南京明城墙序贯PSInSAR形变估计
Sequential PSInSAR approach for the deformation monitoring of the Nanjing Ming Dynasty City Wall
- 2021年25卷第12期 页码:2381-2395
纸质出版日期: 2021-12-07
DOI: 10.11834/jrs.20211098
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纸质出版日期: 2021-12-07 ,
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王成,陈富龙,周伟,余华芬,吴迪.2021.南京明城墙序贯PSInSAR形变估计.遥感学报,25(12): 2381-2395
Wang C,Chen F L,Zhou W,Yu H F and Wu D. 2021. Sequential PSInSAR approach for the deformation monitoring of the Nanjing Ming Dynasty City Wall. National Remote Sensing Bulletin, 25(12):2381-2395
针对永久散射体PSInSAR(Persistent Scatterer SAR Interferometry)算法流程的局限性,本文立足差分雷达干涉预处理和时序微变反演性能提升,提出了一种基于优化解空间的PSInSAR序贯处理算法。该算法能够实现新SAR影像无缝嵌入,避免时序PSInSAR整体数据处理流程溯源,实现微变参数的准实时更新。研究以南京明城墙文化遗产及其200 m缓冲区赋存环境为示范,基于2015-01—2018-02的32景降轨Cosmo-SkyMed条带影像,开展传统PSInSAR方法与优化解空间PSInSAR序贯方法形变反演与性能对比研究。结果表明,基于解空间优化的PSInSAR序贯方法简化了差分干涉流程,通过解空间搜索机制和结构改进,降低了算法时空复杂度,实现了未知参数求解约10倍效率提升。通过形变场精度交叉验证,发现两种方法形变估计结果吻合(总体误差在0—1 mm),证实了PSInSAR序贯方法的有效性与可靠性,并揭示其在遥感大数据时代文化遗产高精度、准实时微变监测中的应用潜力。
Human society has entered the big data era given the exponential growth of remote sensing data due to the emergence of higher resolution
frequent revisits
and multi-platform image acquisitions. This phenomenon raised challenges for Interferometric SAR (InSAR) and Multitemporal InSAR (MTInSAR) data processing in near real time. For instance
the traditional PSInSAR algorithm can no longer satisfy a fast response monitoring due to delay in deformation time series updating.
To address the aforementioned technical limitations
we proposed a PSInSAR sequential processing algorithm characterized by the optimized searching-space to achieve the performance improvement of Differential InSAR (DInSAR) data preprocessing and MTInSAR parameter estimation. In this approach
new SAR acquisitions were seamlessly integrated into the reconstructed spatiotemporal baselines of interferograms. Then
a triple-level Delaunay network was established using the temporal coherence value (high
low
and decorrelated) on network edges. On the basis of the value inheritance from previous PSInSAR estimations
the unknown parameter estimation on PS candidates for the sequential PSInSAR was accelerated owing to the proposed searching strategy adopted to the triple-level coherence network edges. That is
the solution space was first sampled using a large searching step (for example
10 times the measurement accuracy of unknown parameters) to determine the potential interval of the optimal solution. Then
the choice of network edge was determined on the basis of the maximum value of the temporal coherence
followed by a dedicated fine searching (with the step equivalent to the predetermined accuracy of unknown parameters) concentrating on the potential interval for the optimal inversion. Owing to the applied global-local searching strategy
the optimization of calculation efficiency and estimation accuracy can be achieved.
We conducted a comparative investigation for the deformation estimation and performance assessment between the current PSInSAR and the proposed sequential PSInSAR methods using 32 scenes Cosmo SkyMed Stripmap images (in descending orbits and acquired from January 2015 to February 2018) covering the Nanjing Ming Dynasty City wall. Results indicate that a high efficiency of unknown parameter estimation (height
deformation
and thermal dilation) was obtained using the sequential PSInSAR with the adopted optimized searching-space approach
with the computation acceleration with approximately an order of 10 times. The cross comparison of the deformation velocity rates from both approaches reveals a consistent estimation as presented by the overall dispersion values ranging from 0 to 1 mm/a
which validates the feasibility and reliability of sequential PSInSAR in the deformation estimation.
The driving force of detected deformation anomalies along three sections of the city wall was further exploited
providing new insights for the sustainable conservation of the heritage properties. This study implies the potential of the sequential PSInSAR method in the accurate
near real-time deformation monitoring
and preventive conservation of large-scale cultural heritage sites (i.e.
Nanjing Dynasty City Wall)
particularly on the emergence of big data.
遥感PSInSAR优化解空间序贯文化遗产
remote sensingPSInSARsequential processingoptimized searching-spacecultural heritage
Ansari H, Zan F D and Bamler R. 2017. Sequential estimator: toward efficient InSAR time series analysis. IEEE Transactions on Geoscience and Remote Sensing, 55(10): 5637-5652 [DOI: 10.1109/TGRS.2017.2711037http://dx.doi.org/10.1109/TGRS.2017.2711037]
Chen F L. 2015. Principle, application and prospects of synthetic aperture radar (SAR) remote sensing in archaeology. Remote Sensing Technology and Application, 30(5): 835-841
陈富龙. 2015. 雷达遥感考古机理、应用与展望. 遥感技术与应用, 30(5): 835-841 [DOI: 10.11873/j.issn.1004-0323.2015.5.0835http://dx.doi.org/10.11873/j.issn.1004-0323.2015.5.0835]
Chen F L, Wu Y H, Zhang Y M, Parcharidis I, Ma P F, Xiao R Y, Xu J, Zhou W, Tang P P and Foumelis M. 2017. Surface motion and structural instability monitoring of Ming Dynasty City walls by two-step Tomo-PSInSAR approach in Nanjing City, China. Remote Sensing, 9(4): 371 [DOI: 10.3390/rs9040371http://dx.doi.org/10.3390/rs9040371]
Chen F L, Zhou W, Chen C F and Ma P F. 2019. Extended D-TomoSAR displacement monitoring for Nanjing (China) city built structure using high-resolution TerraSAR/TanDEM-X and Cosmo SkyMed SAR data. Remote Sensing, 11(22): 2623 [DOI: 10.3390/rs11222623http://dx.doi.org/10.3390/rs11222623]
Chen F L, Zhou W, Xu H, Parcharidis I, Lin H and Fang C Y. 2020. Space technology facilitates the preventive monitoring and preservation of the Great Wall of the Ming Dynasty: a comparative study of the Qingtongxia and Zhangjiakou sections in China. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 13: 5719-5729 [DOI: 10.1109/JSTARS.2020.3023297http://dx.doi.org/10.1109/JSTARS.2020.3023297]
Deng B, Guo H D, Wang C L and Nie Y P. 2010. Applications of remote sensing technique in archaeology: a review. Journal of Remote Sensing, 14(1): 187-206
邓飚, 郭华东, 王长林, 聂跃平. 2010. 遥感技术在考古中的应用综述. 遥感学报, 14(1): 187-206 [DOI: 10.11834/jrs.20100115http://dx.doi.org/10.11834/jrs.20100115]
Ferretti A, Prati C and Rocca F. 2001. Permanent scatterers in SAR interferometry. IEEE Transactions on Geoscience and Remote Sensing, 39(1): 8-20 [DOI: 10.1109/36.898661http://dx.doi.org/10.1109/36.898661]
Gabriel A K, Goldstein R M and Zebker H A. 1989. Mapping small elevation changes over large areas: differential radar interferometry. Journal of Geophysical Research: Solid Earth, 94(B7): 9183-9191 [DOI: 10.1029/JB094iB07p09183http://dx.doi.org/10.1029/JB094iB07p09183]
Li S, Du S Y, Yu A X, Dong Z, Zhang X L and Zhu X X. 2018. A PS- InSAR sequential processing method based on network reconstruction//2018 International Conference on Microwave and Millimeter Wave Technology (ICMMT). Chengdu, China: IEEE: 1-3 [DOI: 10.1109/ICMMT.2018.8563850http://dx.doi.org/10.1109/ICMMT.2018.8563850]
Ma P F and Lin H. 2016. Robust detection of single and double persistent scatterers in urban built environments. IEEE Transactions on Geoscience and Remote Sensing, 54(4): 2124-2139 [DOI: 10.1109/TGRS.2015.2496193http://dx.doi.org/10.1109/TGRS.2015.2496193]
Shen J Q and Shao X F. 2020. Research on the design of guide system under the cultural background——Taking the outer wall of Ming Dynasty in Nanjing as an example. Art and Literature for the Masses, (2): 141-142
沈家祺, 邵晓峰. 2020. 文化底蕴下的导视系统设计研究——以南京明城墙外郭为例. 大众文艺, (2): 141-142 [DOI: 10.3969/j.issn.1007-5828.2020.02.088]
Xu H P and Wang B J. 2014. Parameter estimation method of PS-DInSAR surface deformation measurement based on optimized solution space search method. China, CN104091064
A (徐华平, 王碧君. 2014. 基于优化解空间搜索法的PS-DInSAR地表形变测量参数估计方法. 中国, CN104091064A)
Yang X H. 2006. City wall of the Ming Dynasty in Nanjing. Nanjing: Nanjing University Press: 55-594
杨新华. 2006. 南京明城墙. 南京: 南京大学出版社: 55-594
Zhou C H and Ding Y. 2006. Thoughts on the history and existing condition of Ming dynasty’s rampart in Nanjing. Shanxi Architecture, 32(24): 43-44
周成海, 丁勇. 2006. 南京明城墙的历史与现状思考. 山西建筑, 32(24): 43-44 [DOI: 10.3969/j.issn.1009-6825.2006.24.027http://dx.doi.org/10.3969/j.issn.1009-6825.2006.24.027]
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