在一种新型可重构DSP架构上实现OFDM内核的实例研究

A. Niktash, R. Maestre, N. Bagherzadeh
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引用次数: 9

摘要

在本文中,我们介绍了Morpho Technologies的可重构MS2平台,用于处理PHY层OFDM内核的关键基带处理,这些内核通常在用于802.11a、802.16 (WiMax)等商业标准和WNW等军用波形的ASIC结构中实现。首先,我们概述了Morpho的MS2平台架构。MS2是一种高度优化和高效的并行处理解决方案,旨在满足移动解决方案的实时基带处理和超低功耗要求。接下来,我们描述了构成OFDM关键组件的最计算密集型内核的详细实现。MS2解决方案的灵活性使SoC设计人员不仅能够满足当前的OFDM物理层要求,而且能够创建一个能够适应这些标准未来变化的平台。从军用无线通信的角度来看,拥有一个高效、低功耗的OFDM解决方案对于支持未来十年的JTRS计划至关重要,Morpho的MS2解决方案为SoC设计人员提供了解决这一难题的途径
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A case study of performing OFDM kernels on a novel reconfigurable DSP architecture
In this paper we present Morpho Technologies' reconfigurable MS2 platform for handling key baseband processing of PHY layer OFDM kernels that are commonly implemented in ASIC structures for commercial standards such as 802.11a, 802.16 (WiMax) and military waveforms such as WNW. First, we present an overview of Morpho's MS2 platform architecture. MS2 is a highly optimized and efficient parallel processing solution designed to meet both the real-time baseband processing and ultra low power requirements for mobile solutions. Next, we describe the detailed implementation of the most computationally intensive kernels that constitute the critical components of OFDM. The flexibility of the MS2 solution empowers SoC designers to not only meet the current OFDM PHY layer requirements, but to create a platform that can accommodate future changes within these standards. From the military wireless communications point of view, having an efficient and low power OFDM solution is critical to support the JTRS programs for the next decade, Morpho's MS2 solution provides SoC designers with an avenue to solve this difficult problem
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