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DCT-based adaptive thresholding algorithm for binary motion estimation

机译:基于DCT的自适应阈值二值运动估计算法

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This paper presents a discrete-cosine transform (DCT)-based adaptive thresholding algorithm to achieve an effective binarization of video image for binary motion estimation (BME). The BME through the full search mechanism requires extremely low hardware complexity. Experimental results show that the proposed adaptive BME attains performance close to the 8-bit resolution ME for low motion sequences with full search strategy. Compared to the well-known single-layer BME, the proposed adaptive algorithm shows better peak signal-to-noise ratio performance and more robustness to complex images. Moreover, the proposed algorithm has a lower computational complexity that is suitable for VLSI implementation with a smaller hardware overhead.
机译:本文提出了一种基于离散余弦变换(DCT)的自适应阈值算法,以实现视频图像的有效二值化,以进行二进制运动估计(BME)。通过完全搜索机制的BME需要极低的硬件复杂性。实验结果表明,对于具有完整搜索策略的低运动序列,所提出的自适应BME的性能接近于8位分辨率ME。与众所周知的单层BME相比,所提出的自适应算法表现出更好的峰值信噪比性能和对复杂图像的鲁棒性。此外,所提出的算法具有较低的计算复杂度,适合具有较小硬件开销的VLSI实现。

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