Monitoring Urban Subsidence with Multi-master Radar Interferometry Based on Coherent Targets
详细信息    查看全文
  • 作者:Hong-lei Yang ; Jun-huan Peng
  • 关键词:Ground deformation ; Differential SAR interferometry (DInSAR) ; Persistent scatterer interferometry (PSInSAR) ; Coherent scatterers ; Small baseline method
  • 刊名:Journal of the Indian Society of Remote Sensing
  • 出版年:2015
  • 出版时间:September 2015
  • 年:2015
  • 卷:43
  • 期:3
  • 页码:529-538
  • 全文大小:8,801 KB
  • 参考文献:Arnaud, A. (1999). Ship detection by SAR interferometry, in Proc. IGARSS, Hamburg, Germany, 5:2616-618.
    Arnaud, A., Closa, J., Hanssen, R., Adam, N., Eineder, M., Inglada, J., Fitoussi, G., & Kampes, B. (2004). Development of algorithm for the exploitation of ERS-Envisat using the stable points network. Technical report. Altamira Information. Barcelona, Spain. European Space Agency Study report ESA Contract Nr. 16702/02/I-LG.
    Bamler, R. (2000). Interferometric stereo radargrammetry: absolute height determination from ERS-ENVISAT interferograms. International Geoscience and Remote Sensing Symposium, 2, 742-45.
    Berardino, P., Fornaro, G., & Lanari, R. (1999). A new algorithm for surface defromation monitoring based on small baseline differential SAR interferometry. IEEE Transactions on Geoscience and Remote Sensing.40(11):2375-383.
    Chen, Q., Ding X. L., Liu, G. X., Hu, J. C., & Yuan, L. G. (2009). Baseline recognition and parameter estimation of persistent-scatterer Network in Radar Interferometry. Chinese Journal of Geophysics, 52(9), 2229-236. in Chinese.
    Chen Q., Liu G. X., Hu J. C., Ding X. L., & Yang Y. H. (2012). Mapping ground 3-D displacement with GPS and PS-InSAR networking in the Pingtung area, southwestern Taiwan, China. Chinese Journal of Geophysics, 55(10), 3248-258. in Chinese.
    Colesanti, C., Ferretti, A., Prati, C., & Rocca F. (2003). Monitoring landslides and tectonic motions with the permanent scatterers technique. Engineering Geology, 68(1-), 31-4.
    Ding, X. L., Liu, G. X., Li, Z. W., Li Z. L., & Chen Y. Q. (2003). Ground subsidence monitoring in Hong Kong with satellite SAR interferometry. Photogrammetry Engineering & Remote Sensing, 70(10), 1151-156.View Article
    Ferretti, A. C., & Rocca, F. (2001). Permanent scatterers in SAR interferometry. IEEE Transactions on Geoscience and Remote Sensing, 39(1), 8-0.View Article
    Ferretti, A., Prati, C., & Rocca, F. (2002). Nonlines subsidence rate estimation using permanent scatterers in differential SAR interferometry. IEEE Transactions on Geoscience and Remote Sensing, 38(5), 2202-212.View Article
    Ferretti, A., Fumagalli, A., Novali, F., Prati, C., Rocca, F., & Rucci, A. (2011). A new algorithm for processing interferometric data-stacks: SqueeSAR. IEEE Transactions on Geoscience and Remote Sensing, 49(9), 3460-470.View Article
    Gabriel, A. K., Goldstein, R. M., & Zebker, H. A. (1989). Mapping small height changes over large areas: differential radar interferometry. Journal of Geophysical Research, 94, 9183-191.View Article
    Gischig, V., Loew, S., Kos, A., Moore, J. R., Raetzo, H., & Lemy, F. (2009). Identification of active release planes using ground-based differential InSAR at the Randa rock slope instability, Switzerland. Natural Hazards and Earth System Sciences, 9(6), 2027-038.View Article
    Goldstein, R. M., Engelhardt H., Kamb, B., & Frolich, R. M. (1993). Satellite radar interferometry for monitoring ice sheet motion: application to an Antarctic ice stream. Science, 363, 1525-530.View Article
    Henry, C., Souyris, J. C., Adragna, F., & Marthon, P. (1999). Target detection and analysis based on spectral analysis of a SAR image: A simulation approach, in Proc. IGARSS, Hamburg, Germany, 5:2616-618.
    Li, Z., Elliott, J. R., Feng, W., Jackson, J. A., Parsons, B. E., & Walters R. T. (2011). The 2010 MW 6.8 Yushu (Qinghai, China) earthquake: constraints provided by InSAR and body wave seismology. Journal of Geophysical Research, 16(B10), B10302.View Article
    Liu, G., Ding, X., Chen, Y., Li, Z., & Li Z. (2001). Ground settlement of Chek Lap Kok airport Hong Kong, detected by satellite synthetic aperture radar interferometry. Chinese Science Bulletin, 46(21), 1778-782.View Article
    Lu, Z., Mann, D., Freymueller, J. T., & Meyer D. J. (2002). Syhthetic aperture radar interferometry of Okmpk volcano, Alaska: radar observations. Journal of Geophysical Research, 105, 10791-0806.View Article
    Massonnet, D., Rossi M., Carmona C., Adragna F., Peltzer G., & Feigl K. (1993). The displacement field of the Landers earthquake mapped by radar interferometry. Nature, 364, 138-42.View Article
    Ouchi, K., & Wang, H. (2005). Interlook cross-correlation function of speckle in SAR images of sea surface processed with partially overlapped sub-apertures. IEEE Transactions on Geoscience and Remote Sensing, 43(4), 695-01.View Article
    Vander Kooij. (2003). Coherent target analysis. Third international Workshop on ERS SAR interferometry,-FRINGE03- Frascati, Italy.
    Wang, Y., Liao, M. S., Li, D. R.,Wei Z. X., Fang, Z. (2007). Subsidence velocity retrieval from long-term coherent targets in radar interferometric stacks. Chinese Journal of Geophysics, 50(2), 598-04. in Chinese.
    Wegmuller, U., Walter, D., Spreckels, V., Werner, C. L. (2010). Nonuniform ground motion monitoring with terrasar-X. Persistent scatterer interferometry. IEEE Transactions on Geoscience and Remote Sensing, 48(2), 895-03
  • 作者单位:Hong-lei Yang (1)
    Jun-huan Peng (1)

    1. School of Land Science and Technology, China University of Geosciences, Beijing, 100083, China
  • 刊物类别:Earth and Environmental Science
  • 刊物主题:Earth sciences
    Geosciences
    Remote Sensing and Photogrammetry
  • 出版者:Springer India
  • ISSN:0974-3006
文摘
A method is introduced in this paper to identify coherent scatterers (CS) with high spectral correlation among sublook SAR images. Using this method, the CSs can be identified in single SAR image. And the multi-reference radar interferometry is proposed to monitor urban subsidence with the candidate CSs. An experiment was conducted utilizing eight ALOS PALSAR SAR images over Zhengzhou urban area during the year of 2007-010. The experiment has demonstrated that the identified CSs have large interferometric coherence and small amplitude deviation, which indicates the phase are stable during the time span. The displacement mean square error is 7.6?mm/a comparison with ground leveling data, which demonstrates that the proposed algorithm is reliable.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700