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Adam4586
- 基于超声波检测的倒车雷达设计 其原理为:在超声波发射器两端输入10个40kHz脉冲串,脉冲电信号经过超声波内部振子,振荡出机械波,通过空气,介质传播到被测面,由被测面反射,超声波接收器接收-Based on ultrasonic testing of reversing radar design The principle is: In the ultrasonic transmitter at both ends of input 10 40kHz pulse train, pulse u
daoche
- 倒车雷达系统,51单片机控制程序,超声波采集信号,18b20进行温度补偿-Back-draft radar system, 51 single-chip microcomputer control procedures, ultrasonic signal collection, 18b20 temperature compensation
ultrasonic
- 基于超声波检测的倒车雷达设计 其原理为:在超声波发射器两端输入10个40kHz脉冲串,脉冲电信号经过超声波内部振子,振荡出机械波,通过空气,介质传播到被测面,由被测面反射,超声波接收器接收-Based on ultrasonic testing of reversing radar design The principle is: In the ultrasonic transmitter at both ends of input 10 40kHz pulse train, pulse u
UltrasonicParkingRadarSystemDesign
- 基于超声波检测的倒车雷达设计 其原理为:在超声波发射器两端输入10个40kHz脉冲串,脉冲电信号经过超声波内部振子,振荡出机械波,通过空气,介质传播到被测面,由被测面反射,超声波接收器接收-Based on ultrasonic testing of reversing radar design The principle is: In the ultrasonic transmitter at both ends of input 10 40kHz pulse train, pulse u
cheyong
- 车用超声波测距倒车雷达设计 AT89c51 lm567-Car parking sensor Ultrasonic Ranging design AT89c51 lm567
kaitibaogao
- 这是毕设时自己写的关于超声波倒车雷达测距的开题报告 希望对大家有所帮助-This is a complete set when the write on the ultrasonic parking sensor ranging opening report you want to help
CarParkingSensorBasedOnSingleChipSystemDesign
- 本设计是基于单片机的汽车倒车雷达系统,主要是利用超声波的特点和优势,将超声波测距系统和AT89C51单片机结合于一体,设计出一种基于AT89C51单片机的倒车防撞系统。-This design is based on the single chip car parking sensor system is mainly features and advantages of using ultrasound, the AT89C51 microcontroller ultrasonic rangi
ASW
- 基于AT89C51单片机的超声波倒车雷达系统设计 -AT89C51 microcontroller based ultrasonic parking sensor system
jiyuAT89C51dianpianjidaochelieda
- 【摘要】 倒车雷达是汽车泊车或者倒车时的安全辅助装置,能以声音或者更为直观的显示告知驾驶员周围障碍物的情况,解除了驾驶员泊车、倒车和起动车辆时前后左右探视所引起的困扰,并帮助驾驶员扫除了视野死角和视线模糊的缺陷,提高驾驶的安全性。本设计利用ATMEL公司的AT89C51单片机、超声波传感器测距实现超声波倒车雷达。利用LED和发光二极管表示传感器探测范围内是否有障碍物,当在探测范围内有障碍物时,发光管以一定频率闪烁,闪烁的频率以距离定,距离越近频率越高。同时蜂鸣器提示报警,探测并指明障碍
MCU007
- 超声波倒车测距语音播报智能小车设计系统,包含硬件设计和软件设计。-Ultrasonic parking distance voice broadcast intelligent car design system, including hardware and software design.
超声波测距仪的设计
- 电子测距仪要求测量范围在0.10~5.00m,测量精度1cm,测量时与被测物体无直接接触,能够清晰稳定地显示测量结果。由于超声波指向性强,能量消耗缓慢,在介质中传播的距离较远,因而超声波经常用于距离的测量,如测距仪和物位测量仪等都可以通过超声波来实现。超声波测距器,可以应用于汽车倒车、建筑施工工地以及一些工业现场的位置监控,也可用于液位、井深、管道长度的测量等场合。利用超声波检测往往比较迅速、方便、计算简单、易于做到实时控制,并且在测量精度方面能达到工业实用的要求,因此在移动机器人的研制上也得到
vp712
- 基于matlab GUI界面设计,关于超声波倒车雷达测距的,部分实现了追踪测速迭代松弛算法。- Based on matlab GUI interface design, About ultrasonic parking radar ranging, Partially achieved tracking speed iterative relaxation algorithm.
dgdhp
- IMC-PID是利用内模控制原理来对PID参数进行计算,模拟数据分析处理的过程,关于超声波倒车雷达测距的。- The IMC- PID is using the internal model control principle for PID parameters is calculated, Analog data analysis processing, About ultrasonic parking radar ranging.
hei_yf14
- 基于K均值的PSO聚类算法,可以提取一幅图中想要的目标,关于超声波倒车雷达测距的。- K-means clustering algorithm based on the PSO, Target can be extracted in a picture you want, About ultrasonic parking radar ranging.
jaofingpun
- 关于超声波倒车雷达测距的,相关分析过程的matlab方法,LCMV优化设计阵列处理信号。- About ultrasonic parking radar ranging, Correlation analysis process matlab method, LCMV optimization design array signal processing.
inugx
- 关于超声波倒车雷达测距的,基于掌纹识别的在线身份验证 识别算法本科毕设,包括回归分析和概率统计。- About ultrasonic parking radar ranging, Verify recognition algorithm based on palmprint recognition undergraduate complete set of online identity, Including regression analysis and probability and sta
mao-V4.6
- 基于互功率谱的时延估计,ldpc码的编解码实现,关于超声波倒车雷达测距的。- Based on the time delay estimation of power spectrum, Codec ldpc code implementation About ultrasonic parking radar ranging.
xneay
- 包括最小二乘法、SVM、神经网络、1_k近邻法,可以提取一幅图中想要的目标,关于超声波倒车雷达测距的。- Including the least squares method, the SVM, neural networks, 1 _k neighbor method, Target can be extracted in a picture you want, About ultrasonic parking radar ranging.
qaofiutui
- 关于超声波倒车雷达测距的,研究生时的现代信号处理的作业,D-S证据理论数据融合。- About ultrasonic parking radar ranging, Modern signal processing jobs when the graduate, D-S evidence theory data fusion.
hiu_mj08
- 关于超声波倒车雷达测距的,毕设内容,高光谱图像基本处理,相控阵天线的方向图(切比雪夫加权)。- About ultrasonic parking radar ranging, Complete set content, basic hyperspectral image processing, Phased array antenna pattern (Chebyshev weights).