A Two-Tone Radar Sensor for Concurrent Detection of Absolute Distance and Relative Movement for Gesture Sensing

被引:28
作者
Gu C. [1 ]
Lien J. [1 ]
机构
[1] Goolge Inc., Mountain View, CA
关键词
displacement; distance; gesture sensing; Microwave/millimeter wave sensors radar; movement; range; two tone;
D O I
10.1109/LSENS.2017.2696520
中图分类号
学科分类号
摘要
This letter presents a two-tone radar sensor system that can concurrently detect both absolute distance and relative movement. In contrast to the traditional two-tone radar, the proposed radar sensor can measure both distance and vibration. Moreover, it is more accurate in predicting the phase shift by leveraging the accuracy of nonlinear phase demodulation in the digital domain. Unlike the frequency-modulated continuous wave radar, the proposed radar system has simpler system architecture and does not require broadband signals. With a tone difference of 40MHz, the radar system can detect a distance up to 1.875m without ambiguity. Experiments show that the proposed radar system was able to not only capture the delaying movement of a Newton's cradle but to measure the distance with mm accuracy as well. It successfully detected the gesture motion of virtual slider, making it promising for sensing action gestures for human-computer interaction. © 2017 IEEE.
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相关论文
共 11 条
[1]  
Lien J., Et al., Soli: Ubiquitous gesture sensing with millimeter wave radar, ACM Trans. Graph, 35, 4, (2016)
[2]  
Fan T., Et al., Wireless hand gesture recognition based on continuous-wave Doppler radar sensors, IEEE Trans. Microw. Theory Tech, 64, 11, pp. 4012-4020, (2016)
[3]  
Wang F.K., Et al., Gesture sensing using retransmitted wireless communication signals based on Doppler radar technology, IEEE Trans. Microw. Theory Tech, 63, 12, pp. 4592-4602, (2015)
[4]  
Kim S., Nguyen C., A displacement measurement technique using millimeterwave interferometry, IEEE Trans. Microw. Theory Tech, 51, 6, pp. 1724-1728, (2003)
[5]  
Nieh C.-M., Wei C., Lin J., Concurrent detection of vibration and distance using unmodulated CW doppler vibration radar with an adaptive beam-steering antenna, IEEE Trans. Microw. Theory Tech, 63, 6, pp. 2069-2078, (2015)
[6]  
Lindner S., Et al., Distance measurements based on guided wave 24GHz dual tone six-port radar, Proc. 11th Eur. Conf. Radar, (2014)
[7]  
Zhang H., Li L., Wu K., Software-defined six-port radar technique for precision range measurements, IEEE Sensors J, 8, pp. 1745-1751, (2008)
[8]  
Haddadi K., Lasri T., V-Band two-tone continuous wave radar operating in monostatic/bistatic mode, Proc. 9th Eur. Conf. Radar, 10, (2012)
[9]  
Gu C., Et al., A hybrid radar-camera sensing system with phase compensation for random body movement cancellation in Doppler vital sign detection, IEEE Trans. Microw. Theory Tech, 61, 12, pp. 4678-4688, (2013)
[10]  
Gu C., Inoue T., Li C., Analysis and experiment on the modulation sensitivity of Doppler radar vibration measurement, IEEE Microw. Wireless Compon. Lett, 23, 10, pp. 566-568, (2013)