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Discontinuous Phenomena of Holonic Design: Functional Completeness Versus Solution Completeness

机译:完整设计的不连续现象:功能完整性与解决方案完整性

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Sustainable development should offer a holistic way of resolution of many sharp objective conflicting goals in design. In this context, the question about the stability of models can be raised. The design can be seen as a qualitative discontinuity phenomenon in a continuous background. Understanding and controlling the discontinuity is therefore an important subject of the design research. This paper uses the concepts of the holon and the attractor to analyze the discontinuity. A multi-scale design model is proposed. The proposed multi-scale model is driven by two conflicting drives: (a) completeness of functions and design parameters and (b) discrimination of functions and design parameters. Completeness has been seen as the degree to which a function or a design parameter is recognized to be fully satisfied in a holon. Discrimination can be seen as the degree to which a function (respectively design parameter) refuses to recognize design parameters of other holons. By employing creation of holons as an indicator of the holon's state, we attempt to learn how the holon's behaviour varies as function of completeness and discrimination. Thus two control parameters: (a) completeness of design parameters and (b) completeness of functions, have been defined. The behavior of the holon design defines the output. Then, the discovered possible states of behavior of holon design are: a) impossibility state characterized by the impossibility of holon creation; b) creation-destruction state characterized sometimes by the creation of holons and sometimes the destruction of holons; c) creation-development state characterized by natural creation and development of the holon. The model shows that design is not an orderly and well behaved phenomenon. Design is full of sudden transformations and unpredictable divergences. The task of modeling these problems and relating them to each other would be a challenging endeavor which requires more powerful theory.
机译:可持续发展应提供一种解决设计中许多尖锐客观冲突目标的整体方法。在这种情况下,可以提出有关模型稳定性的问题。该设计可以看作是连续背景下的定性不连续现象。因此,了解和控制不连续性是设计研究的重要课题。本文使用holon和吸引子的概念来分析不连续性。提出了一种多尺度设计模型。所提出的多尺度模型由两个相互矛盾的驱动力驱动:(a)功能和设计参数的完整性以及(b)功能和设计参数的区分。完整性被认为是功能或设计参数被认为完全满足的程度。区分可以看作是功能(分别是设计参数)拒绝识别其他holon的设计参数的程度。通过采用全能子的产生来指示全能者的状态,我们试图了解全能者的行为是如何随着完整性和歧视性而变化的。因此,已经定义了两个控制参数:(a)设计参数的完整性和(b)功能的完整性。 holon设计的行为定义了输出。然后,发现的全息设计行为的可能状态为:a)以全息创建的不可能为特征的不可实现状态; b)创造-毁灭状态,其特征有时是形成瓜子,有时是破坏瓜子; c)创造-发展状态,其特征是自然创造和发展哈龙。该模型表明,设计不是有序且行为良好的现象。设计充满了突然的变化和不可预测的差异。对这些问题进行建模并将它们彼此关联的任务将是一项艰巨的任务,需要更强大的理论。

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