As the smart home is the end-point power consumer, it is the major part to be controlled in a smart micro grid. There are so many challenges for implementing a smart home system in which the most important ones are th...As the smart home is the end-point power consumer, it is the major part to be controlled in a smart micro grid. There are so many challenges for implementing a smart home system in which the most important ones are the cost and simplicity of the implementation method. It is clear that the major share of the total cost is referred to the internal controlling system network; although there are too many methods proposed but still there is not any satisfying method at the consumers' point of view. In this paper, a novel solution for this demand is proposed, which not only minimizes the implementation cost, but also provides a high level of reliability and simplicity of operation; feasibility, extendibility, and flexibility are other leading properties of the design.展开更多
文章详细探讨基于近场通信(Near Field Communication,NFC)的配电网分布式无功控制系统的设计与实现,包括系统的架构设计、NFC技术的集成方式、实时数据采集与传输技术以及无功控制的算法和逻辑。同时,文章涵盖系统的测试方法和性能评估...文章详细探讨基于近场通信(Near Field Communication,NFC)的配电网分布式无功控制系统的设计与实现,包括系统的架构设计、NFC技术的集成方式、实时数据采集与传输技术以及无功控制的算法和逻辑。同时,文章涵盖系统的测试方法和性能评估,旨在展示NFC技术如何在确保配电网稳定性和提升能效方面发挥关键作用。通过对这一创新系统设计的综合分析,为配电网的无功功率管理提供一种新颖的技术途径,有望为未来电网智能化升级提供理论与实践参考。展开更多
文摘As the smart home is the end-point power consumer, it is the major part to be controlled in a smart micro grid. There are so many challenges for implementing a smart home system in which the most important ones are the cost and simplicity of the implementation method. It is clear that the major share of the total cost is referred to the internal controlling system network; although there are too many methods proposed but still there is not any satisfying method at the consumers' point of view. In this paper, a novel solution for this demand is proposed, which not only minimizes the implementation cost, but also provides a high level of reliability and simplicity of operation; feasibility, extendibility, and flexibility are other leading properties of the design.
文摘文章详细探讨基于近场通信(Near Field Communication,NFC)的配电网分布式无功控制系统的设计与实现,包括系统的架构设计、NFC技术的集成方式、实时数据采集与传输技术以及无功控制的算法和逻辑。同时,文章涵盖系统的测试方法和性能评估,旨在展示NFC技术如何在确保配电网稳定性和提升能效方面发挥关键作用。通过对这一创新系统设计的综合分析,为配电网的无功功率管理提供一种新颖的技术途径,有望为未来电网智能化升级提供理论与实践参考。