By Siddhartha Kumar Khaitan, James D. McCalley, Chen Ching Liu
This publication files contemporary advances within the box of modeling, simulation, keep watch over, safety and reliability of Cyber- actual platforms (CPS) in energy grids. the purpose of this publication is to assist the reader achieve insights into operating of CPSs and comprehend their capability in reworking the ability grids of the next day. This ebook may be beneficial for all those people who are drawn to layout of cyber-physical structures, be they scholars or researchers in energy platforms, CPS modeling software program builders, technical advertising and marketing execs and company policy-makers.
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Extra resources for Cyber Physical Systems Approach to Smart Electric Power Grid
Therefore, mode switch condition from m1 (normal mode) to m2 (user override mode) is tested every 10 seconds. 6 Conclusion Early smart grid applications have been developed in an ad-hoc manner without any underlying framework, resulting in a set of incompatible and inflexible smart grid technologies and standards. However, in the past, various engineering domains have successfully employed the concept of a reference model to enable clear communication among stakeholders and to serve as the underlying framework for the development of a consistent set of standards and technologies for that domain.
Moreover, the proposed reference model is generic enough to be reconciled with the existing smart grid standards and technologies, but still provides valuable guidance for the evolution of these standards and technologies into an integrated and consistent set of future smart grid standards and technologies. In this chapter, we explain various elements of the proposed reference model and present typical development steps of a smart grid application according to the A Service-Oriented, Cyber-Physical Reference Model for Smart Grid 27 proposed reference model.
A platform model that describes the smart grid platform as a set of computing nodes, communication links, sensors, actuators, and power system entities. 3. A set of algorithms that achieve resource-aware service deployment, QoS-aware service discovery, and QoS-aware service monitoring. The proposed reference model is capable of describing relevant characteristics of a wide set of smart grid scenarios as it has a sufficiently rich set of features. Moreover, the proposed reference model is generic enough to be reconciled with the existing smart grid standards and technologies, but still provides valuable guidance for the evolution of these standards and technologies into an integrated and consistent set of future smart grid standards and technologies.