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Impact of Transport Layer Protocols on Reliable Information Access in Smart Grids

机译:传输层协议对智能电网可靠信息接入的影响

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摘要

Time is critical for certain types of dynamic information (e.g. frequency control) in a smart grid scenario. The usefulness of such information depends upon the arrival within a specific frame of time, which in other case may not serve the purpose and effect controller’s performance. In this context, transport layer offers different levels of end-to-end communication services to the applications. For instance, TCP guarantees the transport of messages between two ends, however, at the cost of high end-to-end delays due to the retransmission mechanism. Whereas UDP offers minimum end-to-end delays at the cost of unreliable, best-effort data transportation service. The research question raised in this paper is thus, which is preferred for the delay-critical applications of smart grids, and to what degree of packet losses and round trip times, TCP is preferable to UDP and vice versa. The question is addressed by analyzing the performance of UDP and TCP over imperfect network conditions to show how the selection of transport layer protocol can dramatically affect controller’s performance. This analysis is based on a quality metric called mismatch probability that considers occurrence of events at grid assets as well as the information update strategy in one single metric which otherwise is not very intuitive and difficult to allow a similar useful comparison. Further, the analysis is concluded by providing a clear guide on the selection of the transport protocol to meet application requirements.
机译:在智能电网中,时间对于某些类型的动态信息(例如频率控制)至关重要。此类信息的有用性取决于在特定时间范围内的到达,在其他情况下,这可能无法达到目的并影响控制器的性能。在这种情况下,传输层为应用程序提供了不同级别的端到端通信服务。例如,TCP保证了消息在两端之间的传输,但是由于重传机制,端到端的延迟很高。 UDP以不可靠的尽力而为的数据传输服务为代价提供了最小的端到端延迟。因此,本文提出的研究问题对于智能电网的延迟关键型应用而言是首选,并且在何种程度的数据包丢失和往返时间上,TCP优于UDP,反之亦然。通过分析不完美网络条件下UDP和TCP的性能来解决该问题,以显示选择传输层协议如何能够极大地影响控制器的性能。该分析基于一种称为不匹配概率的质量度量,该度量考虑了网格资产处事件的发生以及单个度量中的信息更新策略,否则该度量不是很直观,很难进行类似的有用比较。此外,通过提供有关选择传输协议以满足应用要求的明确指南来结束分析。

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