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Receiver Selectivity Limits on Bistatic Backscatter Range

机译:双站反向散射范围上的接收器选择性极限

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Backscatter communication has been a popular choice in low-power/battery-free sensor nodes development. However, the effect of RF source to receiver distance on the operating range of this communication system has not been modeled accurately. In this paper, we propose a model for a bistatic backscatter system coverage map based on the receiver selectivity, receiver sensitivity, and geometric placement of the receiver, RF source, and the tag. To verify our proposed model and simulations, we perform an experiment using a low-cost commercial BLE receiver and a custom-designed BLE backscatter tag. We also show that the receiver selectivity might depend on the interference level, and present measurement results to signify how this dependence relates the system bit error rate to the RF excitation power.
机译:在低功耗/无电池传感器节点开发中,背向散射通信已成为一种流行的选择。但是,RF源到接收器距离对此通信系统的工作范围的影响尚未准确建模。在本文中,我们基于接收器的选择性,接收器的灵敏度以及接收器,RF源和标签的几何位置,提出了双基地反向散射系统覆盖图的模型。为了验证我们提出的模型和仿真,我们使用低成本的商用BLE接收器和定制设计的BLE反向散射标签进行了实验。我们还表明,接收器的选择性可能取决于干扰水平,并给出测量结果以表明这种依赖性如何将系统误码率与RF激励功率相关联。

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