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On Passive Wireless Sensors Based on Intermodulation Communication

机译:基于互调通信的无源无线传感器

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摘要

Wireless sensors are needed in applications where a wired connection is difficult. Wireless sensors are often equipped with a radio transceiver and a battery or another energy source. These energy sources may limit life-time or operation conditions, and increase the size and cost of wireless sensors.Wireless sensors can also be passive. Due to the limited energy available for these sensors, they typically only support relatively short communication distances and may not provide a means for identifying a certain sensor. This dissertation develops a certain type of passive wireless sensors called the intermodulation communication sensors. This type of passive wireless sensor may potentially have many advantages compared with other passive wireless sensors.Intermodulation communication sensors have been developed in many ways in this dissertation. One challenge was that they were difficult to make compliant with frequency regulations due to the relatively large band needed. This dissertation shows how the bandwidth required can be reduced significantly by using a Quartz crystal or other mechanical resonators. It is also demonstrated that such a resonator enables the utilization of a generic capacitive sensing element in the sensor, making it possible to monitor a broad set of variables. Furthermore, it is shown how intermodulation sensors can be made identifiable.Despite the fact that the studied sensor circuits are fairly simple, many important parameters, such as the read-out distance and measurements resolution strongly depend on the selected circuit components. This dissertation derives design equations for one specific sensor circuitry. The design equations help to choose proper component values in order to achieve the best possible read-out resolution.Passive wireless sensors are often used in large volume applications where low sensor fabrication cost is important. Unit fabrication costs of electronic circuits can typically be lowered by increasing volumes and the integration level. This dissertation studied how the integration of intermodulation communication sensors could be increased by integrating all the passives.The intermodulation communication sensors are interrogated with a specific reader device. This dissertation has contributed to the development and realization of a reader device whose limitations affecting reader performance are studied. The reader device also needs to estimate the sensor state from the measured intermodulation response of the sensor. Furthermore, this dissertation has contributed to the development of an estimation algorithm for the sensor state.
机译:在有线连接困难的应用中需要无线传感器。无线传感器通常配备有无线电收发器和电池或其他能源。这些能源可能会限制使用寿命或工作条件,并增加无线传感器的尺寸和成本。无线传感器也可能是无源的。由于可用于这些传感器的能量有限,它们通常仅支持相对短的通信距离,并且可能不提供用于识别特定传感器的手段。本文提出了一种称为互调通信传感器的无源无线传感器。与其他无源无线传感器相比,这种无源无线传感器可能具有许多优势。互调通信传感器在本文中已经得到了很多发展。一项挑战是,由于所需的频段相对较大,因此很难使其符合频率法规。本文说明了如何通过使用石英晶体或其他机械谐振器来显着降低所需带宽。还证明了这种谐振器使得能够利用传感器中的通用电容式感测元件,从而使得有可能监视广泛的变量集。此外,还显示了如何识别互调传感器。尽管所研究的传感器电路相当简单,但许多重要参数(如读出距离和测量分辨率)很大程度上取决于所选的电路组件。本文推导了一种特定传感器电路的设计方程。设计方程式有助于选择合适的组件值,以实现最佳的读出分辨率。无源无线传感器通常用于需要低传感器制造成本的大批量应用中。电子电路的单位制造成本通常可以通过增加体积和集成度来降低。本文研究了如何通过集成所有无源器件来提高互调通信传感器的集成度。本论文为研究影响阅读器性能的局限性的阅读器设备的开发和实现做出了贡献。读取器设备还需要根据传感器的测量互调响应来估计传感器状态。此外,本论文还为传感器状态估计算法的发展做出了贡献。

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    Song Jinsong;

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  • 年度 2015
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  • 正文语种 en
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