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Invertible deinterlacing with sampling-density preservation: theory and design

机译:具有采样密度保护的可逆去隔行:理论与设计

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摘要

A novel class of deinterlacing for intra-frame/field-based motion-picture coding, such as Motion JPEG2000, as well as an inter-frame-based coding without the support of interlaced scanning video, such as MPEG-1, is developed. This technique has two features: sampling-density preservation and invertibility. These features mean that the amount of deinterlaced pictures is not increased, and the original pictures can be perfectly reconstructed. This deinterlacing technique is a kind of sampling-lattice alteration and is regarded as a generalization of conventional field interleaving and field separation. With the help of multidimensional (M-D) multirate theory, it is shown that the design problem of such a system, that is, invertible deinterlacer with sampling-density preservation, can be replaced to finding a 2/spl times/2 multivariable polynomial matrix with a monomial determinant. This problem resembles the design of two-channel M-D maximally decimated perfect-reconstruction finite-impulse-response (FIR) filterbanks. The inverse system, which is referred to as a reinterlacer , is given as FIR when the dual deinterlacing system is FIR. A practical design procedure is provided by suggesting three constraints considered to be preferable: normalization, regularity, and vertical symmetry. The significance of the procedure is verified by showing some design examples of deinterlacing and reinterlacing filters. Simulation results show that the developed method causes fewer comb-shaped artifacts than conventional field interleaving.
机译:开发了新颖的一类去隔行,用于基于帧/场的运动图像编码(例如Motion JPEG2000)以及不支持隔行扫描视频(例如MPEG-1)的基于帧间的编码。该技术具有两个特征:采样密度保持和可逆性。这些功能意味着不增加隔行图像的数量,并且可以完美地重建原始图像。这种去隔行技术是一种采样格变换,被认为是常规场交织和场分离的概括。借助多维(MD)多速率理论,证明了该系统的设计问题,即具有采样密度保存功能的可逆去交错器,可以替换为找到一个2 / spl times / 2的多元多项式矩阵,单项式行列式。此问题类似于两通道M-D最大抽取的完美重构有限冲激响应(FIR)滤波器组的设计。当双重去隔行系统为FIR时,将反向系统称为FIR。通过提出三个被认为更可取的约束条件,提供了一种实用的设计程序:归一化,规则性和垂直对称性。通过显示去隔行和重新隔行滤波器的一些设计示例,可以验证该过程的重要性。仿真结果表明,与传统的场交织相比,该方法所产生的梳状伪像更少。

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