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Design and Implementation of Analog Transceiver Circuit for Patient Monitoring System based on OWC

机译:基于OWC的患者监护系统模拟收发电路的设计与实现

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In this paper, we present the design and implementation of analog front-end (AFE) module for patient monitoring system based on optical wireless communication (OWC). The communication link uses visible light as a downlink and IR as an uplink communication. The wireless patient monitoring system consists of two parts: host or coordinator and client or patient device. On the patient device part, we designed the PCB with a shield configuration so the AFE module can be connected directly to GPIO's microcontroller unit (MCU) without any cable. Moreover, the AFE module is attempted to have a similar size with the MCU. Hence, the patient device has a small-size, minimum of wires, wearable, and low-complexity. The AFE receiver output is a digital waveform. Therefore, it is compatible with On-off Keying (OOK) modulation. The AFE module can be switched digitally up to 25 KHz of optical frequency for visible light downlink and 1500 Hz optical frequency for IR uplink. The optical link distance can reach up to 2 meters with 0° of reception angle.
机译:在本文中,我们介绍了基于光学无线通信(OWC)的患者监护系统模拟前端(AFE)模块的设计和实现。通信链路使用可见光作为下行链路,使用IR作为上行链路通信。无线病人监护系统由两部分组成:主机或协调器以及客户端或病人设备。在患者设备部分,我们设计了具有屏蔽配置的PCB,因此AFE模块无需任何电缆即可直接连接到GPIO的微控制器单元(MCU)。此外,尝试使AFE模块具有与MCU相似的尺寸。因此,患者设备具有尺寸小,线材最少,可穿戴且复杂度低的优点。 AFE接收器输出是数字波形。因此,它与开关键控(OOK)调制兼容。对于可见光下行链路,AFE模块可以数字方式切换到最高25 KHz的光频率,对于IR上行链路,则可以切换到1500 Hz的光频率。接收角度为0°时,光链路距离可达2米。

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