The reception of the resilience concept in the energy discourse, and genesis of the theory of resilient energy system design

Hans Dieter Hellige
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Abstract

The concept of resilience in energy systems and the derived principle of resilient energy system design are prominent results of metaphorical thinking in technology. They combine two metaphorical processes: the transfer of biological/ecological system models to energy systems and the transfer of less vulnerable decentralized information/communication network architectures to power infrastructure networks. This chapter reconstructs the roots and the development steps of the concept of resilience in energy systems, starting in the alternative energy discourse in the early 1970s and ending in the first elaborated theory of resilient energy system design by Amory Lovins in 1982. The historical discourse analysis goes into detail about: • transfers of metaphors and guiding concepts in energy and communication infrastructure systems; • countercultural debates about small distributed, self-organized soft energy systems condensed in Schumacher’s principle of ‘appropriate technology’; • Lovins’s introduction of entropy law, thermal carrying capacity of the Earth, ecodisaster research and the ‘biological metaphor’ into the discourse stimulating the first resilient energy system design debate in late 1970s; • the first integration of the ‘energy internet’ metaphor into the resilience discourse: The ‘Power Systems 2000’ scenario of the Homeostatic Control Group; and, finally • the multidisciplinary synthesis of the resilient energy system design-debate: the distributed computing-inspired study Brittle Power by Lovins and Lovins. As a summary of the early history of the resilience debate in the energy sector, it can be concluded how stimulating the ecological resilience concept has been for this discourse, and analogies with bio-ecological systems do not suffice for the resilience assessment and design of energy systems. The theory of resilient socio-technological systems design therefore requires resilience concepts that are emancipated from natural analogies and that are based on metaphors corresponding with the specific principles, structures and social architecture of the technology in question.
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弹性概念在能源话语中的接受,以及弹性能源系统设计理论的起源
能源系统弹性的概念及其衍生的弹性能源系统设计原则是隐喻思维在技术领域的突出成果。他们结合了两个隐喻过程:将生物/生态系统模型转移到能源系统,以及将不那么脆弱的分散信息/通信网络架构转移到电力基础设施网络。本章重构能源系统弹性概念的根源和发展步骤,从20世纪70年代早期的替代能源话语开始,到1982年Amory Lovins首次阐述的弹性能源系统设计理论结束。历史话语分析详细阐述了:•隐喻和指导概念在能源和通信基础设施系统中的转移;•关于小型分布式、自组织软能源系统的反文化辩论,凝聚在舒马赫的“适当技术”原则中;•Lovins将熵定律、地球的热承载能力、生态灾害研究和“生物隐喻”引入到话语中,引发了20世纪70年代末的第一次弹性能源系统设计辩论;•首次将“能源互联网”比喻整合到弹性话语中:稳态控制组的“电力系统2000”情景;最后,•弹性能源系统设计的多学科综合辩论:由Lovins和Lovins启发的分布式计算研究脆性电力。作为对能源部门弹性辩论早期历史的总结,可以得出结论,生态弹性概念对这一论述的刺激程度如何,与生物生态系统的类比不足以用于能源系统的弹性评估和设计。因此,弹性社会技术系统设计理论需要从自然类比中解放出来的弹性概念,这些概念基于与相关技术的具体原则、结构和社会架构相对应的隐喻。
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