首页> 外文会议>Advances in Computer Systems Architecture; Lecture Notes in Computer Science; 4186 >Design and Analysis of Low Power Image Filters Toward Defect-Resilient Embedded Memories for Multimedia SoCs
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Design and Analysis of Low Power Image Filters Toward Defect-Resilient Embedded Memories for Multimedia SoCs

机译:面向低功耗图像滤波器的面向SoC的具有缺陷弹性的嵌入式存储器的设计和分析

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摘要

In the foreseeable future, System-on-Chip design will suffer from the problem of low yield especially in embedded memories. This can be a critical problem in a multimedia application like H.264 since it needs a huge amount of embedded memory. Existing approaches to solve this problem are not feasible given the higher memory defect density rates in technologies below 90 nm. In this paper, we present a new defect-resilience technique which employs the directional image filter in order to recover data from corrupted embedded memory. According to the analysis based on simulation the proposed filter can greatly improve the visual quality of the defected H.264 video streams with errors in data memory reaching up to 1.0% memory BER (Bit Error Rate) with lower power consumption relative to conventional median filter. Therefore, the proposed method can be a good solution to overcome the problem of low yield in multimedia SoC memory without suffering from additional redundant memory overhead.
机译:在可预见的将来,片上系统设计将遭受产量低的问题,特别是在嵌入式存储器中。在H.264之类的多媒体应用中,这可能是一个关键问题,因为它需要大量的嵌入式内存。考虑到低于90 nm的技术中更高的存储缺陷密度速率,解决该问题的现有方法不可行。在本文中,我们提出了一种新的缺陷复原技术,该技术采用定向图像滤波器来从损坏的嵌入式存储器中恢复数据。根据基于仿真的分析,提出的滤波器可以大大改善有缺陷的H.264视频流的视觉质量,数据存储器中的错误可以达到1.0%的存储器BER(误码率),并且与传统的中值滤波器相比功耗更低。因此,所提出的方法可以很好地解决多媒体SoC存储器产量低的问题,而又不会增加额外的冗余存储器开销。

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