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Based on the earth-mine resonance model, a model combining resonance and anti-resonance was presented for acoustic mines detection. Considering the high compliance and low-frequency acoustics characters, a landmine and the earth on top of it were respectively equivalent to a spring and a mass, resulting in a mass-spring system. The model’s resonance and anti-resonance mechanisms were discussed by means of frequency response function. The experimental results showed that the vibration velocity ratios of the ground surface with and without mine buried under it show alternate maximum and minimum frequencies with the ratios greater than 1, and less than 1 respectively. The results consisted with the theoretical prediction and indicated that the earth-mine system’s resonance and anti-resonance mechanisms exist concurrently, which can be used to further study of the acoustic mine imaging.
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Keywords:
- resonance model /
- anti-resonance /
- frequency response function /
- acoustic landmines detection
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[2] Xiang N,Sabatier J M 2003 J. Acoust. Soc. Am. 3 1333
[3] Donskoy D, Reznik A , Zagrai A 2005 J. Acoust. Soc. Am. 2 690
[4] Donskoy D 2008 J. Acoust. Soc. Am. 5 3042
[5] Yu S H, Avinash G, Thomas R W 2002 Proceedings of SPIE 4742 701
[6] Zagrai A, Donskoy D, Ekimov 2004 Proceedings of SPIE 5415 21
[7] Wang CH, Liu ZH G, Li X F 2008 Acta Acustica 4 354 (in Chinese) [王 驰、刘志刚、李醒飞 2008 声学学报 4 354]
[8] Wang CH, Li X F, Fu J 2008 Opt. Precision Eng. 9 1716 (in Chinese)[王 驰、李醒飞、付 娟 2008 光学精密工程 9 1716]
[9] Wang CH, Liu ZH G, Li X F 2008 J. Tianjin Univ. 6 745 (in Chinese)[王 驰、刘志刚、李醒飞 2008 天津大学学报 6 745]
[10] Wang CH, Li X F, Liu ZH G 2008 Chin. J. Sensors Actuators 5 887 (in Chinese)[王 驰、李醒飞、刘志刚2008 传感技术学报 5 887]
[11] Yang D H 2002 Chin. J . Geophys 4 575 (in Chinese)[杨顶辉 2002 地球 4 575]
[12] Pei Z L 2006 J. China Univ. Petr. 2 16 (in Chinese)[裴正林 2006 中国石油大学学报 2 16]
[13] Cheng T H, Gu X F, Yu T, Chen L F, Tian G L 2009 Acta Phys. Sin. 58 7368 (in Chinese) [程天海、顾行发、余 涛、陈良富、田国良 2009 58 7368]
[14] He H L, Liu Y J, Mo J, Song J B 2009 Acta Phys. Sin. 58 6743 (in Chinese)[何海伦、刘永军、莫 军、宋金宝 2009 58 6743]
[15] You Y X, Zhao X Q, Chen K, Wei G 2009 Acta Phys. Sin. 58 6750 (in Chinese)[尤云祥、赵先奇、陈 科、魏 岗 2009 58 6750]
[16] Chen X G, Guo Z P , Song J B 2008 Chin. Phys. B 17 3387
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[1] Sabatier J M 2000 Proceedings of SPIE 4038 781
[2] Xiang N,Sabatier J M 2003 J. Acoust. Soc. Am. 3 1333
[3] Donskoy D, Reznik A , Zagrai A 2005 J. Acoust. Soc. Am. 2 690
[4] Donskoy D 2008 J. Acoust. Soc. Am. 5 3042
[5] Yu S H, Avinash G, Thomas R W 2002 Proceedings of SPIE 4742 701
[6] Zagrai A, Donskoy D, Ekimov 2004 Proceedings of SPIE 5415 21
[7] Wang CH, Liu ZH G, Li X F 2008 Acta Acustica 4 354 (in Chinese) [王 驰、刘志刚、李醒飞 2008 声学学报 4 354]
[8] Wang CH, Li X F, Fu J 2008 Opt. Precision Eng. 9 1716 (in Chinese)[王 驰、李醒飞、付 娟 2008 光学精密工程 9 1716]
[9] Wang CH, Liu ZH G, Li X F 2008 J. Tianjin Univ. 6 745 (in Chinese)[王 驰、刘志刚、李醒飞 2008 天津大学学报 6 745]
[10] Wang CH, Li X F, Liu ZH G 2008 Chin. J. Sensors Actuators 5 887 (in Chinese)[王 驰、李醒飞、刘志刚2008 传感技术学报 5 887]
[11] Yang D H 2002 Chin. J . Geophys 4 575 (in Chinese)[杨顶辉 2002 地球 4 575]
[12] Pei Z L 2006 J. China Univ. Petr. 2 16 (in Chinese)[裴正林 2006 中国石油大学学报 2 16]
[13] Cheng T H, Gu X F, Yu T, Chen L F, Tian G L 2009 Acta Phys. Sin. 58 7368 (in Chinese) [程天海、顾行发、余 涛、陈良富、田国良 2009 58 7368]
[14] He H L, Liu Y J, Mo J, Song J B 2009 Acta Phys. Sin. 58 6743 (in Chinese)[何海伦、刘永军、莫 军、宋金宝 2009 58 6743]
[15] You Y X, Zhao X Q, Chen K, Wei G 2009 Acta Phys. Sin. 58 6750 (in Chinese)[尤云祥、赵先奇、陈 科、魏 岗 2009 58 6750]
[16] Chen X G, Guo Z P , Song J B 2008 Chin. Phys. B 17 3387
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