[1] FORSSBLAD L.Compaction meter on vibrating rollers for improved compaction control[C]//ICC.Proceedings of International Conference on Compaction.Paris:Presses Pon-tset Chaussees,1980:541-546.
[2]BOARD T R.Intelligent soil compaction systems[M].Washington DC:Transportation Research Board,2010.
[3]XU Q W,CHANG G K,GALLIVAN V L,et al.Influences of intelligent compaction uniformity on pavement performances of hot mix asphalt[J].Construction and Building Materials,2012,30:746-752.
[4]叶阳升,蔡德钩,朱宏伟,等.基于振动能量的新型高速铁路路基压实连续检测控制指标研究[J].铁道学报,2020,42(7):127-132.
YE Yang-sheng,CAI De-gou,ZHU Hong-wei,et al.Research on new continuous compaction control index of high-speed railway subgrade based on vibration energy[J].Journal of the China Railway Society,2020,42(7):127-132.
[5]MEEHAN C L,CACCIOLA D V,TEHRANI F S,et al.Assessing soil compaction using continuous compaction control and location-specific in situ tests[J].Automation in Construction,2017,73:31-44.
[6]HU W,HUANG B S,SHU X,et al.Utilising intelligent compaction meter values to evaluate construction quality of asphalt pavement layers[J].Road Materials and Pavement Design,2017,18(4):980-991.
[7]THURNER H.A new device for instant compaction control[C]//ICC.Prcoeedings International Conference on Compaction.Paris:Presses Pon-tset Chaussees,1980:1-20.
[8]CAI H B,KUCZEK T,DUNSTON P S,et al.Correlating intelligent compaction data to in situ soil compaction quality measurements[J].Journal of Construction Engineering and Management,2017,143(8):04017038.
[9]ANJAN K S,ALDOURI R,NAZARIAN S,et al.Accelerated assessment of quality of compacted geomaterials with intelligent compaction technology[J].Construction and Building Materials,2016,113:824-834.
[10]HU W,JIA X Y,ZHU X Y,et al.Investigating key factors of intelligent compaction for asphalt paving:A comparative case study[J].Construction and Building Materials,2019,229:116876.
[11]安再展,刘天云,皇甫泽华,等.利用CMV评估堆石料压实质量的神经网络模型[J].水力发电学报,2020,39(4):110-120.
AN Zai-zhan,LIU Tian-yun,HUANGPU Ze-hua,et al.Neural network model for evaluating compaction quality of rockfill materials by compaction meter value[J].Journal of Hydroelectric Engineering,2020,39(4):110-120.
[12]徐光辉,雒泽华.连续压实控制技术中压实计方法的谐波比指标的局限性问题研究[J].筑路机械与施工机械化,2015,32(8):39-42.
XU Guang-hui,LUO Ze-hua.Research on limitation of harmonic ratio of compaction meter for continuous compaction control[J].Road Machinery & Construction Mechanization,2015,32(8):39-42.
[13]徐光辉.路基连续压实控制动力学原理与工程应用[M].北京:科学出版社,2016.
XU Guang-hui.Dynamics principle and engineering application for continuous compaction control of fill engineering of subgrade[M].Beijing:Science Press,2016.
[14]秦四成.振动压路机[M].北京:化学工业出版社,2006.
QIN Si-cheng.Vibratory roller[M].Beijing:Chemical Industry Press,2006.
[15]张青哲,杨人凤,戴经梁.振动压实过程土体参数识别方法研究[J].公路交通科技,2009,26(8):6-10,27.
ZHANG Qing-zhe,YANG Ren-feng,DAI Jing-liang.Study on identification of soil parameters in vibrating compaction[J].Journal of Highway and Transportation Research and Development,2009,26(8):6-10,27.
[16]曹源文,周 博,李升连,等.压实度实时检测技术的研究[J].重庆交通大学学报(自然科学版),2020,39(4):80-85,97.
CAO Yuan-wen,ZHOU Bo,LI Sheng-lian,et al.Real-time detection technology of compaction degree[J].Journal of Chongqing Jiaotong University(Natural Science),2020,39(4):80-85,97.
[17]刘习军,贾启芬,张素侠.振动理论及工程应用[M].2版.北京:机械工业出版社,2018.
LIU Xi-jun,JIA Qi-fen,ZHANG Su-xia.Vibration theory and engineering application[M].2nd ed.Beijing:China Machine Press,2018.
[18]王高雄,周之铭,朱思铭.常微分方程[M].3版.北京:高等教育出版社,2006.
WANG Gao-xiong,ZHOU Zhi-ming,ZHU Si-ming.Ordinary differential equation[M].3rd ed.Beijing:Higher Education Press,2006.
[19]黄志福,梁乃兴,赵 毅,等.路面压实度自动连续检测技术[J].长安大学学报(自然科学版),2015,35(6):24-32,55.
HUANG Zhi-fu,LIANG Nai-xing,ZHAO Yi,et al.Automatic and continuous detection technology of pavement compaction degree[J].Journal of Chang'an University(Natural Science Edition),2015,35(6):24-32,55.
[20]陈忠达,李万鹏.风积沙振动参数及振动压实机理[J].长安大学学报(自然科学版),2007,27(1):1-6.
CHEN Zhong-da,LI Wan-peng.Vibratory parameters and vibratory compacting mechanism of eolian sand[J].Journal of Chang'an University(Natural Science Edition),2007,27(1):1-6.
[21]沙爱民,陈开圣,马 峰.黄土室内振动压实特性试验[J].长安大学学报(自然科学版),2008,28(1):1-5.
SHA Ai-min,CHEN Kai-sheng,MA Feng.Indoor test on physical-mechanical properties of loess under vibration compaction[J].Journal of Chang'an University(Natural Science Edition),2008,28(1):1-5.
[22]李 冰,焦生杰.振动压路机与振动压实技术[M].北京:人民交通出版社,2001.
LI Bing,JIAO Sheng-jie.Vibratory roller and vibratory compaction[M].Beijing:China Communications Press,2001.