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System-level characterization of single-chip radios for wireless sensor network applications

机译:无线传感器网络应用的单芯片无线电系统级别

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We tested three single-chip ISM-band radio transceivers with an eye toward communication system-level performance in wireless sensor network applications. We compared the performance of an older-generation chip (Texas Instruments TRF6900A) with two recent chips (Texas Instruments CC1100 and Analog Devices ADF7020). To understand packet-level sensitivity and the potential gains of forward error-control coding, we evaluated the packet error rate and bit error rate statistics as a function of received signal power at two data rates. We characterized features-automatic frequency control, digital received signal strength indication (RSSI), and digital transmit power control-of the two newer chips. We also modeled and evaluated their current consumption and energy efficiency (in terms of per-bit energy use). We found that the new-generation radio chips have significantly higher integration and overall performance, and that radio chip selection for wireless sensor node design is application-dependent. Our work can be used as a design pattern for further testing of additional and future radios for wireless sensor network nodes.
机译:我们测试了三个单芯片ISM频段无线电收发器,眼睛是在无线传感器网络应用中通信系统级性能的。我们将旧的芯片(TRF6900A)的性能与最近的两个芯片进行了比较(Texas Instruments CC1100和Analog Devices ADF7020)。要了解数据包级灵敏度和前向误差控制编码的潜在增益,我们将分组错误率和误码率统计评估为两个数据速率的接收信号功率的函数。我们以自动频率控制,数字接收信号强度指示(RSSI)和数字传输功率控制 - 两个较新芯片的特点。我们还建模并评估了他们目前的消费和能源效率(根据每位能量使用)。我们发现,新一代无线电芯片具有显着更高的集成和整体性能,而无线传感器节点设计的无线电芯片选择是应用的。我们的工作可用作设计模式,以进一步测试无线传感器网络节点的附加和未来无线电。

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