Multipath chirp signal detection based on biorthogonal fourier transform

Chao Yan, Lin Zheng
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Abstract

The multiple-chirp-rate signal has been proved a good orthogonal characteristic in BFT (biorthogonal Fourier transform) domain. In this work, it is adopted to improve the modulation efficiency with BFT demodulator. However, the performance of BFT demodulator in real wireless environment was not evaluated yet. By our derivation, unfortunately, the orthogonality of multiple-chirp-rate chirp in BFT domain is proved to be damaged over multipath channel. Furthermore, the interference model is constructed, and the linear MMSE detection is proposed to recover the M-ary symbols. Numerical results indicate that the algorithm can simultaneously mitigate the inter-symbol interference (ISI) and the inter-rate interference of the BFT output in multipath environments.
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基于双正交傅立叶变换的多径啁啾信号检测
在双正交傅里叶变换(BFT)域中证明了多啁啾率信号具有良好的正交特性。在本工作中,采用BFT解调器来提高调制效率。然而,BFT解调器在实际无线环境中的性能还没有得到评价。不幸的是,通过我们的推导,证明了在多径信道上,多啁啾率啁啾在BFT域的正交性被破坏。在此基础上,建立了干扰模型,并提出了线性MMSE检测方法来恢复M-ary符号。数值结果表明,该算法能同时抑制多径环境下BFT输出的码间干扰和码率干扰。
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