range targeting device. Firefly is a software defined camera core incorporating a system-on-a-chip processor running the AndroidTM operating system. The processor has a range of industry standard serial interfaces which were used to interface to peripheral devices including a laser rangefinder and a digital magnetic compass. The core has built in Global Positioning System (GPS) which provides the third variable required for geolocation. The graphical capability of Firefly allowed flexibility in the design of the man-machine interface (MMI), so the finished system can give access to extensive functionality without appearing cumbersome or over-complicated to the user. This paper covers both the hardware and software design of the system, including how the camera core influenced the selection of peripheral hardware, and the MMI design process which incorporated user feedback at various stages.
基于软件定义相机核心的热成像双筒望远镜定位,该相机核心包含由MOVPE公司开发的HOT MCT
地理定位是基于相对于观察者已知位置的方位和距离计算目标位置的过程。集成地理定位功能的高性能热成像仪是一种功能强大的远程瞄准设备。Firefly是一个软件定义的相机核心,包含一个运行AndroidTM操作系统的单片系统处理器。该处理器具有一系列工业标准串行接口,用于连接外围设备,包括激光测距仪和数字磁罗盘。核心内置了全球定位系统(GPS),它提供了地理定位所需的第三个变量。Firefly的图形功能允许灵活地设计人机界面(MMI),因此完成的系统可以提供广泛的功能,而不会对用户显得繁琐或过于复杂。本文涵盖了系统的硬件和软件设计,包括相机核心如何影响外围硬件的选择,以及在各个阶段结合用户反馈的MMI设计过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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