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Enabling Heterogeneous Connectivity in Internet of Things: A Time-Reversal Approach

机译:在物联网中实现异构连接:时间逆转方法

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With the pervasive presence of massive smart devices, Internet of Things (IoT) is enabled by wireless communication technology. The devices in IoT usually have very diverse bandwidth capabilities and thus in need of many communication standards. To facilitate communications between these heterogeneous bandwidths of devices, middlewares have often been developed. However, they are often not suitable for resource-constrained scenario due to their complexity. It leads us to ask is there a unified approach that can support the communication between the devices with heterogeneous bandwidths? In this paper, we propose the time-reversal (TR) approach to answer such a question. A novel TR-based heterogeneous system is proposed, which can address the bandwidth heterogeneity and maintain the benefit of TR at the same time. Although there is an increase in complexity, it concentrates mostly on the digital processing of the access point (AP), which can be easily handled with more powerful digital signal processor (DSP). Since there is no middleware in the proposed system and the additional physical layer complexity concentrates on the AP side, the proposed TR approach better satisfies the requirement of low complexity and energy efficiency for terminal devices (TDs). We further conduct the theoretical analysis of the interference in the proposed system. Simulations show the bit-error-rate (BER) performance can be significantly improved with appropriate spectrum allocation. Finally, Smart Homes is chosen as an example of IoT applications to evaluate the performance of the proposed system.
机译:随着大规模智能设备的普及,无线通信技术实现了物联网(IoT)。物联网中的设备通常具有非常广泛的带宽功能,因此需要许多通信标准。为了促进设备的这些异构带宽之间的通信,经常开发中间件。但是,由于它们的复杂性,它们通常不适合资源受限的情况。这使我们提出疑问,是否存在一种统一的方法可以支持具有异构带宽的设备之间的通信?在本文中,我们提出了时间逆转(TR)的方法来回答这个问题。提出了一种新颖的基于TR的异构系统,该系统可以解决带宽异构性,同时保持TR的优势。尽管复杂度有所增加,但它主要集中在接入点(AP)的数字处理上,可以使用功能更强大的数字信号处理器(DSP)轻松进行处理。由于建议的系统中没有中间件,并且额外的物理层复杂度集中在AP端,因此建议的TR方法可以更好地满足终端设备(TD)的低复杂度和能效要求。我们进一步对提出的系统中的干扰进行了理论分析。仿真表明,通过适当的频谱分配,可以显着提高误码率(BER)性能。最后,选择智能家居作为物联网应用的示例,以评估所提议系统的性能。

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