首页> 美国卫生研究院文献>Frontiers in Computational Neuroscience >Modeling the Nucleus Laminaris of the Barn Owl: Achieving 20 ps Resolution on a 85-MHz-Clocked Digital Device
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Modeling the Nucleus Laminaris of the Barn Owl: Achieving 20 ps Resolution on a 85-MHz-Clocked Digital Device

机译:建模谷仓猫头鹰的椎板中层:在85MHz时钟数字设备上实现20µps的分辨率

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摘要

The nucleus laminaris of the barn owl auditory system is quite impressive, since its underlying time estimation is much better than the processing speed of the involved neurons. Since precise localization is also very important in many technical applications, this paper explores to what extent the main principles of the nucleus laminaris can be implemented in digital hardware. The first prototypical implementation yields a time resolution of about 20 ps, even though the chosen standard, low-cost device is clocked at only 85 MHz, which leads to an internal duty cycle of approximately 12 ns. In addition, this paper also explores the utility of an advanced sampling scheme, known as unfolding-in-time. It turns out that with this sampling method, the prototype can easily process input signals of up to 300 MHz, which is almost four times higher than the sampling rate.
机译:谷仓猫头鹰听觉系统的椎板细胞核非常令人印象深刻,因为其潜在的时间估计比涉及的神经元的处理速度要好得多。由于精确定位在许多技术应用中也非常重要,因此本文探讨了层板核的主要原理可以在数字硬件中实现的程度。即使所选标准低成本器件的时钟频率仅为85 MHz,第一个原型实现仍可产生约20 onlyps的时间分辨率,这导致内部占空比约为12 ns。此外,本文还探讨了称为实时展开的高级采样方案的实用性。事实证明,采用这种采样方法,原型可以轻松处理高达300 MHz的输入信号,这几乎是采样速率的四倍。

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