[ 1 ] 叶宝玉,王钦若,熊建斌,等. 基于超声波的模型船舶
室内定位系统研究[J]. 计算机工程,2012,38(19):
258-260,265.
[ 2 ] Medina C,Segura J C,de la Torre A. Ultrasound Indoor
Positioning System Based on a Low-power Wireless
Sensor Network Providing Sub-centimeter Accuracy[J].
Sensors,2013,13(3):3501-3526.
[ 3 ] 任晓奎,郭海雯. 基于超声波和GPS 技术的车辆防碰
预警系统[J]. 计算机测量与控制,2013,21 (3):
694-696.
[ 4 ] 安葳鹏,李长青. 超声波汽车追尾仪的研究[J]. 计算
机工程,2001,27(1):189-190.
[ 5 ] 王荣扬,钱振华,殷勇辉. 基于FPGA 的互相关无串扰
超声测距系统[J]. 计算机工程,2013,39(8):307-313.
[ 6 ] 戴华平,胡红亮. 基于耦合同步混沌系统的超声波测
距方法[J]. 计算机工程,2013,39(5):23-27.
[ 7 ] 陈 建,孙晓颖. 一种高精度超声波到达时刻的检测
方法[J]. 仪器仪表学报,2013,33(11):2422-2428.
[ 8 ] 张攀峰,王玉萍. 带有温度补偿的超声波测距仪的设
计[J]. 计算机测量与控制,2012,20(6):1717-1719.
[ 9 ] 曾祥进,王 敏,黄心汉. 自动增益电路在超声波测距
系统中的应用研究[J]. 测控技术,2005,24(7):69-71.
[10] Kimura T. A High Resolution Ultrasonic Range
Measurement Method Using Double Frequencies and
Phase Detection [ C ] / / Proceedings of the IEEE
Ultrasonics Symposium. Settle,USA:IEEE Press,1995:
737-741.
[11] Huang K N, Huang Yupei. Multiple-frequency Ultrasonic
Distance Measurement Using Direct Digital
Frequency Synthesizers [J]. Sensors and Actuators A:
Physical,2009,149(1):42-50.
[12] Huang C, Young M, Li Y. Multiple-frequency Continuous
Wave Ultrasonic System for Accurate Distance
Measurement [ J ]. Review of Scientific Instruments,
1999,70(2):1452-1458.
[13] Huang Y,Young M S. An Accurate Ultrasonic Distance
Measurement System with Self Temperature Compensation
[ J ]. Instrumentation Science and Technology,
2009,37(1):124-133.
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