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Performance analysis of hybrid multiple radio IoT architecture for ubiquitous connectivity

机译:Hybriquity Conceptivity混合多电台IOT架构的性能分析

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In this study, we propose a novel physical layer architecture which is a hybrid of IEEE 802.15.4 and IEEE 802.11b for providing ubiquitous connectivity in IoT remote sensing platforms. The proposed architecture multiplexes the commonly available functional units of IEEE 802.15.4 and IEEE 802.11b, thereby achieving significant area and power savings. In order to achieve this, we modified the existing PHY layer to incorporate QPSK and RC pulse shaping for both the radios during the process of modulation. Performance analysis shows that the proposed architecture resulted in an area savings of 17.2 % and power savings of 17.8 % compared to traditional architecture without any performance degradation. In addition the CMOS transistors count is reduced by 6592, which is a significant reduction in complexity when compared to traditional independent radio's architectures.
机译:在这项研究中,我们提出了一种新的物理层架构,其是IEEE 802.15.4的混合动力和IEEE 802.11b,用于在物联网遥感平台中提供普遍的连接性。所提出的架构多用IEEE 802.15.4和IEEE 802.11b的常用功能单元,从而实现了显着的区域和节能。为了实现这一目标,我们修改了现有的PHY层以在调制过程中加入QPSK和RC脉冲整形。绩效分析表明,与传统架构相比,拟议架构导致面积节省17.2%,节能为17.2%,储蓄为17.8%,没有任何性能下降。此外,与传统的独立无线电架构相比,CMOS晶体管计数减少了6592,这是复杂性的显着降低。

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