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Algorithms for Generating Probabilities with Multivalued Stochastic Relay Circuits

机译:多值随机继电器电路的概率生成算法

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The problem of random number generation dates back to Von Neumann’s work in 1951. Since then, many algorithms have been developed for generating unbiased bits from complex correlated sources as well as for generating arbitrary distributions from unbiased bits. An equally interesting, but less studied aspect is the component of random number generation. That is, given a set of primitive sources of randomness, and given composition rules induced by a device or nature, how can we build networks that generate arbitrary probability distributions? In this paper, we study the generation of arbitrary probability distributions in multivalued relay circuits, a generalization in which relays can take on any of states and the logical ‘and’ and ‘or’ are replaced with ‘min’ and ‘max’ respectively. These circuits can be thought of as modeling the timing of events which depend on other event occurences. We describe a duality property and give algorithms that synthesize arbitrary rational probability distributions. We prove that these networks are robust to errors and design a universal probability generator which takes input bits and outputs any desired binary probability distribution.
机译:随机数生成的问题可以追溯到1951年冯·诺依曼(Von Neumann)的工作。从那时起,已经开发了许多算法,用于从复杂的相关源生成无偏比特,以及从无偏比特生成任意分布。一个同样有趣但研究较少的方面是随机数生成的组件。也就是说,给定一组原始的随机性源,并给定由设备或自然引起的合成规则,我们如何构建可生成任意概率分布的网络?在本文中,我们研究了多值继电器电路中任意概率分布的生成,即继电器可以处于任何状态并且将逻辑“与”和“或”分别替换为“最小”和“最大”的一种概括。这些电路可以被认为是对取决于其他事件发生的事件时序进行建模。我们描述了对偶性,并给出了可合成任意有理概率分布的算法。我们证明了这些网络对于错误具有鲁棒性,并设计了一种通用概率生成器,该生成器将输入比特并输出任何所需的二进制概率分布。

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