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Performance of TCP and UDP over Narrowband Internet of Things (NB-IoT)

机译:窄带物联网(NB-IoT)上TCP和UDP的性能

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NB-IoT extends LTE by low power WAN functionality for IoT applications. Strengths of the standard lie in the already existing infrastructure, an ubiquitous availability, and the low power consumption and costs. NB-IoT supports both TCP and UDP as transport protocols. However, TCP is sensitive to delays and packet losses during data transmission. This affects the commonly used messaging protocol MQTT, as it uses TCP as its underlying transport protocol. In this paper the role of UDP as a possible transport layer protocol for NB-IoT in conjunction with MQTT-SN is discussed and compared to TCP with standard MQTT. Using TCP for a typical NB-IoT application resulted in a packet loss of about 90%, whereas UDP achieved a packet loss of only around 3%. Additionally, the current state of NB-IoT installations in Germany and their functionality are evaluated. Coverage, signal quality and power saving functionality are monitored and analyzed as well.
机译:NB-IoT通过低功耗WAN功能为IoT应用扩展了LTE。该标准的优势在于已经存在的基础架构,无处不在的可用性以及低功耗和成本。 NB-IoT同时支持TCP和UDP作为传输协议。但是,TCP对数据传输期间的延迟和数据包丢失很敏感。这影响了常用的消息传递协议MQTT,因为它使用TCP作为其基础传输协议。本文讨论了UDP作为与MQTT-SN结合的NB-IoT可能的传输层协议的角色,并将其与具有标准MQTT的TCP进行了比较。在典型的NB-IoT应用中使用TCP会导致大约90%的数据包丢失,而UDP只能实现大约3%的数据包丢失。此外,还将评估德国NB-IoT安装的当前状态及其功能。覆盖范围,信号质量和省电功能也受到监视和分析。

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