[1]de Vore S L.Ground-penetrating radar:an introduction for archaeologists[J]. Geoarchaeology,1998,13(5):527-528.
[2]Mai T C,Razafindratsima S,Sbarta Z M,et al. Non-destructive evaluation of moisture content of wood material at GPR frequency[J]. Construction and Building Materials,2015,77:213-217.
[3]Martínez-Sala R,Rodríguez-Abad I,Diez Barra R,et al. Assessment of the dielectric anisotropy in timber using the nondestructive GPR technique[J]. Construction and Building Materials,2013,38:903-911.
[4]Halabe U B,Agrawal S,Gopalakrishnan B.Nondestructive evaluation of wooden logs using ground penetrating radar[J]. Nondestructive Testing and Evaluation,2009,24(4):329-346.
[5]Butnor J R,Pruyn M L,Shaw D C,et al. Detecting defects in conifers with ground penetrating radar:applications and challenges[J]. Forest Pathology,2009,39(5):309-322.
[6]肖夏阳,文剑,肖中亮,等. 基于雷达波的树木躯干内部缺陷探测识别[J]. 林业科学,2018,54(5):127-134.
[7]文剑,李伟林,肖中亮,等. 活立木内部缺陷雷达波检测研究[J]. 农业机械学报,2017,48(10):180-188.
[8]Mihai A E,Gerea A G,Curioni G,et al. Direct measurements of tree root relative permittivity for the aid of GPR forward models and site surveys[J]. Near Surface Geophysics,2019,17(3):299-310.
[9]Yamase K,Tanikawa T,Dannoura M,et al. Estimating slope stability by lateral root reinforcement in thinned and unthinned stands of Cryptomeria japonica using ground-penetrating radar[J]. Catena,2019,183:104227.
[10]Altdorff D,Botschek J,Honds M,et al. In situ detection of tree root systems under heterogeneous anthropogenic soil conditions using ground penetrating radar[J]. Journal of Infrastructure Systems,2019,25(3):05019008.
[11]崔喜红,陈晋,沈金松,等. 基于探地雷达的树木根径估算模型及根生物量估算新方法[J]. 中国科学:地球科学,2011,41(2):243-252.
[12]Barton C V M,Montagu K D.Detection of tree roots and determination of root diameters by ground penetrating radar under optimal conditions[J]. Tree Physiology,2004,24(12):1323-1331.
[13]Warren C,Giannopoulos A,Giannakis I.gprMax:Open source software to simulate electromagnetic wave propagation for Ground Penetrating Radar[J]. Computer Physics Communications,2016,209:163-170.
[14]陈德莉,黄春琳,粟毅. 用统计方法和Hough变换进行GPR目标检测与定位[J]. 电子学报,2004,32(9):1468-1471.
[15]Daniels D J.Surface-penetrating radar[J]. Electronics & Communication Engineering Journal,1996,8(4):165-182.
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