Systems and Research Center, Honeywell, Inc., Minneapolis, MN 55413.
IEEE Trans Pattern Anal Mach Intell. 1982 Jan;4(1):57-61. doi: 10.1109/tpami.1982.4767196.
Multidetector imaging focal plane arrays like CCD TV cameras and infrared arrays possess large detector-to-detector dark current (offset) and responsivity (gain) variations which can completely mask the useful information. Conventional compensation techniques require temperature references of constant radiance over the entire field of view and a mechanical/electrooptical shutter to calibrate the focal plane. This detracts from the mechanical simplicity of multi-detector staring (nonscanning) focal planes. This correspondence describes a real-time offset and responsivity (gain) compensation technique which dispenses with temperature references and shutters in staring focal planes. It makes use of the scene statistics for calibration and continuously updates the compensation coefficients without interrupting the field of view. The results of real-time simulations of this technique with a number of sensors are presented. Real-time LSI/VLSI hardware architectures are addressed. The technique can be implemented with the addition of very little hardware to a conventional compensation technique requiring temperature references. The technique is also suitable for multi-detector scanning focal planes and for the removal of shading in TV sensors as well.
多探测器成像平面阵列,如 CCD 电视摄像机和红外阵列,具有较大的探测器间暗电流(偏移)和响应率(增益)变化,这可能完全掩盖有用信息。传统的补偿技术需要整个视场具有恒定辐射亮度的温度参考,以及机械/光电快门来校准焦平面。这会降低多探测器凝视(非扫描)焦平面的机械简单性。本通信描述了一种实时偏移和响应率(增益)补偿技术,该技术不需要温度参考和快门在凝视焦平面。它利用场景统计数据进行校准,并在不中断视场的情况下连续更新补偿系数。用多个传感器对该技术进行实时仿真的结果。实时 LSI/VLSI 硬件架构也被提出。该技术可以在需要温度参考的传统补偿技术的基础上,通过增加很少的硬件来实现。该技术也适用于多探测器扫描焦平面,以及去除电视传感器中的阴影。