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基于提升小波变换的可见光通感一体化波形设计OA

Lifting wavelet transform-based waveform design for VLC-ISAC

中文摘要英文摘要

可见光通信凭借无电磁干扰、频谱资源充足、部署便捷等优势,成为室内通感一体化技术落地的核心方案,可同步实现室内高速通信与高精度位置感知,适配智慧家居、室内定位、智能楼宇等多元场景.但传统 FFT-OFDM波形应用于 VLC-ISAC系统时存在显著技术缺陷,制约系统通感一体化性能.该波形峰均功率比(PAPR)数值偏高,而发光二极管(LED)存在固有非线性传输特性,高PAPR极易造成信号削波失真,引发传输信号畸变、信噪比衰减等问题,严重降低基于接收信号强度的室内距离、位置等感知参数的提取精度.同时,现有多光源区分方案高度依赖正弦频标调制,需占用额外频谱资源,大幅增加系统频谱开销,降低通信传输效率与通感融合性价比.针对上述问题,本文提出一种基于提升小波变换的可见光通感一体化波形设计方案.该方法引入 Haar小波,依托其优异的时频局部化特性优化波形特征,有效抑制信号 PAPR,缓解 LED非线性失真带来的信号损伤;同时利用小波基的正交特性实现导频资源复用,摒弃传统额外正弦频标的设置,彻底消除附加频谱开销.仿真实验结果表明,相较于传统 FFT-OFDM方案,所提方法可有效降低信号 PAPR,显著抑制 LED非线性削波失真,在零额外频带开销的前提下,实现多光源空间感知特征的高精度分离与参数提取,有效提升非线性受限场景下可见光系统的通感融合性能,为室内 VLC-ISAC技术的工程应用提供可靠的技术支撑.

With the advantages of immunity to electromagnetic interference,abundant spectrum resources,and convenient deployment,visible light communication(VLC)has become a core solution for the implementation of indoor integrated sensing and communication(ISAC).It can simultaneously realize high-speed indoor communication and high-precision position sensing,and is applicable to diverse scenarios such as smart homes,indoor positioning,and intelligent buildings.However,the conventional fast Fourier transform-based orthogonal frequency division multiplexing(FFT-OFDM)waveform presents prominent technical limitations when applied to VLC-ISAC systems,which severely restrict the integrated system performance.The FFT-OFDM waveform suffers from a high peak-to-average power ratio(PAPR).Given the inherent nonlinear transmission characteristics of light-emitting diodes(LEDs),a high PAPR easily induces clipping distortion,resulting in signal distortion and signal-to-noise ratio degradation.This seriously degrades the extraction accuracy of sensing parameters such as indoor distance and position based on received signal strength(RSS).Meanwhile,existing multi-light-source discrimination schemes heavily rely on sinusoidal frequency markers,which occupy additional spectrum resources,increase system spectrum overhead,and reduce communication efficiency as well as the cost-effectiveness of integrated sensing and communication.To address the above issues,this paper proposes a novel VLC-ISAC waveform design scheme based on lifting wavelet transform(LWT).By introducing Haar wavelet and leveraging its excellent time-frequency localization characteristics,the proposed method optimizes waveform features to effectively suppress PAPR and mitigate signal degradation caused by LED nonlinear distortion.Furthermore,the orthogonal characteristics of wavelet bases enable pilot multiplexing,which eliminates the need for additional sinusoidal frequency markers and completely avoids extra spectrum overhead.Simulation results demonstrate that compared with the traditional FFT-OFDM scheme,the proposed method achieves effective PAPR reduction and significant suppression of LED nonlinear clipping distortion.It realizes high-precision separation and extraction of spatial sensing features for multiple light sources with zero additional bandwidth overhead,and substantially improves the integrated sensing and communication performance of VLC systems in nonlinearity-limited environments.This work provides a reliable technical reference for the practical engineering deployment of indoor VLC-ISAC systems.

任珈谊;漆凯;王美馨

西安工业大学 电子信息工程学院,西安 710021西安工业大学 电子信息工程学院,西安 710021西安工业大学 电子信息工程学院,西安 710021

航空航天

可见光通信通感一体化波形设计提升小波变换

visible light communicationintegrated sensing and communicationwaveform designlifting wavelet transform

《空间电子技术》 2026 (3)

27-34,8

10.3969/j.issn.1674-7135.2026.03.004

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