Cyber-Physical Model for the Internet of Energy Technology Testing

A. Voloshin, D. Serov, S. Vasilev
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引用次数: 1

Abstract

The key foothold for the economic leap is energy sphere. Despite the trend towards the gradual introduction of convergent technologies into production, the traditional raw material model remains the main development sector and at the same time one of the weaknesses of the economy. The global energy market is volatile and strongly influenced by the extraction of natural resources. It needs diversification. An alternative technology, independent of the actions of major players, an "airbag" could make it possible to maneuver quickly the available tools of the material and technical base. That also male possible to maintain the fuel and energy balance. Strategic plans provide for the implementation of initiatives that respond to external challenges for the Russian energy sector. Such as worthy global market competition. These plans also respond to internal challenges like a deep comprehensive modernization of the fuel and energy complex. The cross-sectoral "roadmap" of Russia identifies priority areas for reducing losses in the electric power system (EPS) and increasing the reliability of its operation. Among these priorities the architecture of the Internet of energy or a decentralized EPS appears [2] .
能源互联网技术测试的网络物理模型
经济飞跃的关键立足点是能源领域。尽管有逐渐将汇合技术引入生产的趋势,但传统的原材料模式仍然是主要的发展部门,同时也是经济的弱点之一。全球能源市场不稳定,受到自然资源开采的强烈影响。它需要多样化。另一种技术,独立于主要参与者的行动,“安全气囊”可以使快速机动的材料和技术基础的可用工具成为可能。这也使男性有可能维持燃料和能量的平衡。战略计划规定实施应对俄罗斯能源部门外部挑战的举措。如值得全球市场竞争。这些计划也应对内部挑战,如燃料和能源综合体的深入全面现代化。俄罗斯的跨部门“路线图”确定了减少电力系统(EPS)损失和提高其运行可靠性的优先领域。在这些优先事项中,能源互联网的架构或分散的EPS显得很重要。
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