使用软系统建模-系统动力学(SSM-SD)方法设计未来电磁冲突(EC)系统

R. Debnath, V.W. Karve
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引用次数: 0

摘要

大多数传统的电磁冲突方法本质上是“硬”的,它们假定电磁冲突是静态的、可预测的遭遇。这构成了迄今为止采用的EC设备的独立设计理念的基础,由此产生了各种EMI/EMC和MIL标准。这种简化方法在复杂的电磁环境中注定要失败。电子商务的最终目标是影响人,最好是决策者,而不是个别系统本身。在现代冲突中,普遍的电子商务环境的任何模型也依赖于不可量化的因素,如训练,士气和战斗的不确定性,这些因素有助于系统熵并强调人类决策者的重要性。因此,C/sup 2/W系统的EC子系统可以归类为人类活动系统(HAS)。作者提出了一种基于系统动力学(SD)方法,结合软系统方法论(SSM)的EC系统整体系统设计哲学,以实现未来电磁环境的现实表现。SSM-SD范式系统地发展,使用CATWOE模型,系统根定义(RD),控制论全息和系统动力学原型。
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Design of futuristic electromagnetic conflict (EC) systems using soft systems modelling-system dynamics (SSM-SD) methodology
Most conventional approaches to electromagnetic conflict (EC) are "hard" in nature, which presume EC to be a static, predictable encounter. This forms the basis of the standalone design philosophy for EC equipment adopted to date, from which flow various EMI/EMC and MIL standards. This reductionist approach is doomed to failure in complex electromagnetic environments. The ultimate objective of EC is to affect the man, preferably the decision maker, and not the individual system(s) per se. In modern conflict, any model of the prevalent EC environment also depends on non-quantifiable factors, such as training, morale and the uncertainties of combat, which contribute to system entropy and emphasize the importance of the human decision maker. The EC subsystem of a C/sup 2/W system can therefore be classified as a human activity system (HAS). The authors propose a holistic system design philosophy for EC systems, based on the system dynamics (SD) approach, incorporating the soft systems methodology (SSM), to achieve a realistic representation of the futuristic electromagnetic environment. The SSM-SD paradigm is systematically developed, using the CATWOE model, system root definition (RD), cybernetic holons and system dynamics archetypes.
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