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Miniaturization of the Network Analyzer as an Interface Circuit for Wearable Resonance-Based Sensors.
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Miniaturization of the Network Analyzer as an Interface Circuit for Wearable Resonance-Based Sensors./
作者:
Wu, Fan.
出版者:
Ann Arbor : ProQuest Dissertations & Theses, : 2021,
面頁冊數:
88 p.
附註:
Source: Masters Abstracts International, Volume: 82-12.
Contained By:
Masters Abstracts International82-12.
標題:
Electrical engineering. -
電子資源:
http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=28417919
ISBN:
9798516061332
Miniaturization of the Network Analyzer as an Interface Circuit for Wearable Resonance-Based Sensors.
Wu, Fan.
Miniaturization of the Network Analyzer as an Interface Circuit for Wearable Resonance-Based Sensors.
- Ann Arbor : ProQuest Dissertations & Theses, 2021 - 88 p.
Source: Masters Abstracts International, Volume: 82-12.
Thesis (M.E.E.)--The University of Alabama at Birmingham, 2021.
This item must not be sold to any third party vendors.
Readout interface circuits are the essential part of all sensor units. Miniaturing such circuits is a challenging design issue for the future of the Internet of Things, wearable and implantable biomedical devices, sensors for harsh environments, etc. For developing wireless telemetry sensors, Vector Network Analyzer (VNA) is a powerful measurement instrument that can measure scattering parameters (S-Parameters) of single and dual-port networks, as well as Y- and Z-parameters. However, VNAs are expensive and bulky and cannot be carried around, and therefore, they can't be used as a sensor interface. This thesis aims to design, develop, and implement a miniaturized data collection/sensing and processing system, to be replaced by laboratories VNAs, but easy to carry. The proposed design includes S-Parameter sensing interface circuit (similar to VNA), processor unit, and Bluetooth low energy (BLE) transceiver. To operate the proposed hardware, required codes and algorithms (software for the sensing unit's processor and an App for smartphones) are developed to form a graphical user interface (GUI), compatible with Android devices, and collect data. The proposed design can measure the reflection coefficient (S11) of passive inductive sensors (1 MHz-50 MHz), digitalize the data, and transfer it to App/GUI unit in a smartphone via BLE. The captured data includes the information of the sensors, including the resonance frequency variations of a passive sensor. The user can monitor the sensor' data (S11) in real-time. The implemented sensing circuit interface unit has a low power consumption of 300 mW. The dimension of the sensing circuit interface unit equals 3 mm x 23 mm x 51 mm (weight: < 10 g). The measured resolution of the proposed system is 30 kHz for measuring the changes of the resonances frequency, the proposed sensor unit can sweep the frequency from 1 MHz to 50 MHz within 0.1 s (measured refreshment speed: 10 times per second).
ISBN: 9798516061332Subjects--Topical Terms:
649834
Electrical engineering.
Subjects--Index Terms:
BLE
Miniaturization of the Network Analyzer as an Interface Circuit for Wearable Resonance-Based Sensors.
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Readout interface circuits are the essential part of all sensor units. Miniaturing such circuits is a challenging design issue for the future of the Internet of Things, wearable and implantable biomedical devices, sensors for harsh environments, etc. For developing wireless telemetry sensors, Vector Network Analyzer (VNA) is a powerful measurement instrument that can measure scattering parameters (S-Parameters) of single and dual-port networks, as well as Y- and Z-parameters. However, VNAs are expensive and bulky and cannot be carried around, and therefore, they can't be used as a sensor interface. This thesis aims to design, develop, and implement a miniaturized data collection/sensing and processing system, to be replaced by laboratories VNAs, but easy to carry. The proposed design includes S-Parameter sensing interface circuit (similar to VNA), processor unit, and Bluetooth low energy (BLE) transceiver. To operate the proposed hardware, required codes and algorithms (software for the sensing unit's processor and an App for smartphones) are developed to form a graphical user interface (GUI), compatible with Android devices, and collect data. The proposed design can measure the reflection coefficient (S11) of passive inductive sensors (1 MHz-50 MHz), digitalize the data, and transfer it to App/GUI unit in a smartphone via BLE. The captured data includes the information of the sensors, including the resonance frequency variations of a passive sensor. The user can monitor the sensor' data (S11) in real-time. The implemented sensing circuit interface unit has a low power consumption of 300 mW. The dimension of the sensing circuit interface unit equals 3 mm x 23 mm x 51 mm (weight: < 10 g). The measured resolution of the proposed system is 30 kHz for measuring the changes of the resonances frequency, the proposed sensor unit can sweep the frequency from 1 MHz to 50 MHz within 0.1 s (measured refreshment speed: 10 times per second).
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