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A Generalized Conflict-Free Memory Addressing Scheme for Continuous-Flow Parallel-Processing FFT Processors With Rescheduling

机译:具有重新调度的连续流并行处理FFT处理器的通用无冲突内存寻址方案

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摘要

This paper presents a generalized conflict-free memory addressing scheme for memory-based fast Fourier transform (FFT) processors with parallel arithmetic processing units made up of radix-$2^{q}$ multi-path delay commutator (MDC). The proposed addressing scheme considers the continuous-flow operation with minimum shared memory requirements. To improve throughput, parallel high-radix processing units are employed. We prove that the solution to non-conflict memory access satisfying the constraints of the continuous-flow, variable-size, higher-radix, and parallel-processing operations indeed exists. In addition, a rescheduling technique for twiddle-factor multiplication is developed to reduce hardware complexity and to enhance hardware efficiency. From the results, we can see that the proposed processor has high utilization and efficiency to support flexible configurability for various FFT sizes with fewer computation cycles than the conventional radix-2/radix-4 memory-based FFT processors.
机译:本文提出了一种基于内存的快速傅里叶变换(FFT)处理器的通用无冲突内存寻址方案,该处理器具有由基数$ 2 ^ {q} $多径延迟换向器(MDC)组成的并行算术处理单元。建议的寻址方案考虑了具有最小共享内存要求的连续流操作。为了提高吞吐量,采用了并行的高基数处理单元。我们证明,存在满足连续流,可变大小,高基数和并行处理操作约束的无冲突内存访问的解决方案确实存在。另外,开发了用于旋转因子乘法的重新调度技术以降低硬件复杂度并提高硬件效率。从结果可以看出,与传统的基于radix-2 / radix-4存储器的FFT处理器相比,所提出的处理器具有较高的利用率和效率,可支持各种FFT大小的灵活可配置性。

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