首页> 外文会议>IEEE International Conference on Wireless for Space and Extreme Environments >Bit-Error-Rate measurement of infrared physical channel using reflection via Multi Layer Insulation inside in ARIANE 5 Vehicle Equipment Bay for wireless sensor network communication
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Bit-Error-Rate measurement of infrared physical channel using reflection via Multi Layer Insulation inside in ARIANE 5 Vehicle Equipment Bay for wireless sensor network communication

机译:Ariane 5车辆设备托架中使用多层绝缘反射的红外物理通道的误码率测量,用于无线传感器网络通信

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In this work we investigate the Bit-Error-Rate (BER) of the Infrared (Ir) Communication inside the Vehicle Equipment Bay (VEB) of the ARIANE 5. Measurements were performed to find the impact of the reflection of the infrared signal via Multi Layer Insulation (MLI) on the infrared wireless sensor network (Ir WSN) communication in the VEB. The main focus is to find the relationship between the BER and the transmitting/receiving angle depending on variation of the Ir transmitter power. A further experiment was done by varying the transmission current with a constant angle for BER estimation without adding extra special signals (e.g. Additive white Gaussian noise (AWGN)) to the transmitter. Ambient white light from LEDs and 50 Hz fluorescent AC light was superimposed in the measurement to introduce additional noise for the infrared receiver into the physical channel.
机译:在这项工作中,我们研究了Ariane的车辆设备托架(VEB)内的红外线(IR)通信的误码率(BER)。进行测量以发现通过多的红外信号的反射的影响在VEB中红外无线传感器网络(IR WSN)通信的层绝缘(MLI)。主要焦点是根据IR发射器功率的变化找到BER和发射/接收角之间的关系。通过改变具有BER估计的恒定角度的传输电流来完成进一步的实验,而不增加额外的特殊信号(例如,添加到发射器的添加剂白色高斯噪声(AWGN))。来自LED和50Hz荧光AC光的环境白光叠加在测量中,以引入红外接收器进入物理通道的额外噪音。

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