Maximizing Throughput in Deterministic and Low Latency Intra-Spacecraft UWB Sensor Networks

André Lübken, M. Drobczyk
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引用次数: 3

Abstract

Sensor networks based on Impulse-Radio Ultra Wideband (IR-UWB) technology have gained traction in fields where precise localization and robust communication links are required. In spacecraft and launchers these networks can be used to connect sensors to a central on board computer or to provide a communication link between the different subsystems. This contributes to a reduced cable harness, a key driver in overall spacecraft mass and design complexity. A problem in low power wireless sensor networks is the low data throughput. This paper presents a high data throughput extension to an 802.15.4 standard compliant MAC layer for Ultra Wideband to accommodate for e.g. payload data acquisition or software update distribution to the different subsystems. Where the previous protocol allowed for a mere 3 kB/s of throughput in a typical configuration, the augmented MAC layer now is able to achieve up to 341 kB/s.
确定性和低延迟航天器内UWB传感器网络的吞吐量最大化
基于脉冲无线电超宽带(IR-UWB)技术的传感器网络在需要精确定位和可靠通信链路的领域获得了广泛的应用。在航天器和发射装置中,这些网络可用于将传感器连接到中央机载计算机或在不同子系统之间提供通信链路。这有助于减少电缆线束,这是整体航天器质量和设计复杂性的关键驱动因素。低功耗无线传感器网络存在的一个问题是数据吞吐量低。本文提出了一个高数据吞吐量扩展到802.15.4标准兼容的超宽带MAC层,以适应例如有效载荷数据采集或软件更新分发到不同的子系统。以前的协议在典型配置中仅允许3 kB/s的吞吐量,而增强的MAC层现在能够达到341 kB/s。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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