High-accurate central ellipse algorithm for an ultrasonic ranging system
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摘要: 描述了基于新型驅動電路和低噪聲程控放大器的超聲測距系統.驅動系統的設計從硬件角度提高了回波信號的信噪比和穩定性.基于能量重心校正法和最小二乘法的原理,提出了一種改進型橢圓中心超聲回波尋峰算法:通過曲線擬合搜索橢圓中心點,即回波信號能量集中點,進而找到回波信號的峰值點.測試比較證明,與包絡線法和三次多項式法相比,此算法測量相對誤差穩定在0.2%,適用高精度工業測量.Abstract: This paper described a kind of ultrasonic ranging system which employs a new driving circuit and low-noise programmable amplifier. The design of signal-to-noise ratio (SNR) in the circuit was raised to make measurement more stable and reliable. An efficient central ellipse algorithm for estimating the echo peak positions of ultrasonic sampling was presented to find the accurate receive time of echo by searching the peak of energy bursts, which is base on the theories of energy centrobaric correction method and least square method in the ultrasonic ranging system. A comparison of experimental results shows that the proposed algorithm's relative error is approximately 0.2%, which is more accuracy than the envelope detector or the cubic fitted multiple regression equation method, as a result it is suitable for higher accuracy industrial applications.
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Key words:
- distance measurement /
- ultrasonic /
- central ellipse algorithm /
- echo signal
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