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首页> 外文期刊>IEEE sensors journal >ZM-SPECK: A Fast and Memoryless Image Coder for Multimedia Sensor Networks
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ZM-SPECK: A Fast and Memoryless Image Coder for Multimedia Sensor Networks

机译:ZM-SPECK:用于多媒体传感器网络的快速,无记忆的图像编码器

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摘要

The set partitioned embedded block (SPECK) algorithm is an efficient block-based image coder to encode wavelet transformed images. SPECK uses linked lists to track significant/insignificant coefficients and block sets, thereby having a large memory requirement that increases with the encoding rate. Furthermore, multiple memory read/write operations and list management slow down the algorithm. In addition, the implementation of the traditional discrete wavelet transform (DWT) is memory intensive and time-consuming. Therefore, it is difficult to implement image coding using the traditional DWT and SPECK algorithm on low-cost visual sensor nodes. Most of the existing studies on low-memory implementations of the SPECK algorithm attempt to replace the dynamic memory of linked lists by a static memory in the form of fixed-length state tables/markers. In this paper, a fast and memoryless image coder is proposed, which uses the fractional wavelet filter to calculate the DWT coefficients of the image and a zero-memory listless SPECK algorithm for quantization and coding of the DWT coefficients. The proposed algorithm, referred as zero-memory SPECK (ZM-SPECK), completely eliminates the linked lists and only uses a few registers to perform some low-level arithmetic/logical operations. The elimination of linked lists also reduces the memory access time, thereby making ZM-SPECK faster than the original SPECK algorithm. Simulation results show that the proposed ZM-SPECK coder outperforms the contemporary state-of-the-art wavelet image coders in terms of memory requirement and computational complexity, while retaining their coding efficiency. The proposed ZM-SPECK image coder is thus very well suited for image communication in visual sensor networks.
机译:集合分区嵌入式块(SPECK)算法是一种有效的基于块的图像编码器,用于编码小波变换后的图像。 SPECK使用链接列表来跟踪有效/无关紧要的系数和块集,从而具有很大的存储需求,并随编码率的增加而增加。此外,多次内存读/写操作和列表管理会使算法变慢。此外,传统离散小波变换(DWT)的实现需要占用大量内存,并且非常耗时。因此,很难在低成本的视觉传感器节点上使用传统的DWT和SPECK算法来实现图像编码。现有的大多数关于SPECK算法低内存实现的研究都试图用固定长度状态表/标记形式的静态内存替换链接列表的动态内存。本文提出了一种快速,无记忆的图像编码器,该编码器使用分数小波滤波器计算图像的DWT系数,并使用零内存无列表SPECK算法对DWT系数进行量化和编码。所提出的算法称为零内存SPECK(ZM-SPECK),它完全消除了链表,仅使用几个寄存器来执行一些低级算术/逻辑运算。消除链接列表还减少了内存访问时间,从而使ZM-SPECK比原始SPECK算法更快。仿真结果表明,所提出的ZM-SPECK编码器在存储需求和计算复杂度方面都优于现代的小波图像编码器,同时又保持了编码效率。因此,提出的ZM-SPECK图像编码器非常适合视觉传感器网络中的图像通信。

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