Optimum Design Parameters for Ultra-Low-Power RF Transceivers in Wireless Sensor Networks

Mhd. Zaher Mahfouz, A. Meijerink, M. Bentum
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引用次数: 2

Abstract

In wireless sensor networks, the need for ultra- low power consuming nodes is one of the main motivations for research in such field. Because radio sections in sensor nodes contribute to a large extent to the overall power consumption, the focus of this study is on the RF transceiver. The aim is to reduce the average power consumption which depends significantly on the circuit architecture design, operating data rate, and duty cycle. In a symmetric communicating system, due to the tradeoff between transmitting power and receiver sensitivity on one hand, as well as between phase noise tolerance and power dissipation in local oscillators on the other hand, the design and operating parameters of the transceiver need to be determined from the perspective of the average power consumption. Therefore, in our study, as an initial step in system design, the optimum for instantaneous data rate, noise figure, and oscillator power budget are analytically determined. The analysis is carried out, taking into consideration an existing in-channel wideband interference, on two transceiver architectures: RF envelope detection and conventional heterodyne. The transceiver in both architectures employs on-off-keying modulation and duty cycling. The optimums are then calculated numerically based on design constants obtained from a frequently-cited RF envelope transceiver, indicating that an energy efficiency improvement of up to 5 dB can still be achieved.
无线传感器网络中超低功耗射频收发器的优化设计参数
在无线传感器网络中,对超低功耗节点的需求是该领域研究的主要动力之一。由于传感器节点中的无线电部分在很大程度上影响了整体功耗,因此本研究的重点是射频收发器。其目的是降低平均功耗,这在很大程度上取决于电路架构设计、操作数据速率和占空比。在对称通信系统中,由于一方面要权衡发射功率和接收灵敏度,另一方面要权衡本振的相位噪声容限和功耗,因此需要从平均功耗的角度来确定收发器的设计和工作参数。因此,在我们的研究中,作为系统设计的第一步,分析确定了瞬时数据速率,噪声系数和振荡器功率预算的最佳值。考虑到现有的信道内宽带干扰,对两种收发器架构进行了分析:射频包络检测和传统外差。这两种架构中的收发器都采用开-关键调制和占空比。然后根据从经常被引用的射频包络收发器获得的设计常数对最优值进行数值计算,表明仍然可以实现高达5db的能效改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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