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首页> 外文期刊>Physica, A. Statistical mechanics and its applications >Analog study of the first passage time problem driven by power-law distributed noise
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Analog study of the first passage time problem driven by power-law distributed noise

机译:幂律分布噪声驱动的首次通过时间问题的模拟研究

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In this work, we develop an analog circuit to generate a stochastic signal with stationary distribution exhibiting a tunable power-law tail. The proposed circuit design is a variant of a recently introduced one based on a differential equation with both multiplicative and additive noises. Here, the circuit is carefully designed in order to ensure that all components operate within their specific regimes. We provide a detailed characterization of the output signal, including the power-law exponent dependence on the tunable component. We apply the present circuit to study the first passage time problem in a simple integrate-fire model of neural dynamics driven by a non-Gaussian noise. (C) 2004 Elsevier B.V. All rights reserved.
机译:在这项工作中,我们开发了一个模拟电路来生成具有固定分布的随机信号,该随机信号呈现出可调的幂律尾部。所提出的电路设计是最近引入的电路设计的一种变体,其基于同时具有乘法和累加噪声的微分方程。在这里,电路经过精心设计,以确保所有组件都在其特定范围内运行。我们提供了输出信号的详细表征,包括幂律指数对可调分量的依赖性。我们将本电路应用于由非高斯噪声驱动的神经动力学的简单积分点火模型中的首次通过时间问题。 (C)2004 Elsevier B.V.保留所有权利。

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