Fangduo Zhu

dblp:377/1149 · DBLP profile ↗
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4ranked-venue papers
1as first author
4since 2021 · last 2026
0009-0004-4965-4299ORCID · corroborated

Domains — the database's venue-derived domains; a paper can count in several

Systems, architecture and hardware · 4 · 1 first-author · 4 since 2021
YearPublicationVenuePosition
2026 An RRAM-based Neuromorphic Sleep Monitoring System for Energy-efficient Edge Healthcare Applications
Fangduo Zhu, Jingsong Zhang, Jinhao Liang, Xumeng Zhang, Qi Liu 0010
ISCAS2
2026 An RRAM-based Multi-Timescale Spiking Processor with Reconfigurable Neurons
Jinhao Liang, Fangduo Zhu, Siyuan Ouyang, Jingsong Zhang, Xumeng Zhang, Qi Liu 0010, Ming Liu 0022
ISCAS3
2026 A Pipelined NoC-Based Membrane Shortcut SNN Architecture for Low-Latency Spike Sorting
Jingsong Zhang, Fangduo Zhu, Siyuan Ouyang, Jinhao Liang, Xumeng Zhang, Qi Liu 0010
ISCAS3
2025 SDISC: A Spike-Driven Human-Machine Interface with In-Situ Computing for Real-Time Low-Power Interaction
abstract
Feature extraction and classification of bio-signals are crucial in human-machine interface (HMI), yet suffer from high delay and limited energy efficiency using conventional hardware. To mitigate this challenge, we propose an SDISC architecture, a neuromorphic HMI with the innovation from signal encoding, computing-in-memory (CIM) hardware, to algorithm-hardware co-optimization. The following strategies are implemented: (1) A spike-driven feature extractor, achieving > $10 \times$ sparser dataflow than frame-based method; (2) In-situ computing based on resistive random-access memory (RRAM), enabling energy-efficient (4.09 TOPS/W) spiking neural network (SNN) classifier; (3) A Spike-Activity-Distillation algorithm and an Aid-Loser-Only recovery scheme to alleviate the non-ideality of RRAM devices, ensuring SDISC maintains high accuracy ($\sim \mathbf{9 8. 0 \%}$) in long time inference ($\boldsymbol{\gt} \mathbf{1 5}$ days). We further develop an end-to-end SDISC system for real-time EMG-based robot control, achieving a low latency ($34 \mu \mathrm{~s}$) and low power ($39.72 \mu \mathrm{~W} /$ sample) interaction on edge.
Fangduo Zhu, Jingsong Zhang, Xumeng Zhang, Siyuan Ouyang, Chenyang, Hao Jiang 0024, Qi Liu 0010
DAC1