Field Programmable DSP Arrays - A Novel Reconfigurable Architecture for Efficient Realization of Digital Signal Processing Functions

A. Sinha, Soumojit Acharyya, Suranjan Chakraborty, Mitrava Sarkar
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Abstract

Digital Signal Processing functions are widely used in real time high speed applications. Those functions are generally implemented either on ASICs with inflexibility, or on FPGAs with bottlenecks of relatively smaller utilization factor or lower speed compared to ASIC. The proposed reconfigurable DSP processor is redolent to FPGA, but with basic fixed Common Modules (CMs) (like adders, subtractors, multipliers, scaling units, shifters) instead of CLBs. This paper introduces the development of a reconfigurable DSP processor that integrates different filter and transform functions. The switching between DSP functions is occurred by reconfiguring the interconnection between CMs. Validation of the proposed reconfigurable architecture has been achieved on Virtex5 FPGA. The architecture provides sufficient amount of flexibility, parallelism and scalability.
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现场可编程DSP阵列——一种新的可重构结构,用于有效实现数字信号处理功能
数字信号处理功能广泛应用于实时高速应用中。这些功能通常在不灵活的ASIC上实现,或者在与ASIC相比利用率相对较小或速度较低的fpga上实现。提出的可重构DSP处理器与FPGA相似,但使用基本的固定通用模块(CMs)(如加法器,减法器,乘法器,缩放单元,移位器)而不是clb。本文介绍了一种可重构DSP处理器的研制,该处理器集成了多种滤波和变换功能。通过重新配置CMs之间的对接,实现DSP功能的切换。在Virtex5 FPGA上验证了所提出的可重构架构。该架构提供了足够的灵活性、并行性和可伸缩性。
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