Emerging applications in the IoT domain require ultra-low-power and high-performance end-nodes to deal with complex near-sensor-data analytics. Domains such as audio, radar, and Structural Health Monitoring require many computations to be performed in the frequency domain rather than in the time domain. We present Echoes, a System-On-a-Chip (SoC) composed of a RISC-V core enhanced with fixed- and floating-point digital signal processing (DSP) extensions and a Fast-Fourier Transform (FFT) hardware accelerator targeting emerging frequency-domain application. The proposed SoC features an autonomous I/O engine supporting a wide set of peripherals, including Ultra-Low-Power radars, MEMS, and digital microphones over I2S protocol with full-duplex Time Division Multiplexing DSP mode, making Echoes the first open-source SoC which offers this functionality enabling simultaneous communication with up to 16 I/Os devices. Echoes, fabricated with 65nm CMOS technology, reaches a peak performance of 0.16 GFLOPS and a peak energy efficiency of 9.68 GFLOPS/W on a wide range of floating and fixed-point general-purpose DSP kernels. The FFT accelerator achieves performance up to 10.16 GOPS with an efficiency of 199.8 GOPS/W, improving performance and efficiency by up to 41.1× and 11.2×, respectively, over its software implementation of this critical task for frequency domain processing.

ECHOES: a 200 GOPS/W Frequency Domain SoC with FFT Processor and I2S DSP for Flexible Data Acquisition from Microphone Arrays / Sinigaglia, M.; Bertaccini, L.; Valente, L.; Garofalo, A.; Benatti, S.; Benini, L.; Conti, F.; Rossi, D.. - 2023-:(2023), pp. 1-5. ( 56th IEEE International Symposium on Circuits and Systems, ISCAS 2023 usa 2023) [10.1109/ISCAS46773.2023.10181862].

ECHOES: a 200 GOPS/W Frequency Domain SoC with FFT Processor and I2S DSP for Flexible Data Acquisition from Microphone Arrays

Sinigaglia M.;Benatti S.;Benini L.;
2023

Abstract

Emerging applications in the IoT domain require ultra-low-power and high-performance end-nodes to deal with complex near-sensor-data analytics. Domains such as audio, radar, and Structural Health Monitoring require many computations to be performed in the frequency domain rather than in the time domain. We present Echoes, a System-On-a-Chip (SoC) composed of a RISC-V core enhanced with fixed- and floating-point digital signal processing (DSP) extensions and a Fast-Fourier Transform (FFT) hardware accelerator targeting emerging frequency-domain application. The proposed SoC features an autonomous I/O engine supporting a wide set of peripherals, including Ultra-Low-Power radars, MEMS, and digital microphones over I2S protocol with full-duplex Time Division Multiplexing DSP mode, making Echoes the first open-source SoC which offers this functionality enabling simultaneous communication with up to 16 I/Os devices. Echoes, fabricated with 65nm CMOS technology, reaches a peak performance of 0.16 GFLOPS and a peak energy efficiency of 9.68 GFLOPS/W on a wide range of floating and fixed-point general-purpose DSP kernels. The FFT accelerator achieves performance up to 10.16 GOPS with an efficiency of 199.8 GOPS/W, improving performance and efficiency by up to 41.1× and 11.2×, respectively, over its software implementation of this critical task for frequency domain processing.
2023
Inglese
56th IEEE International Symposium on Circuits and Systems, ISCAS 2023
usa
2023
56th IEEE International Symposium on Circuits and Systems, ISCAS 2023
2023-
1
5
9781665451093
Institute of Electrical and Electronics Engineers Inc.
FFT processor; Frequency Domain SoC; I2S; microphone array; TDM
Sinigaglia, M.; Bertaccini, L.; Valente, L.; Garofalo, A.; Benatti, S.; Benini, L.; Conti, F.; Rossi, D.
Atti di CONVEGNO::Relazione in Atti di Convegno
273
8
ECHOES: a 200 GOPS/W Frequency Domain SoC with FFT Processor and I2S DSP for Flexible Data Acquisition from Microphone Arrays / Sinigaglia, M.; Bertaccini, L.; Valente, L.; Garofalo, A.; Benatti, S.; Benini, L.; Conti, F.; Rossi, D.. - 2023-:(2023), pp. 1-5. ( 56th IEEE International Symposium on Circuits and Systems, ISCAS 2023 usa 2023) [10.1109/ISCAS46773.2023.10181862].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11380/1315494
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