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Cyber-Physical Systems: A New Paradigm for Energy Technology Development

机译:网络物理系统:能源技术开发的新范例

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Energy based Cyber-physical systems (CPS) find their greatest popularity in smart grid applications, where a complex computational algorithm imparts "intelligence" to a supervisory control and data acquisition (SCADA) system used for balancing load distributions. In contrast to this static application of CPS technology, research conducted jointly by U.S. Department of Energy's, National Energy Technology Laboratory (NETL) and Ames Laboratory proposes a new paradigm in which CPS is used as a core technology in energy system development, design, and deployment. The goal is to speed up the development and deployment of advanced concept power plants, reduce the cost and thereby encouraging private and public investment, and substantially reduce the risk of failure. The current technology development paradigm generally starts with models and bench-scale tests, leading to a pilot plant demonstration of the technology before construction of a commercial system. The concept proposed by NETL and Ames incorporates CPS before and during the construction of a pilot plant-arguably the highest risk part of implementing new energy technologies-and then extends the cyber physical infrastructure to the full-scale plant creating a fully functional and coupled digital twin. The creation of a cyber-physical platform as a part of the advanced energy system design and deployment has the potential to enable the "customization" of energy systems to meet local needs and resources. This will reduce cost and environmental impact of energy production and use. Examples of how the technology development process can be changed in the energy sector will be discussed using fuel cell turbine hybrids as an example.
机译:基于能源的网络物理系统(CPS)在智能电网应用中得到了最大的普及,在智能电网应用中,复杂的计算算法将“智能”赋予用于平衡负载分配的监督控制和数据采集(SCADA)系统。与CPS技术的静态应用相反,美国能源部,美国国家能源技术实验室(NETL)和Ames实验室联合进行的研究提出了一种新的范例,其中CPS被用作能源系统开发,设计和开发的核心技术。部署。目标是加快先进概念电厂的开发和部署,降低成本,从而鼓励私人和公共投资,并大幅降低发生故障的风险。当前的技术开发范式通常从模型和工作台规模测试开始,从而导致在构建商业系统之前对该技术进行试点工厂演示。 NETL和Ames提出的概念在试点工厂的建设之前和期间将CPS纳入其中-可以说是实施新能源技术的最高风险部分-然后将网络物理基础架构扩展到全面的工厂,从而创建功能全面且耦合的数字双胞胎。作为高级能源系统设计和部署的一部分,创建网络物理平台具有使能源系统“定制”以满足本地需求和资源的潜力。这将减少能源生产和使用的成本和环境影响。将以燃料电池涡轮混合动力为例,讨论如何在能源领域改变技术开发过程的示例。

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