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Orthogonal Chirp-Based Ultrasonic Positioning

机译:基于正交线性调频的超声定位

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摘要

This paper presents a chirp based ultrasonic positioning system (UPS) using orthogonal chirp waveforms. In the proposed method, multiple transmitters can simultaneously transmit chirp signals, as a result, it can efficiently utilize the entire available frequency spectrum. The fundamental idea behind the proposed multiple access scheme is to utilize the oversampling methodology of orthogonal frequency-division multiplexing (OFDM) modulation and orthogonality of the discrete frequency components of a chirp waveform. In addition, the proposed orthogonal chirp waveforms also have all the advantages of a classical chirp waveform. Firstly, the performance of the waveforms is investigated through correlation analysis and then, in an indoor environment, evaluated through simulations and experiments for ultrasonic (US) positioning. For an operational range of approximately 1000 mm, the positioning root-mean-square-errors (RMSEs) &90% error were 4.54 mm and 6.68 mm respectively.
机译:本文提出了一种使用正交线性调频波形的线性调频超声定位系统(UPS)。在所提出的方法中,多个发射机可以同时发送线性调频信号,结果,它可以有效地利用整个可用频谱。提出的多址方案背后的基本思想是利用正交频分复用(OFDM)调制的过采样方法和线性调频波形的离散频率分量的正交性。此外,提出的正交线性调频波形还具有经典线性调频波形的所有优点。首先,通过相关性分析研究波形的性能,然后在室内环境中,通过模拟和超声(US)定位实验来评估波形的性能。对于大约1000毫米的工作范围,定位均方根误差(RMSE)和90%误差分别为4.54毫米和6.68毫米。

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