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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Orthogonal frequency coding for SAW tagging and sensors
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Orthogonal frequency coding for SAW tagging and sensors

机译:声表面波标签和传感器的正交频率编码

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Surface acoustic wave (SAW)-based sensors can offer wireless, passive operation in numerous environments, and various device embodiments are used for retrieval of the sensed data information. Single sensor systems typically can use a single carrier frequency and a simple device embodiment because tagging is riot required. In a multisensor environment, it is necessary to both identify the sensor and retrieve the sensed information. This paper presents the concept of orthogonal frequency coding (OFC) for implications to SAW sensor technology. The OFC offers all advantages inherent to spread spectrum communications, including enhanced processing gain and lower interrogation power spectral density (PSD). It is shown that the time ambiguity in the OFC compressed pulse is significantly reduced as compared with a single frequency tag having the same code length, and additional coding can be added using a pseudo-noise (PN) sequence. The OFC approach is general and should be applicable to many differing SAW sensors for temperature, pressure, liquid, gases, etc. Device embodiments are shown, and a potential transceiver is described. Measured device results are presented and compared with coupling of modes (COM) model predictions to demonstrate performance. Devices then are used in computer simulations of the proposed transceiver design, and the results of an OFC sensor system are discussed.
机译:基于表面声波(SAW)的传感器可以在多种环境中提供无线,被动操作,并且各种设备实施例用于检索感测到的数据信息。由于需要加标签,因此单个传感器系统通常可以使用单个载波频率和简单的设备实施例。在多传感器环境中,既需要识别传感器,又要检索感测到的信息。本文提出了对SAW传感器技术有影响的正交频率编码(OFC)的概念。 OFC提供了扩频通信固有的所有优势,包括增强的处理增益和更低的询问功率谱密度(PSD)。结果表明,与具有相同码长的单个频率标签相比,OFC压缩脉冲中的时间歧义性明显降低,并且可以使用伪噪声(PN)序列添加其他编码。 OFC方法是通用的,应适用于温度,压力,液体,气体等许多不同的SAW传感器。示出了设备实施例,并描述了潜在的收发器。提出了测量的设备结果,并将其与模式耦合(COM)模型预测进行了比较,以演示性能。然后将设备用于所提出的收发器设计的计算机仿真中,并讨论了OFC传感器系统的结果。

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