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VLSI implementation of low-power high-quality color interpolation processor for CCD camera

机译:用于CCD相机的低功耗高质量彩色插值处理器的VLSI实现

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This paper presents a color interpolation technique for a single-chip charge-coupled device with color-filter-array format. We propose edge-direction weighting and the local gain approach to reconstruct missing color components. Simulations show that the proposed method can achieve better quality-complexity tradeoff than other algorithms. For real-time implementation, a cost-effective architecture consisting of a pipeline schedule is designed based on our new algorithm. With the time-sharing method, the VLSI architecture can interpolate various colors using a common computational kernel, reducing the circuit complexity. The prototype of the color interpolation processor has been successfully verified with a field-programmable gate array device. The chip only uses about 10K gates and two line buffers.
机译:本文提出了一种采用彩色滤光片阵列格式的单芯片电荷耦合器件的彩色插值技术。我们提出了边缘方向加权和局部增益方法来重建缺失的颜色分量。仿真结果表明,与其他算法相比,所提方法可以取得较好的质量复杂度折衷。对于实时实施,基于我们的新算法设计了一种具有成本效益的架构,该架构包括管道调度。通过分时方法,VLSI架构可以使用通用计算内核对各种颜色进行插值,从而降低了电路复杂性。颜色插值处理器的原型已通过现场可编程门阵列设备成功验证。该芯片仅使用约1万个门和两个行缓冲器。

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