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Motion-JPEG2000 codec compensated for interlaced scanning videos

机译:Motion-JPEG2000编解码器可补偿隔行扫描视频

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This paper presents an implementation scheme of Motion-JPEG2000 (MJP2) integrated with invertible deinterlacing. In previous work, we developed an invertible deinterlacing technique that suppresses the comb-tooth artifacts which are caused by field interleaving for interlaced scanning videos, and affect the quality of scalable frame-based codecs, such as MJP2. Our technique has two features, where sampling density is preserved and image quality is recovered by an inverse process. When no codec is placed between the deinterlacer and inverse process, the original video is perfectly reconstructed. Otherwise, it is almost completely recovered. We suggest an application scenario of this invertible deinterlacer for enhancing the sophisticated signal-to-noise ratio scalability in the frame-based MJP2 coding. The proposed system suppresses the comb-tooth artifacts at low bitrates, while enabling the quality recovery through its inverse process at high bitrates within the standard bitstream format. The main purpose of this paper is to present a system that yields high quality recovery for an MJP2 codec. We demonstrate that our invertible deinterlacer can be embedded into the discrete wavelet transform employed in MJP2. As a result, the energy gain factor to control rate-distortion characteristics can be compensated for optimal compression. Simulation results show that the recovery of quality is improved by, for example, more than 2.0 dB in peak signal-to-noise ratio by applying our proposed gain compensation when decoding 8-bit grayscale Football sequence at 2.0 bpp.
机译:本文提出了与可逆去交错集成的Motion-JPEG2000(MJP2)的实现方案。在先前的工作中,我们开发了一种可逆的去隔行技术,该技术可抑制由隔行扫描视频的场交织引起的梳齿伪像,并影响可伸缩的基于帧的编解码器(例如MJP2)的质量。我们的技术具有两个特征,其中保留了采样密度,并通过逆过程恢复了图像质量。当在去隔行和逆过程之间未放置编解码器时,原始视频将得到完美重建。否则,它将几乎完全恢复。我们建议使用这种可逆去交错器的应用场景,以增强基于帧的MJP2编码中复杂的信噪比可伸缩性。所提出的系统以低比特率抑制梳齿伪像,同时通过在标准比特流格式内以高比特率通过其逆过程实现质量恢复。本文的主要目的是提出一种可以为MJP2编解码器提供高质量恢复的系统。我们证明了我们的可逆去交错器可以嵌入到MJP2中采用的离散小波变换中。结果,可以补偿用于控制速率失真特性的能量增益因子,以实现最佳压缩。仿真结果表明,通过在2.0 bpp解码8位灰度Football序列时应用我们提出的增益补偿,可以使峰值信噪比提高2.0 dB以上,从而改善质量。

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