范文编号:DZXX460 范文字数:14802基于单片机的超声波倒车雷达设计[摘 要]:超声波是频率高于20KHZ的声波具有指向性强,能量消耗很缓慢,在介质中传播的距离较远,因此超声波经常用于距离的测量,例如测距仪和物位测量仪等都可以通过超声波来实现。利用超声波检测往往比较迅速、高效、计算简单、易于做到实时控制,并且在..
范文编号:DZXX460 范文字数:14802 基于单片机的超声波倒车雷达设计 [摘 要]:超声波是频率高于20KHZ的声波具有指向性强,能量消耗很缓慢,在介质中传播的距离较远,因此超声波经常用于距离的测量,例如测距仪和物位测量仪等都可以通过超声波来实现。利用超声波检测往往比较迅速、高效、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。因此在液位、井深、管道长度的测量、移动机器人定位和避障等领域也得到了广泛的应用。基于此,本次设计尝试使用AT89S52与HC-SR04模块来实现超声波的测量,结合外围电路模块实现距离显示和报警构成超声波测距系统。 本次超声波测距系统由单片机计时及控制电路、超声波发射接收模块、测量距离显示电路、报警电路等部分组成。详细介绍了超声波测距模块及AT89S52单片机的测距原理。以HC-SR04超声波测距模块为核心实现超声波的发射与接收。显示电路采用数码管以及三极管显示控制,报警电路由蜂鸣器与三极管组成。整体电路结构简单,成本低廉,工作稳定,测量精度也达到实际应用要求。 [关键词]: AT89C52,HC-SR04,超声波,测距 目录 摘要······························································1 1 绪论 ··························································2 1.1 项目研究背景及意义·······································2 1.2 范文结构················································2 2 总体设计方案及论证 ·············································2 2.1 总体方案设计 ············································2 3 硬件实现及单元电路设计 ········································3 3.1 主控制模块 ···············································3 3.2 电源设计 ·················································4 3.3 超声波测试模块 ···········································4 3.3.1 超声波的特性 ·······································5 3.3.2 超声波换能器 ·······································6 3.4 超声波传感器原理 ·········································8 3.5 测距分析 ···············································12 3.6 单片机AT89C52····················································13 3.7 声音报警电路的设计 ······································14 3.8 显示模块 ················································14 4 软件设计 ·····················································15 4.1 主程序工作流程图 ········································15 5 总结 ·························································17 6 参考文献 ·····················································17 附 录 ···························································18 附件A:实物作品操作 ·········································18 附件1:原理图 ···············································21 附件2:程序 ·················································22 附件3:元件清单 ·············································29 倒车雷达测距仪相关范文 |
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