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A Solution to the Biodiversity Paradox by Logical Deterministic Cellular Automata

机译:逻辑确定性细胞自动机解决生物多样性悖论

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The paradox of biological diversity is the key problem of theoretical ecology. The paradox consists in the contradiction between the competitive exclusion principle and the observed biodiversity. The principle is important as the basis for ecological theory. On a relatively simple model we show a mechanism of indefinite coexistence of complete competitors which violates the known formulations of the competitive exclusion principle. This mechanism is based on timely recovery of limiting resources and their spatio-temporal allocation between competitors. Because of limitations of the black-box modeling there was a problem to formulate the exclusion principle correctly. Our white-box multiscale model of two-species competition is based on logical deterministic individual-based cellular automata. This approach provides an automatic deductive inference on the basis of a system of axioms, and gives a direct insight into mechanisms of the studied system. It is one of the most promising methods of artificial intelligence. We reformulate and generalize the competitive exclusion principle and explain why this formulation provides a solution of the biodiversity paradox. In addition, we propose a principle of competitive coexistence.
机译:生物多样性悖论是理论生态学的关键问题。矛盾在于竞争排斥原则与观察到的生物多样性之间的矛盾。该原理作为生态学理论的基础很重要。在一个相对简单的模型中,我们显示了完全竞争者无限期并存的机制,这违反了竞争排斥原则的已知公式。该机制基于及时恢复限制资源及其在竞争者之间的时空分配。由于黑匣子建模的局限性,因此存在正确制定排除原则的问题。我们的两种物种竞争的白盒多尺度模型基于逻辑确定性基于个体的细胞自动机。这种方法在公理系统的基础上提供了一种自动演绎推理,并直接了解了所研究系统的机理。它是最有前途的人工智能方法之一。我们重新制定和概括了竞争排斥原则,并解释了为什么这种表述提供了解决生物多样性悖论的方法。此外,我们提出了竞争共存的原则。

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