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Titan TTCN-3 Based Test Framework for Resource Constrained Systems

机译:基于Titan TTCN-3资源受限系统的测试框架

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Wireless communication systems more and more become part of our daily live. Especially with the Internet of Things (IoT) the overall connectivity increases rapidly since everyday objects become part of the global network. For this purpose several new wireless protocols have arisen, whereas 6LoWPAN (IPv6 over Low power Wireless Personal Area Networks) can be seen as one of the most important protocols within this sector. Originally designed on top of the IEEE802.15.4 standard it is a subject to various adaptions that will allow to use 6LoWPAN over different technologies; e.g. DECT Ultra Low Energy (ULE). Although this high connectivity offers a lot of new possibilities, there are several requirements and pitfalls coming along with such new systems. With an increasing number of connected devices the interoperability between different providers is one of the biggest challenges, which makes it necessary to verify the functionality and stability of the devices and the network. Therefore testing becomes one of the key components that decides on success or failure of such a system. Although there are several protocol implementations commonly available; e.g., for IoT based systems, there is still a lack of according tools and environments as well as for functional and conformance testing. This article describes the architecture and functioning of the proposed test framework based on Testing and Test Control Notation Version 3 (TTCN-3) for 6LoWPAN over ULE networks.
机译:无线通信系统越来越多,成为我们日常生活的一部分。特别是随着物联网(物联网),由于日常对象成为全球网络的一部分,整体连接迅速增加。为此目的,出现了几种新的无线协议,而6LowPan(低功率无线个人区域网络上的IPv6)可以被视为该扇区中最重要的协议之一。最初设计在IEEE802.15.4标准之上,它是各种适应的主题,允许在不同的技术上使用6LowPan;例如Dect Ultra低能量(ULE)。虽然这种高连接性提供了很多新的可能性,但这些新系统都有几种要求和陷阱。随着越来越多的连接设备,不同提供商之间的互操作性是最大的挑战之一,这使得有必要验证设备和网络的功能和稳定性。因此,测试成为决定这种系统的成功或失败的关键组件之一。虽然有几种协议实现常用;例如,对于基于某种机构的系统,仍然缺乏工具和环境以及功能和一致性测试。本文介绍了基于测试和测试控制符号3(TTCN-3)的建议测试框架的架构和运作,用于6LowPAN上的ULE网络。

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