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Optically powered sensor signal telemetry system

机译:光电传感器信号遥测系统

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摘要

A novel remote transducer telemetry system utilizing an optical link for electrical isolation and EMI (electromagnetic interference) immunity has been developed. This echo sensor telemetry system encodes information by a variable-pulse-width technique. The time between two echo pulses is proportional to, or a function of, the parameters being measured. At the sensing end the relatively intense incoming optical pulse (or series of pulses) is converted to a voltage by an array of photovoltaic cells. The cells power the electronics at the sensing end. The system is capable of interfacing resistance-, capacitance-, and voltage-type sensors. The power converter unit, micropower circuit, optical subsystem, and command and processing unit making up the system are detailed. An overall system accuracy of 1% and repetition rate between 500 and 1 kHz have been obtained experimentally. Using a 5-mW laser diode as a source, approximately 300 mu W of electrical power is available at the output of photovoltaic cells. The encoder circuit developed consumed less than 30 mu W of power. Additionally, a high-peak-intensity light transmitter operated at 1-V supply. Based on this single-echo sensor system, extension to a sensor network is outlined.
机译:已经开发出一种新颖的远程换能器遥测系统,该系统利用光链路实现电隔离和EMI(电磁干扰)抗扰性。该回波传感器遥测系统通过可变脉冲宽度技术对信息进行编码。两个回波脉冲之间的时间与被测参数成正比或成函数。在感测端,相对强的入射光脉冲(或一系列脉冲)通过光伏电池阵列转换为电压。电池在传感端为电子设备供电。该系统能够连接电阻型,电容型和电压型传感器。详细介绍了构成系统的功率转换器单元,微功率电路,光学子系统以及命令和处理单元。通过实验已经获得了1%的整体系统精度和500至1 kHz的重复率。使用5mW激光二极管作为光源,光伏电池的输出端可提供约300uW的电能。开发的编码器电路消耗的功率不到30μW。此外,一个高峰值强度的光发射器以1V电源供电。基于此单回波传感器系统,概述了对传感器网络的扩展。

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