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High Dynamic Range DMD-Based IR Scene Projector

机译:基于DMD的高动态范围红外场景投影仪

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摘要

OPTRA is developing a next-generation digital micromirror device (DMD) based two-band infrared scene projector (IRSP) with infinite bit-depth independent of frame rate and an order of magnitude improvement in contrast over the state of the art. Traditionally DMD-based IRSPs have offered larger format and superior uniformity and pixel operability relative to resistive and diode arrays, however, they have been limited in contrast and also by the inherent bit-depth / frame rate tradeoff imposed by pulse width modulation (PWM). OPTRA'S high dynamic range IRSP (HIDRA SP) has broken this dependency with a dynamic structured illumination solution. The HIDRA SP uses a source conditioning DMD to impose the structured illumination on two projector DMDs - one for each spectral band. The source conditioning DMD is operated in binary mode, and the relay optics which form the structured illumination act as a low pass spatial filter. The structured illumination is therefore spatially grayscaled and more importantly is analog with no PWM. In addition, the structured illumination concentrates energy where bright object will be projected and extinguishes energy in dark regions; the result is a significant improvement in contrast. The projector DMDs are operated with 8-bit PWM, however the total projected image is analog with no bit-depth / frame rate dependency. In this paper we describe our progress towards the development, build, and test of a prototype HIDRA SP.
机译:OPTRA正在开发基于下一代数字微镜设备(DMD)的两波段红外场景投影仪(IRSP),其无穷大比特深度与帧速率无关,并且与现有技术相比,对比度提高了一个数量级。传统上,基于DMD的IRSP相对于电阻阵列和二极管阵列提供了更大的格式,更好的均匀性和像素可操作性,然而,它们却受到了对比度以及脉宽调制(PWM)所固有的位深/帧频权衡的限制。 OPTRA的高动态范围IRSP(HIDRA SP)通过动态结构照明解决方案打破了这种依赖性。 HIDRA SP使用光源调节DMD将结构化照明施加到两个投影机DMD上-每个光谱带一个。源调节DMD以二进制模式运行,形成结构化照明的中继光学器件充当低通空间滤波器。因此,结构化照明在空间上是灰度的,更重要的是没有PWM的模拟照明。此外,结构化照明将能量集中在投射明亮物体的地方,并在黑暗区域消除能量;结果是对比度显着提高。投影机DMD使用8位PWM操作,但是总的投影图像是模拟的,与位深度/帧速率无关。在本文中,我们描述了在开发,构建和测试HIDRA SP原型方面的进展。

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