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Design and Analysis of a DCO-Based Phase-Tracking RF Receiver for IoT Applications

机译:面向物联网应用的基于DCO的相位跟踪RF接收器的设计和分析

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This paper presents an energy-/area-efficient digitally controlled oscillator (DCO)-based phase-tracking Receiver for Internet-of-Things (IoT) applications. The RX leverages the constant-envelope nature of frequency shift keying modulation adopted in many IoT protocols, e.g., IEEE802.15.4 and Bluetooth low energy (BLE), to enhance the energy efficiency and to reduce the chip area. The proposed RX, with the DCO acting as a local oscillator (LO) and binary frequency feedback, promotes low-power and low-voltage circuit design, while a data-aided carrier-frequency tracking ensures the received carrier stability without a power-/area-hungry phase-locked loop (PLL). The RX avoids a compromise between a power-hungry I/Q LO generation and the image rejection in traditional RXs. An equivalent mathematical model is further presented, which helps to analyze and optimize the frequency response of the proposed RX. Fabricated in 40-nm CMOS, the RX consumes 1.55 mW from a 0.85-V supply and has a -87-dBm sensitivity at 2 Mb/s, which leads to a 0.77-nJ/b energy efficiency and 178-dB RX sensitivity FoM.
机译:本文介绍了一种适用于物联网(IoT)应用的基于能量/区域效率的数控振荡器(DCO)的相位跟踪接收器。 RX利用了许多物联网协议(例如IEEE802.15.4和低功耗蓝牙(BLE))中采用的频移键控调制的恒定包络特性,以提高能效并减小芯片面积。拟议中的RX通过DCO作为本机振荡器(LO)和二进制频率反馈,促进了低功耗和低压电路设计,而数据辅助的载波频率跟踪可确保接收到的载波稳定性,而无需功率/饥饿的锁相环(PLL)。 RX避免了传统RX中耗电的I / Q LO生成和镜像抑制之间的折衷。进一步提出了一个等效的数学模型,该模型有助于分析和优化建议的RX的频率响应。 RX采用40nm CMOS制造,在0.85V电源下消耗1.55 mW的功率,在2 Mb / s时具有-87dBm的灵敏度,这导致0.77nJ / b的能量效率和178dB的RX灵敏度FoM 。

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