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首页> 外文期刊>IEEE Transactions on Neural Networks >The design, fabrication, and test of a new VLSI hybrid analog-digital neural processing element
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The design, fabrication, and test of a new VLSI hybrid analog-digital neural processing element

机译:新型VLSI混合模数神经处理元件的设计,制造和测试

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摘要

A hybrid analog-digital neural processing element with the time-dependent behavior of biological neurons has been developed. The hybrid processing element is designed for VLSI implementation and offers the best attributes of both analog and digital computation. Custom VLSI layout reduces the layout area of the processing element, which in turn increases the expected network density. The hybrid processing element operates at the nanosecond time scale, which enables it to produce real-time solutions to complex spatiotemporal problems found in high-speed signal processing applications. VLSI prototype chips have been designed, fabricated, and tested with encouraging results. Systems utilizing the time-dependent behavior of the hybrid processing element have been simulated and are currently in the fabrication process. Future applications are also discussed.
机译:已经开发了具有生物神经元的时间依赖性行为的混合模拟数字神经处理元件。混合处理元件专为VLSI实现而设计,并提供了模拟和数字计算的最佳属性。自定义VLSI布局减小了处理元素的布局面积,从而增加了预期的网络密度。混合处理元件的工作时间为纳秒级,这使它能够为高速信号处理应用中发现的复杂时空问题提供实时解决方案。 VLSI原型芯片经过设计,制造和测试,结果令人鼓舞。利用混合处理元件随时间变化的行为的系统已经过模拟,目前处于制造过程中。还讨论了将来的应用。

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