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Work-in-progress: Industry-friendly and native-IP wireless communications for building automation

机译:进行中:适用于楼宇自动化的行业友好和本机IP无线通信

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Wireless communication technologies for building automation (BA) systems are evolving towards native IP connectivity. More Industry Friendly and Native-IP Wireless Building Automation (IF-NIP WiBA) is needed to address the concerns of the entire value chain of the BA industry including the security, reliability, latency, power consumption, engineering process, and independency. In this paper, a hybrid architecture which can seamless support both Cloud-Based Mode and Stand-Alone Mode is introduced based on the 6LoWPAN WSAN (wireless sensor and actuator networks) technology and verified by a prototyping minimal system. The preliminary experimental results suggest that, 1) both the WSAN and Cloud communications can meet the requirements of non-real-time application of BA systems, 2) the reliability and latency of the WSAN communications is not sufficient for soft real-time applications but it is not far away to meet such requirements by sufficient optimization in the near future, 3) the reliability of Cloud is pretty sufficient but the latency is quite far from the requirement of soft real-time applications. To optimize the latency and power consumption in WSAN, design industrial friendly engineering process, and investigate security mechanisms should be the main focus in the future.
机译:用于楼宇自动化(BA)系统的无线通信技术正在向本地IP连接发展。需要更行业友好的Native IP无线楼宇自动化(IF-NIP WiBA)解决BA行业整个价值链的问题,包括安全性,可靠性,延迟,功耗,工程流程和独立性。在本文中,基于6LoWPAN WSAN(无线传感器和执行器网络)技术,引入了一种可以无缝支持基于云的模式和独立模式的混合体系结构,并通过原型最小系统进行了验证。初步的实验结果表明,1)WSAN和云通信都可以满足BA系统非实时应用的需求; 2)WSAN通信的可靠性和延迟不足以用于软实时应用,但是在不久的将来通过充分的优化来满足这些要求并不遥不可及; 3)Cloud的可靠性已经足够,但是延迟与软实时应用程序的要求相差很远。为了优化WSAN中的延迟和功耗,设计工业友好型工程流程并研究安全机制应成为未来的主要重点。

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