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Reduction of blind zone in ultrasonic transmitter/receiver transducers

机译:减少超声波发射器/接收器换能器中的盲区

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Most ultrasonic sensorial systems are based on transducers that work as emitters and receivers in the same scanning process. This fact implies that, during the emission process, the reception stage stays disabled, in order to avoid the emission coupled. This disabling interval provides that the nearest area to the transducers, the blind zone, cannot be scanned, since echoes coming from reflectors placed inside it are overlapped with the coupled emission. On the other hand, the encoding of the ultrasonic emission by binary sequences allows the process gain to be increased, so better precision is achieved and higher levels of noise are supported by the system. The length of the used binary sequence determines not only the process gain, but also the duration of the emission interval. The usage of long sequences to improve the performance also implies the existence of a larger blind zone, where reflectors are not detected. This work presents a novel encoding technique, based on Golay complementary pairs, where the dimension of the blind zone is reduced to negligible distances thanks to some features from the binary sequences. (c) 2006 Elsevier B.V. All rights reserved.
机译:大多数超声传感系统都基于在相同扫描过程中充当发射器和接收器的换能器。这个事实意味着,在发射过程中,接收级保持禁用状态,以避免发射耦合。此禁用间隔提供了无法扫描到换能器最近的区域,即盲区,因为来自放置在其内部的反射器的回波与耦合发射重叠。另一方面,通过二进制序列对超声波发射进行编码可以增加过程增益,因此可以获得更好的精度,并且系统支持更高级别的噪声。所使用的二进制序列的长度不仅决定过程增益,而且决定发射间隔的持续时间。使用长序列来改善性能还意味着存在较大的盲区,在盲区中未检测到反射器。这项工作提出了一种基于Golay互补对的新颖编码技术,其中由于来自二进制序列的某些特征,盲区的尺寸减小到可以忽略的距离。 (c)2006 Elsevier B.V.保留所有权利。

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