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Joint virtual time reversal communications with an orthogonal chirp spread spectrum over underwater acoustic channel

机译:水下声信道上具有正交线性调频扩频的联合虚拟时间逆向通信

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In this paper, a mathematical derivation was performed to prove that there are three characteristics of chirp signals, self-compression, cyclic shift and chirp rate orthogonality. Based on these three features, a new method is proposed to improve the spectrum efficiency by joining virtual time reversal together with an orthogonal carrier. The advantages of the method can be summarized as follows. (1) By using the self-compression feature of a chirp signal, it is easy to obtain the spread gain by increasing the production of the time and bandwidth, instead of designing a complex pseudo random code. (2) The bit rate can be improved by taking the cyclic-shift feature into account and designing the M-ary modulation for the chirp carrier. (3) Chirp carriers have a certain orthogonality if they are under the considered design, that is, it is possible to use multi-carriers to improve the bit rate and spectrum efficiency. (4) Furthermore, by using the VTRM (Virtual Time Reversal Mirror) technique, the ISI (Inter Symbol Interference) of the Chirp carrier can be decreased and the robustness can be increased. Simulations, pool and sea experiments verified its feasibility and performance. Outfield experiments demonstrated that the BER (Bit Error Rate) of the method can be stabilized at a magnitude of 10(-3) without the channel code, while the bit rate can reach 1 kbps by using a 2 kHz bandwidth. Thus, the spectrum efficiency can be over 0.5 bis/Hz and can be useful in reality. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文通过数学推导证明了线性调频信号具有三个特征,即自压缩,循环移位和线性调频率正交性。基于这三个特征,提出了一种通过将虚拟时间反转与正交载波结合在一起来提高频谱效率的新方法。该方法的优点可总结如下。 (1)通过使用线性调频信号的自压缩特性,可以通过增加时间和带宽的产生来容易地获得扩频增益,而不是设计复杂的伪随机码。 (2)通过考虑循环移位特性并为线性调频载波设计Mary调制,可以提高比特率。 (3)如果线性调频载波处于考虑的设计之下,则它们具有一定的正交性,也就是说,可以使用多载波来提高比特率和频谱效率。 (4)此外,通过使用VTRM(虚拟时间反转镜)技术,可以减小线性调频载波的ISI(符号间干扰)并且可以提高鲁棒性。仿真,游泳池和海上实验证明了其可行性和性能。外场实验表明,该方法的BER(误码率)可以在没有信道代码的情况下稳定在10(-3)的大小,而使用2 kHz带宽可以使比特率达到1 kbps。因此,频谱效率可以超过0.5 bis / Hz,并且在实际中可能有用。 (C)2016 Elsevier Ltd.保留所有权利。

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