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Resource Efficient Implementation of Low Power MB-OFDM PHY Baseband Modem With Highly Parallel Architecture

机译:具有高度并行架构的低功耗MB-OFDM PHY基带调制解调器的资源高效实现

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The multi-band orthogonal frequency-division multiplexing modem needs to process large amount of computations in short time for support of high data rates, i.e., up to 480 Mbps. In order to satisfy the performance requirement while reducing power consumption, a multi-way parallel architecture has been proposed. But the use of the high degree parallel architecture would increase chip resource significantly, thus a resource efficient design is essential. In this paper, we introduce several novel optimization techniques for resource efficient implementation of the baseband modem which has highly, i.e., 8-way, parallel architecture, such as new processing structures for a (de)interleaver and a packet synchronizer and algorithm reconstruction for a carrier frequency offset compensator. Also, we describe how to efficiently design several other components. The detailed analysis shows that our optimization technique could reduce the gate count by 27.6% on average, while none of techniques degraded the overall system performance. With 0.18- $mu$m CMOS process, the gate count and power consumption of the entire baseband modem were about 785 kgates and less than 381 mW at 66 MHz clock rate, respectively.
机译:多频带正交频分复用调制解调器需要在短时间内处理大量计算,以支持高数据速率,即高达480Mbps。为了在降低功耗的同时满足性能要求,提出了一种多路并行架构。但是,高度并行架构的使用将显着增加芯片资源,因此资源高效的设计至关重要。在本文中,我们介绍了几种新颖的优化技术,可实现资源的高效实现,其中基带调制解调器具有高度的8路并行架构,例如用于(解)交织器和数据包同步器的新处理结构以及用于载波频率偏移补偿器。另外,我们描述了如何有效地设计其他几个组件。详细的分析表明,我们的优化技术平均可使门数减少27.6%,而这些技术都不会降低整个系统的性能。采用0.18μmCMOS工艺,在66 MHz时钟速率下,整个基带调制解调器的门数和功耗分别约为785 kgates和小于381 mW。

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