Experimental investigation of radio performance in wireless sensor networks

Matthew Holland, Ryan G. Aures, W. Heinzelman
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引用次数: 108

Abstract

Testing of the range and radiation pattern of wireless sensors is often not fully documented. In this paper, we perform a full characterization of the Tmote Sky motes from MoteIV Corporation. Packet yield, RSSI, and LQI are measured as a function of distance, angle, and transmit power, while taking environmental conditions into consideration. Wireless sensors have a very limited energy source, and the ability to make nodes last as long as possible can be greatly affected by their placement in the network. We aim to present a set of guidelines for setting up Wireless Sensor Networks that will enable them to achieve their QoS goals and maximum lifetime. Our results show that the radio antenna pattern on the Tmote Sky devices is not truly omnidirectional. RSSI does appear to degrade as an exponential function of distance, and LQI appears to be a very reliable indication of packet yield. The most significant result we have found is that transmitting and receiving node heights have a major impact on link performance. We have also found that under any circumstance, it is difficult to support data rates higher than 30 kbps with the current radio stack in TinyOS 1.x. Experimental data is analyzed and the importance of these results is discussed in depth.
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无线传感器网络中无线电性能的实验研究
无线传感器的范围和辐射模式的测试通常没有完整的文件记录。在本文中,我们对MoteIV公司的Tmote Sky粒子进行了全面的表征。在考虑环境条件的情况下,包产量、RSSI和LQI是距离、角度和发射功率的函数。无线传感器的能量来源非常有限,使节点尽可能长时间工作的能力会受到它们在网络中的位置的极大影响。我们的目标是提出一套建立无线传感器网络的指导方针,使它们能够实现其QoS目标和最大寿命。我们的结果表明,远程天空设备上的无线电天线方向图并不是真正的全向的。RSSI确实表现为距离的指数函数,而LQI表现为非常可靠的包产量指示。我们发现的最重要的结果是,发送和接收节点高度对链路性能有重大影响。我们还发现,在任何情况下,TinyOS 1.x中当前的无线电堆栈都很难支持高于30kbps的数据速率。对实验数据进行了分析,并对这些结果的重要性进行了深入讨论。
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