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A Novel Method of Distance Measurement Based on Pulse Position Modulation and Synchronization of Chaotic Signals Using Ultrasonic Radar Systems

机译:基于脉冲位置调制和超声雷达系统混沌信号同步的新型测距方法

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This paper deals with a novel method of transmission and receipt of a signal based on both the property of two chaotic systems generating the same chaotic signal when they are synchronized and the property of pulse position modulation (PPM) to be insensitive to the distortions of the transmission channel. The method is discussed in the context of ultrasonic radar systems, in which the transmitter and receiver, which consist of ultrasonic sensors, are near each other, and the received signal consists of the transmitted signal reflected by an obstacle. A reference sinusoidal signal is superimposed to a chaotic signal generated by a master chaotic system, and the whole signal is modulated according to the PPM method and transmitted by the sensor. The received signal is demodulated, and the demodulated signal forces a slave chaotic system to generate the chaotic signal embedded in it, which allows recovery of the sinusoidal signal by subtracting this chaotic signal from the demodulated echo. The difference of the phases of the reference sinusoidal signal and the recovered sinusoidal signal allows computation of the time of flight of the signal and, consequently, the distance of the radar system from the obstacle. The novel method is illustrated and tested by both simulation and experiments. The interference problem between the considered radar system and other radar systems ( crosstalk) is also addressed, and a solution is proposed to avoid it.
机译:本文基于两种混沌系统在同步时会产生相同混沌信号的特性以及脉冲位置调制(PPM)对信号失真不敏感的特性,来研究一种新颖的信号传输和接收方法。传输通道。在超声雷达系统的背景下讨论该方法,在该系统中,由超声传感器组成的发射器和接收器彼此靠近,接收信号由障碍物反射的发射信号组成。参考正弦信号叠加到由主混沌系统生成的混沌信号上,整个信号根据PPM方法进行调制并由传感器传输。接收到的信号被解调,并且解调后的信号迫使从属混沌系统生成嵌入其中的混沌信号,从而可以通过从解调回波中减去该混沌信号来恢复正弦信号。参考正弦信号和恢复的正弦信号的相位差允许计算信号的飞行时间,从而计算雷达系统距障碍物的距离。通过仿真和实验对新方法进行了说明和测试。还解决了所考虑的雷达系统与其他雷达系统之间的干扰问题(串扰),并提出了避免这种干扰的解决方案。

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