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Synchronization and Noise Immunity of Communication Systems Using Signals with Multi-position Modulation

机译:使用多位置调制信号的通信系统的同步和抗扰度

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The presented report describes the results of the development of a digital communication system designed for use in a complex noise environment or in a counteraction. The system is designed to transmit video messages in real time.Mechanisms for providing increased protection against interference are implemented by selecting a spread spectrum signal with data transmission in a cyclic delay of pseudo-random sequence. Demodulation and synchronization algorithms for receiving signals are described in detail.Working prototype of the system transmitting video messages was created. Radio channel based on the AD9361 transceiver (Analog Devices). The layout works in the frequency range 3 - 4 GHz. Video reception is performed when the signaloise ratio at the input of the receiver is minus 9 dB.The selected signal and synchronization method made it possible to implement protection against interference having a spectrum width commensurate with the width of the signal spectrum (about 100 MHz) using the pseudo-random frequency hopping. The frequency hopping is possible in a cyclic form or in the form of rapid frequency tuning in the event of damage to the selected frequency channel.The noise immunity of the developed system is compared with a system using a signal with a multi-position quadrature modulation 256 QAM. The developed system has a higher noise immunity at the same speed of information transmission.
机译:呈现的报告描述了设计用于复杂噪声环境或施加的数字通信系统的开发结果。该系统被设计为实时传输视频消息,从而通过在伪随机序列的循环延迟中选择具有数据传输的扩频信号来实现用于提供更高的干扰保护的机制。详细描述了用于接收信号的解调和同步算法。创建系统发送视频消息的工作原型。基于AD9361收发器(模拟设备)的无线电通道。布局在频率范围为3 - 4 GHz。当接收器的输入处的信号/噪声比为9dB时执行视频接收。所选择的信号和同步方法使得可以实现防止具有与信号频率的宽度相称的频谱宽度的干扰保护(约100 MHz)使用伪随机跳频。在对所选频率通道造成损坏的情况下,以循环形式或以快速频率调谐的形式可能的跳频。与使用多位正交调制的信号的系统相比,开发系统的噪声抗扰度与系统相比256 QAM。开发系统以相同的信息传输速度具有更高的抗噪性。

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