当前位置: X-MOL 学术Sci. Adv. › 论文详情
Our official English website, www.x-mol.net, welcomes your feedback! (Note: you will need to create a separate account there.)
Non–von Neumann multi-input spike signal processing enabled by an artificial synaptic multiplexer
Science Advances ( IF 11.7 ) Pub Date : 2022-06-22 , DOI: 10.1126/sciadv.abn1838
Dong Hae Ho 1 , Dong Gue Roe 2 , Yoon Young Choi 3 , Seongchan Kim 4 , Young Jin Choi 1 , Do Hwan Kim 5 , Sae Byeok Jo 1 , Jeong Ho Cho 1
Affiliation  

Multiplexing is essential for technologies that require processing of a large amount of information in real time. Here, we present an artificial synaptic multiplexing unit capable of realizing parallel multi-input control system. Ion gel was used as a dielectric layer of the artificial synaptic multiplexing unit because of its ionic property, allowing multigating for parallel input. A closed-loop control system that enables multi-input–based feedback for actuator bending control was realized by incorporating an ion gel–based artificial synaptic multiplexing unit, an actuator, and a bending angle sensor. The proposed multi-input control system could simultaneously process input and feedback signals, offering a breakthrough in industries in which the processing of vast amounts of streaming data is essential.

中文翻译:

由人工突触多路复用器启用的非冯诺依曼多输入尖峰信号处理

多路复用对于需要实时处理大量信息的技术至关重要。在这里,我们提出了一种能够实现并行多输入控制系统的人工突触复用单元。由于离子凝胶的离子特性,离子凝胶被用作人工突触复用单元的介电层,允许并行输入的多门控。通过结合基于离子凝胶的人工突触复用单元、执行器和弯曲角度传感器,实现了一个闭环控制系统,该系统可为执行器弯曲控制提供基于多输入的反馈。拟议的多输入控制系统可以同时处理输入和反馈信号,为需要处理大量流数据的行业带来突破。
更新日期:2022-06-22
down
wechat
bug