光学 精密工程, 2020, 28 (8): 1861, 网络出版: 2020-11-02   

第一人称视角地形轮廓草图的真实空间重建

Real spatial terrain reconstruction of first person point-of-view sketches
作者单位
西北大学 信息科学与技术学院, 陕西 西安 710127
引用该论文

曾升, 耿国华, 邹林波, 周明全. 第一人称视角地形轮廓草图的真实空间重建[J]. 光学 精密工程, 2020, 28(8): 1861.

ZENG Sheng, GENG Guo-hua, ZOU Lin-bo, ZHOU Ming-quan. Real spatial terrain reconstruction of first person point-of-view sketches[J]. Optics and Precision Engineering, 2020, 28(8): 1861.

参考文献

[1] CHOY C.B, XU D, GWAK J, et al.. 3D-R2N2: A unified approach for single and multi-view 3D object reconstruction[C]. European Conference on Computer Vision, 2016.

[2] SAXENA A, SUN M, NG A Y. Make3D: Learning 3D scene structure from a single still image[J]. IEEE Transactions on Pattern Analysis and Machine Intelligence, 2009, 31(5): 824-840.

[3] NIU C, LI J, XU K. Im2Struct: Recovering 3D shape structure from a single RGB image[C]. The IEEE Conference on Computer Vision and Pattern Recognition (CVPR), 2018: 4521-4529.

[4] WU J, ZHANG C, ZHANG X, et al.. Learning shape priors for single-view 3D completion and reconstruction[C].Computer Vision - ECCV, 2018: 673-691.

[5] WANG P S, SUN C Y, LIU Y, et al.. Adaptive O-CNN: A patch-based deep representation of 3D shapes[J]. ACM Trans. Graph. 2018, 37(6): 1-11.

[6] LIU C, YANG J, CEYLAN D, et al.. PlaneNet: Piece-wise planar reconstruction from a single RGB image[C]. CVPR, 2018.

[7] LI C, PAN H, LIU Y, et al.. BendSketch: Modeling freeform surfaces through 2D sketching[J]. Acm Transactions on Graphics, 2017, 36(4): 125.

[8] 杨洪波. CAD建模中的草图约束处理 [J]. 光学 精密工程, 1995, 3(6): 18-22.

    YANG H B. Sketch constraint processing in CAD modeling[J]. Opt. Precision Eng., 1995, 3(6): 18-22.(in Chinese).

[9] EITZ M, HILDEBRAND K, BOUBEKEUR T, et al.. An evaluation of descriptors for large-scale image retrieval from sketched feature lines[J]. Computers and Graphics, 2010, 34(5): 482-498.

[10] VOSS R.F. Fractals in Nature: From Characterization to Simulation[M]. In: Peitgen HO., Saupe D. (eds) The Science of Fractal Images. Springer, 1988.

[11] ZHOU H, SUN J, TURK G, et al.. Terrain synthesis from digital elevation models[J]. IEEE Transactions on Visualization and Computer Graphics, 2007, 13(4): 834-848.

[12] 王莹,王延杰,周渝人,等. 基于注入式仿真平台的自适应真实感地形生成算法 [J]. 光学 精密工程, 2014, 22(12): 3419-3426.

    WANG. Y, WANG Y J, ZHOU Y R, et al.. Real adaptive topography optimization algorithm based on injection simulation platform [J]. Opt. Precision Eng., 2014, 22(12): 3419-3426.(in Chinese).

[13] RUSNELL B, MOULD D, ERAMIAN M G. Feature-rich distance-based terrain synthesis[J]. The Visual Computer, 2009, 25(5-7): 573-579.

[14] J E GAIN, P MARAIS, W STRA?ER. Terrain sketching[C]. The 2009 ACM SIGGRAPH Symposium on Interactive 3D Graphics and Games, 2009.

[15] F P TASSE, J E GAIN, P MARAIS. Enhanced texture-based terrain synthesis on graphics hardware[J]. Computer Graphics Foru, 2012, 31(6): 1959-1972.

[16] F P TASSE, A EMILIEN, M P CANI, et al.. Feature-based terrain editing from complex sketches[J]. Computers & Graphics, 2014, 4: 101-115.

[17] V A D PASSOS, T IGARASHI. Landsketch: A first person point-of-view example-based terrain modeling approach[C]. In: International Symposium on Sketch-based Interfaces & Modeling, 2013.

[18] M ARIYAN, D. MOULD. Terrain synthesis using curve networks[C]. In: Graphics Interface Conference, 2015.

[19] K KETABCHI, A RUNIONS, F F SAMAVATI. 3D maquetter: Sketch-based 3D content modeling for digital earth[C]. In: International Conference on Cyberworlds, 2016: 415.

[20] M Becher, M Krone, G Reina, et al.. Feature-based volumetric terrain generation[J]. IEEE Transactions on Visualization and Computer Graphics, 2017, 8(99): 1-1.

[21] TALGORN, F. BELHADJ. Real-time sketch-based terrain generation[C]. Computer Graphics International, 2018: 13-18.

[22] 赵祚喜, 冯荣, 朱裕昌,等. 空间点的多视图DLT三维定位[J]. 光学 精密工程, 2020, 28(1): 212-222.

    ZHAO ZUO-XI, FENG RONG, ZHU YU-CHANG, et al.. Multi-view DLT three-dimensional positioning method for spatial points[J]. Opt. Precision Eng., 2020, 28(1): 212-222. (in Chinese).

[23] 李云雷, 张曦, 屠大维. 基于立体定向靶标的探针式多视场三维视觉测量系统[J]. 光学 精密工程, 2019, 27(1): 34-44.

    LI YUN-LEI, ZHANG XI, TU DA-WEI. Probe-based multi-view field 3D vision measurement system based on three-dimensional orientation target[J]. Opt. Precision Eng., 2019, 27(1): 34-44. (in Chinese).

[24] 于洋, 朴燕, 倪焱,等. 基于ROS与三维点云图像的室内物体精准定位[J]. 液晶与显示, 2019, 34(6): 598-604.

    YU YANG, PIAO YAN, NI YAN, et al.. Precise location of indoor objects based on ROS and point cloud images[J]. Chinese Journal of Liquid Crystals and Displays, 2019, 34(6): 598-604. (in Chinese).

[25] 韩延祥 张志胜 戴敏. 用于目标测距的单目视觉测量方法[J]. 光学 精密工程, 2011,19(5): 1110-1117.

    HAN. Y X, ZHANG Z S, DAI M. Monocular vision system for distance measurement based on feature points[J]. Opt. Precision Eng., 2011, 19(5): 1110-1117 (in Chinese).

[26] GODARD, CLéMENT, MAC AODHA O, et al.. Unsupervised Monocular Depth Estimation with Left-Right Consistency[C]. IEEE Conference on Computer Vision and Pattern Recognition (CVPR), 2016.

[27] CHU H, MA W C, URTASUN R, et al.. SurfConv: Bridging 3D and 2D Convolution for RGBD Images[C]. IEEE Conference on Computer Vision and Pattern Recognition (CVPR), 2018.

[28] BATTIATO S, CURTI S, CASCIA M L. Depth map generation by image classification[C]. Three-dimensional Image Capture & Applications VI. International Society for Optics and Photonics, 2004.

[29] HA H, IM S, PARK J, et al.. High-quality depth from uncalibrated small motion Clip[C]. IEEE Conference on Computer Vision and Pattern Recognition (CVPR), IEEE, 2016.

[30] 刘东生, 陈建林, 费点,等. 基于深度相机的大场景三维重建[J]. 光学 精密工程, 2020, 28(1).: 234-243.

    LIU DONG-SHENG, CHEN JIAN-LIN FEI DIAN, et al.. Three-dimensional reconstruction of large-scale scene based on depth camera[J]. Opt. Precision Eng., 2020, 28(1): 234-243. (in Chinese).

[31] ZHOU, PENGBO ,LI K, WEI W, et al.. Fast generation method of 3d scene in chinese landscape painting[J]. Multimedia Tools & Applications. doi: org/10.1007/s11042-019-7476-9.20. 2019.

[32] BLOOMENTHAL, JULES, ROKNE, et al.. Homogeneous coordinates[J]. Visual Computer, 425(1994) 15-26.

[33] 孙洪泉. 《分形几何与分形插值》[M]. 北京: 科学出版社, 2011.

    SUN HONG-QUAN. Fractal Geometry and Fractal Interpolation[M]. Beijing: Science Press, 2011.(in Chinese).

[34] K PERLIN. Improving noise[J]. Acm Transactions on Graphics, 2002, 21 (3): 681-682.

[35] D MATTPHARR, N G HUMPHREYS. Physically based Rendering[M]. San Francisco: Morgan Kaufmann, 2010.

曾升, 耿国华, 邹林波, 周明全. 第一人称视角地形轮廓草图的真实空间重建[J]. 光学 精密工程, 2020, 28(8): 1861. ZENG Sheng, GENG Guo-hua, ZOU Lin-bo, ZHOU Ming-quan. Real spatial terrain reconstruction of first person point-of-view sketches[J]. Optics and Precision Engineering, 2020, 28(8): 1861.

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