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Fully Reused VLSI Architecture of FM0/Manchester Encoding Using SOLS Technique for DSRC Applications

机译:使用SOLS技术在DSRC应用中完全重用的FM0 /曼彻斯特编码的VLSI架构

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摘要

The dedicated short-range communication (DSRC) is an emerging technique to push the intelligent transportation system into our daily life. The DSRC standards generally adopt FM0 and Manchester codes to reach dc-balance, enhancing the signal reliability. Nevertheless, the coding-diversity between the FM0 and Manchester codes seriously limits the potential to design a fully reused VLSI architecture for both. In this paper, the similarity-oriented logic simplification (SOLS) technique is proposed to overcome this limitation. The SOLS technique improves the hardware utilization rate from 57.14% to 100% for both FM0 and Manchester encodings. The performance of this paper is evaluated on the postlayout simulation in Taiwan Semiconductor Manufacturing Company (TSMC) 0.18- 1P6M CMOS technology. The maximum operation frequency is 2 GHz and 900 MHz for Manchester and FM0 encodings, respectively. The power consumption is 1.58 mW at 2 GHz for Manchester encoding and 1.14 mW at 900 MHz for FM0 encoding. The core circuit area is . The encoding capability of this paper can fully support the DSRC standards of America, Europe, and Japan. This paper not only develops a fully reused VLSI architecture, but also exhibits an efficient performance compared with the existing works.
机译:专用的短距离通信(DSRC)是将智能交通系统推入我们日常生活的新兴技术。 DSRC标准通常采用FM0和曼彻斯特编码来达到直流平衡,从而增强了信号的可靠性。尽管如此,FM0和曼彻斯特代码之间的编码多样性严重限制了为二者设计完全重用的VLSI架构的潜力。在本文中,提出了面向相似性的逻辑简化(SOLS)技术来克服此限制。 SOLS技术将FM0和Manchester编码的硬件利用率从57.14%提高到100%。本文的性能在台积电(TSMC)0.18-1P6M CMOS技术的后布局仿真中进行了评估。对于曼彻斯特和FM0编码,最大工作频率分别为2 GHz和900 MHz。对于曼彻斯特编码,功耗为2 GHz时为1.58 mW,对于FM0编码为900 MHz时为1.14 mW。核心电路面积为。本文的编码能力可以完全支持美国,欧洲和日本的DSRC标准。本文不仅开发了完全可重用的VLSI架构,而且与现有作品相比还具有高效的性能。

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