Research on Digital Phase Difference Measuring Instrument

2013 ◽  
Vol 329 ◽  
pp. 368-372
Author(s):  
Wei Hua Wu

The paper presents the digital phase measuring instrument based on MSP430 single-chip microcomputer. The instrument adopted the technology of DDS to generate sinusoidal signal, and FPGA to achieve phase difference measurement and polarity judgment. The system is composed of a filtering circuit, a phase shifting network, a shaping circuit, matrix keyboard, LCD display module and the frequency is in the range from 200Hz to 10kHz, the phase difference is in the range of-180°~+180 °, the resolution ratio is 0.1°, the absolute error is less than ±2 °, and the relative error is less than ± 3%.

2012 ◽  
Vol 182-183 ◽  
pp. 670-675
Author(s):  
Cheng Ying Wu ◽  
Zhan You Fan ◽  
Hong Jiao Ma ◽  
Zai Min He ◽  
Zhao Ming Wang

In order to achieve high-accuracy, high speed and low cost A/D conversion, a new design based on STC12C5A32S2 single-chip microcomputer (SCM) is given. Compared with the previous A/D conversion, the biggest advantage is that the paper combine software with hardware and it can adjust the speed of transformation through procedure.We don't need to modify circuit, just need to modify signals of input and procedures. So the flexibility of A/D conversion can be enhanced, also saved costs. The design mainly makes use of new function of STC12C5A32S2 SCM to realize conversion between analog signals and digital signals. In order that researchers can analyze and use the convention results, the design add a LCD display module. The paper primarily analyses the design of circuit and interface technology between the SCM and other chips. Also, the peculiar function of STC, the LCD display method of LMB202DDC and the flow of software are expounded in detail. The simulation result based on Proteus is given by the end of paper.


2014 ◽  
Vol 926-930 ◽  
pp. 1226-1229
Author(s):  
Zhi Jian Yin ◽  
Qiang Luo ◽  
Kun Xiang ◽  
Fan Wang

This system based on single-chip microcomputer control, with buttons and LCD monitor as the man-machine interface of numerical control dc power supply. System is mainly composed of rectification filter circuit, the output current control module, LCD display module current and voltage controlled constant current module. Button to SCM number controls the size of the output current DAC0832, LCD display the current value. This system controlled by single chip microcomputer DA output, make the whole circuit system has a stable output current, step precision is high, easy to control, etc.


2012 ◽  
Vol 468-471 ◽  
pp. 863-866
Author(s):  
Hai Feng Zhou ◽  
Jing De Dong ◽  
Yuan Qing Huang

This paper set up a data acquisition system by AT89C52 single chip microcomputer as control core, using the RS-232 serial manner communicated with responsibled for data acquisition of microprocessor, and used LED to display. System can be divided into data acquisition module, serial communication module, control module, keyboard module, display module, etc. System of multi-channel data acquisition can be displayed in the LED after processed. The hardware circuit and software realized design functions :data acquisition and LED display.


2014 ◽  
Vol 599-601 ◽  
pp. 1470-1473 ◽  
Author(s):  
Jian Pu Bia ◽  
Mei Xia Gao

This paper discusses the ultrasonic rangefinder car reversing system working principle based on single chip microcomputer control. Ultrasonic ranging module HC-SR04 is called to transmit and receive ultrasound by single chip computer, temperature is detected through the DS18B20 temperature sensor, the compensation of ultrasonic velocity influenced by temperature is done, and the display and alarm of distance and temperature are achieved by combining with the peripheral circuit module. On the basis of system hardware design, system software is designed and analyzed in detail. At present, traffic accidents multiplied considerably with the exponential increase of the number of sedans in the domestic. For this reason, varied demands are put forward about reversing system. There are many varieties of reversing system, divided into three kinds: laser rangefinder reversing system, infrared rangefinder reversing system and ultrasonic rangefinder reversing system. It is the operational principle of laser rangefinder reversing system that the distance between the car and the object is figured out by calculating the time from laser shot, vehicle mounted laser transmitter emits a very fine laser to the target, to receiving the bounced laser which is received by the optoelectronic device from the target. The advantages of the system are that the range is extremely accurate and the effect of real-time control is striking. However, it is more expensive than others. Infrared rangefinder reversing system measures the distance based on the principle of infrared light without diffusion with the modulated infrared. And the measurement range generally is 1 to 5km. The real time of this reversing system is not very good but it has price advantage. Ultrasonic transmitter launches ultrasound to the obstacle, starting the timer, and the wave will be reflected .At the same time, ultrasonic receiving module detects the reflected beam constantly. Once reverberated ultrasound was detected, timekeeper stops working. According to the time displayed in the timer and the velocity of propagation of the beam in the air this moment, and after they are processed by single-chip micro-computer, the distance between car and barrier is figured out .The above is the working philosophy of ultrasonic rangefinder reversing system. The system is worse than laser rangefinder reversing system and infrared rangefinder reversing system in accuracy and real time for the influence of environment on the ultrasonic wave is relatively large. The requirements of family car for these two aspects are not very high and the ultrasonic rangefinder reversing system is cheaper than the other two systems, so this design uses the ultrasonic ranging scheme. Hardware Design of the System Transmitting and receiving ultrasonic are controlled by single-chip microcomputer in this system. First, what the system has to do is completing the ranging task without contact, detecting the temperature at the time to compensate the velocity of ultrasonic and figuring out the propagation velocity of ultrasound this moment in the air. Finally, the distance can be calculated with the speed detected by the single chip computer and the propagation. Then a series of data is processed in single-chip microcomputer and then set to the peripheral devices which fulfill the corresponding display, alarm and other tasks. So the driver can get the information quickly to make the appropriate action. Affected by the sensor characteristics, the system can carry on the distance measurement in the 3m range, the exact data shown in LCD, test and display the field temperature and compensate the corresponding velocity of ultrasonic wave to increase the applications. If the distance is less than 100 cm, buzzer makes alarm in a certain frequency, the lights of the digital pipe which is used for displaying data flashes and light-emitting diode lights to tell the driver the corresponding distance. And the frequency of buzzer becomes higher as the distance becomes closer. If the distance is beyond the measuring range, the distance display module shows 3 bars, LED lights, trembler buzz, while the temperature measurement module and the temperature display module work regularly.


2018 ◽  
Vol 228 ◽  
pp. 03009
Author(s):  
Yajing Yu

The purpose of the subject is to design a car based on 51 single chip microcomputer control of nuclear intelligence toy car. Design is mainly divided into four modules respectively control module, test module, drive module, display module. Detection module by infrared receiving tube as tracking and obstacle avoidance of the detector to external environment for testing, testing mileage with hall element as the detector, test results of the test modules to control module, control module processed signal into the driver module to control the car turn left, turn right, forward, backward, at the same time control module and analysis processing state of marching into the 1602 LCD liquid crystal display status display. After many trials completed hardware design, the control core programming and sensor debug, finally realize the automatic tracking of toy cars, intelligent obstacle avoidance, mileage of display design requirements, and increase the car alarm, lights flashing remind and additional features such as voice control.


2021 ◽  
Vol 1750 ◽  
pp. 012037
Author(s):  
Yong Chen ◽  
Shudong Wang ◽  
Hao Wang ◽  
Shen Liu ◽  
Runqing Li

Sign in / Sign up

Export Citation Format

Share Document