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Tire Pressure Monitoring System Using SoC and Low Power Design 被引量:1
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作者 A. Vasanthara K. Krishnamoorthy 《Circuits and Systems》 2016年第13期4085-4097,共13页
This paper presents the tire pressure monitoring system (TPMS) by using the system on chip (SoC) mixed signals with the help of Bluetooth transmission and in advantage of low power consumption design. This is to monit... This paper presents the tire pressure monitoring system (TPMS) by using the system on chip (SoC) mixed signals with the help of Bluetooth transmission and in advantage of low power consumption design. This is to monitor the variations in temperature and pressure of the vehicle’s tire, and the TPMS system is involved. It improves the driver’s safety by automatically detecting the tire pressure and temperature and then warning signal is sent to driver to take a measure, which prevents from accident. The proposed system of tire pressure monitoring system using SoC increases the speed of indication time to the driver by using mixed signals. The inflation of the tire can be avoided by preventing from high temperature and high pressure. Limitation of temperature and pressure in the previous system is also elongated i.e. temperature from 40℃ to 125℃ and pressure from 0 to 750 Kpa. Sensors, wireless communication (Bluetooth dongle) and SoC unit are used to design the low power TPMS. Quantitative results are taken and the analogy between temperature and pressure is also verified. The tested results proved by need of the practical system. Signal conditioning voltage and SoC unit is the trace for low power design TPMS. Finally, the performance of the system is tested and executed by using proteus software given as a real time application. 展开更多
关键词 Wireless communication Tire pressure Monitoring System (TPMS) Blue-tooth dongle System on Chip (SoC) pressure and temperature sensors
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轮胎压力监测系统设计及仿真研究 被引量:1
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作者 周玉兰 刘春孝 +1 位作者 柴永生 王燕涛 《科学技术与工程》 2007年第15期3823-3827,3859,共6页
将多传感器信息融合技术应用于轮胎压力监测系统,提高其精度。本文运用贝叶斯方法对轮胎的压力和温度进行融合。基于LabVIEW的仿真结果验证了本系统的优越性、可行性、实用性,为监测轮胎压力、保证行车安全提供了一个更为有效的途径。
关键词 轮胎 压力 温度 多传感器
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