Comparison of publish-subscribe network architectures for Smart Grid wide area monitoring

K. Kumar, M. Radhakrishnan, K. Sivalingam, D. Seetharam, M. Karthick
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引用次数: 16

Abstract

The future of the electrical power grid is the “Smart Grid” that uses a combination of digital sensing and actuation technologies. For example, Phasor Measurement Units (PMU) can be used to accurately measure the quality of power and help improve the reliability and efficiency of the grid. A specially designed network architecture is required to transport the PMU data to the data processing systems. The NASPInet framework specifies requirements (such as latency and reliability) to be met for different types of applications that will process the PMU data. The objective of this paper is to analyze suitable network architectures that can meet all the requirements of NASPInet and thus be useful for the Smart Grid. An architecture based on the publish-subscribe paradigm and a distributed hash table technique for storing meta-data about the publishers is presented. This architecture is compared to GridStat, PSIRP and Source Specific Multicast approaches, using discrete event simulation models based on OMNET++. The delay performance of these systems has been studied for different network parameters.
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面向智能电网广域监控的发布-订阅网络体系结构比较
电网的未来是使用数字传感和驱动技术相结合的“智能电网”。例如,相量测量单元(PMU)可用于准确测量电力质量,有助于提高电网的可靠性和效率。将PMU数据传输到数据处理系统需要特殊设计的网络体系结构。NASPInet框架为处理PMU数据的不同类型的应用程序指定了需要满足的需求(比如延迟和可靠性)。本文的目的是分析合适的网络架构,可以满足NASPInet的所有要求,从而对智能电网有用。提出了一种基于发布-订阅范式的体系结构和用于存储发布者元数据的分布式哈希表技术。使用基于omnet++的离散事件仿真模型,将该体系结构与GridStat、PSIRP和特定源组播方法进行了比较。研究了这些系统在不同网络参数下的延迟性能。
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