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Natural encoding of information through interacting impulses

机译:通过相互作用的脉冲对信息进行自然编码

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Standard unit of information Bit generates any natural process through discrete (yes-no) interactions, including interactive macro impulses in classical physics and elementary micro impulses of quantum interactions. The elementary interactions of random impulses measures (yes-no) probability events according to Kolmogorov 1-0 law for random process. In a natural interactive process, each impulse step-down action cuts the correlations of the process prior interactive events. This cuts the process entropy, defined by its probability, memorizing the cutting entropy as information hidden in the correlation. Memory “freezes” the information impulse in the cutting off correlation. The interactive impulse reveals information as phenomenon of interaction. The interval of each interaction holds quantity of energy. Each Bit is naturally extracted or erased at the cost of cutting this energyand encoding information in the interacting physical state (by the impulse step-up action). The impulse sequential natural encoding merges memory with the time of memorizing information and compensates the cutting cost by running time intervals of encoding. The information process, preserving the invariant impulse cutting information, binds the inner impulse reversible microprocess and the multiple impulses irreversible macroprocess in information dynamics. The encoding process unites the information path functional integratingobserver's geometrical cellular information structurewhich composes rotating helix of the sequencing cells Bits. This natural encoding satisfied Landauer principle and compensates for the cost of Maxwell Demon. The energy of specific interaction limits the universal code length and density. The conditions and results validate the computer simulation, multiple experiments in coding genetic information, experimental encoding by spiking neurons, others.
机译:信息的标准单位比特通过离散(是-否)相互作用产生任何自然过程,包括经典物理学中的相互作用宏脉冲和量子相互作用的基本微脉冲。随机冲动的基本相互作用根据Kolmogorov 1-0律对随机过程进行度量(是-否)概率事件。在自然的交互过程中,每个脉冲降压动作都会削减过程之前交互事件的相关性。这削减了由其概率定义的过程熵,将其存储为隐藏在相关性中的信息。存储器“冻结”了截止相关中的信息脉冲。互动冲动将信息显示为互动现象。每次相互作用的间隔都保持着一定数量的能量。自然地提取或擦除每个位,其代价是在交互的物理状态下(通过脉冲升压动作)削减能量并编码信息。脉冲式顺序自然编码将内存与信息存储时间合并在一起,并通过运行时间间隔来补偿切割成本。信息过程中,保留不变的冲激切割信息,将内部冲激的可逆微过程与多重冲动的不可逆的宏观过程联系起来。编码过程将信息路径功能集成观察者的几何细胞信息结构统一起来,该结构构成了测序单元Bits的旋转螺旋。这种自然编码满足了Landauer原理,并补偿了Maxwell Demon的成本。特定相互作用的能量限制了通用代码的长度和密度。条件和结果验证了计算机仿真,遗传信息编码的多次实验,尖刺神经元的实验编码等。

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