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Single-Chip Camera Modules for Mosaic Image Sensor

机译:用于马赛克图像传感器的单片机模块

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Mosaic imagers increase field of view cost effectively, by connecting single-chip cameras in a coordinated manner equivalent to a large array of sensors. Components that would conventionally have been in separate chips can be integrated on the same focal plane by using CMOS image sensors (CIS). Here, a mosaic imaging system is constructed using CIS connected through a bus line (called the image-bus) which shares common input controls and output(s), and enables additional cameras to be inserted with little system modification. The image-bus consumes relatively low power by employing intelligent power control techniques. However, the bandwidth of the bus will still limit the number of camera modules that can be connected in the mosaic array. Hence, signal-processing components, such as data reduction and encoding, are needed on-chip in order to achieve high readout speed. One such method is described in which the number and sizes of pixel clusters above an intensity threshold are determined using a novel "object positioning algorithm" architecture. This scheme identifies significant events or objects in the scene before the camera's data are transmitted over the bus, thereby reducing the effective bandwidth. In addition, basic modules in single-chip camera are suggested for efficient data transfer and power control in mosaic imager.
机译:马赛克成像仪通过将单片机以等于大量传感器的协调的方式连接单芯片相机来增加视野成本。通常通过CMOS图像传感器(CIS)可以在相同的焦平面上集成在传统上的组件。这里,使用通过总线(称为图像总线)连接的CIS构造起马达成像系统,该总线连接,其共享公共输入控制和输出,并使能够用很少的系统修改插入额外的摄像机。通过采用智能功率控制技术,图像总线消耗相对低的功率。但是,总线的带宽仍将限制可以在镶嵌阵列中连接的相机模块的数量。因此,芯片处理诸如数据减少和编码的信号处理组件才能实现高读出速度。描述了一种这样的方法,其中使用新颖的“对象定位算法”架构来确定强度阈值上方的像素簇的数量和大小。该方案在通过总线上传输相机数据之前,识别场景中的重要事件或对象,从而减少了有效带宽。此外,建议单片机中的基本模块用于镶嵌成像仪中的高效数据传输和功率控制。

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