Vincent Julian
School of Engineering and Physical Science, Heriot-Watt University, Edinburgh EH14 4AS, UK.
Biomimetics (Basel). 2023 Jun 17;8(2):265. doi: 10.3390/biomimetics8020265.
Our knowledge of physics and chemistry is relatively well defined. Results from that knowledge are predictable as, largely, are those of their technical offspring such as electrical, chemical, mechanical and civil engineering. By contrast, biology is relatively unconstrained and unpredictable. A factor common to all areas is the trade-off, which provides a means of defining and quantifying a problem and, ideally, its solution. In order to understand the anatomy of the trade-off and how to handle it, its development (as the dialectic) is tracked from Hegel and Marx to its implementation as dialectical materialism in Russian philosophy and TRIZ, the Theory of Invention. With the ready availability of mathematical techniques, such as multi-objective analysis and the Pareto set, the trade-off is well-adapted to bridging the gaps between the quantified and the unquantifiable, allowing modelling and the transfer of concepts by analogy. It is thus an ideal tool for biomimetics. An intracranial endoscope can be derived with little change from the egg-laying tube of a wood wasp. More complex transfers become available as the technique is developed. Most important, as more trade-offs are analyzed, their results are stored to be used again in the solution of problems. There is no other system in biomimetics which can do this.
我们对物理和化学的认知相对明确。基于这些知识得出的结果具有可预测性,很大程度上,其技术衍生领域(如电气、化学、机械和土木工程)的结果也是如此。相比之下,生物学相对不受约束且不可预测。所有领域共有的一个因素是权衡,它提供了一种定义和量化问题以及理想情况下其解决方案的方法。为了理解权衡的剖析以及如何处理它,我们追溯了其发展历程(作为辩证法),从黑格尔和马克思到其在俄罗斯哲学中作为辩证唯物主义的应用以及发明理论——萃智(TRIZ)。随着多目标分析和帕累托集等数学技术的 readily availability(此处可能有误,若为“readily available”,意为“ readily可用”),权衡非常适合弥合量化与非量化之间的差距,允许通过类比进行建模和概念转移。因此,它是仿生学的理想工具。一种颅内内窥镜可以在几乎不做改变的情况下从木蜂的产卵管衍生而来。随着该技术的发展,可以实现更复杂的转移。最重要的是,随着更多权衡被分析,其结果被存储起来以便在解决问题时再次使用。在仿生学中没有其他系统能做到这一点。