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Mobile cloud networking for efficient energy management in smart grid cyber-physical systems

机译:移动云网络可在智能电网网络物理系统中实现高效的能源管理

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摘要

Advances in mobile computing along with recent emerging technologies such as the smart grid and cloud computing are paving the way for a wide range of mobile cloud networking services and applications. In the smart grid cyber-physical environment, smart mobile devices communicate with the smart grid ecosystem via the control center, which plays a central role in selling and buying energy from smart grid users. The smart grid cyber-physical system can be viewed as a hierarchical architecture made up of a cyber plane and a physical plane. All smart devices reside in the physical plane, whereas in the cyber plane computing and communication resources are provided by the cloud server-based control center in smart grid. We propose an intelligent, energy-efficient scheme in smart grid cyber-physical systems using coalition-based game theory. All smart devices located at the physical plane are taken as the players in the coalition game. We developed a payoff function for each player in the coalition game based on transmission of information and service delays using conditional entropy for various smart devices at the physical plane. We analyzed the existence of the Nash equilibrium with incomplete information using various actions performed by the players in the game in the proposed scheme. Finally, we evaluated the performance of our proposed solution using performance evaluation metrics such as energy difference, overhead generated, and delay incurred.
机译:移动计算的进步以及诸如智能电网和云计算之类的新兴技术正在为广泛的移动云网络服务和应用铺平道路。在智能电网的网络物理环境中,智能移动设备通过控制中心与智能电网生态系统进行通信,该控制中心在向智能电网用户买卖能源方面发挥着核心作用。智能电网网络物理系统可以看作是由网络平面和物理平面组成的分层体系结构。所有智能设备都位于物理平面中,而在网络平面中,计算和通信资源由智能网格中基于云服务器的控制中心提供。我们使用基于联盟的博弈论在智能电网网络物理系统中提出了一种智能,节能的方案。位于物理平面上的所有智能设备均被视为联盟游戏中的玩家。我们基于物理平面上各种智能设备的条件熵,根据信息和服务延迟的传输为联盟游戏中的每个玩家开发了回报功能。我们使用拟议方案中玩家在游戏中执行的各种动作来分析具有不完整信息的纳什均衡的存在。最后,我们使用性能评估指标(例如能量差,产生的开销和发生的延迟)评估了我们提出的解决方案的性能。

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