Energy-Efficient Wireless Transmissions for Battery-Less Vehicle Tire Pressure Monitoring System

This paper presents an energy-efficient wireless transmission scheme for battery-less vehicle tire pressure monitoring system (TPMS). Our proposed transmission scheme includes a wake-up communication link with 125-kHz carrier frequency and a data communication link with 433-MHz carrier frequency. Co...

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Main Authors: Qinmiao Kang, Xudong Huang, Yong Li, Zhifeng Xie, Yongquan Liu, Ming Zhou
Format: Article
Language:English
Published: IEEE 2018-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8121968/
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spelling doaj-03bf3ada830340808b1b058f93a8bc1e2021-03-29T20:36:32ZengIEEEIEEE Access2169-35362018-01-0167687769910.1109/ACCESS.2017.27780718121968Energy-Efficient Wireless Transmissions for Battery-Less Vehicle Tire Pressure Monitoring SystemQinmiao Kang0Xudong Huang1Yong Li2https://orcid.org/0000-0001-5617-1659Zhifeng Xie3Yongquan Liu4Ming Zhou5School of Aerospace Engineering, Tsinghua University, Beijing, ChinaSchool of Aerospace Engineering, Tsinghua University, Beijing, ChinaDepartment of Electronic Engineering, Tsinghua University, Beijing, ChinaSchool of Aerospace Engineering, Tsinghua University, Beijing, China606 Institute, Chinese Aeronautical Establishment, Shenyang, ChinaSchool of Aerospace Engineering, Tsinghua University, Beijing, ChinaThis paper presents an energy-efficient wireless transmission scheme for battery-less vehicle tire pressure monitoring system (TPMS). Our proposed transmission scheme includes a wake-up communication link with 125-kHz carrier frequency and a data communication link with 433-MHz carrier frequency. Considering the TPMS application requirements and the special nature of the vehicle environment, we derive the relevant circuit parameters. In order to verify the reliability of the wireless communication system under the derived circuit parameters, we design an in-tire data transmitter and wake-up receiver. The 125-kHz wake-up receiver adopts dual-channel to improve the communication reliability and logarithmic amplifiers to achieve ASK demodulation and dynamic range compression. The receiver is implemented in 0.35-μm high voltage (HV) BCD process. Experiment results show that typical power consumption of the receiver is no more than 5 μA under 3.3 V supply voltage; the maximum data rate is 35 kb/s with 0.5 mVpp sensitivity. On the other hand, the data transmitter is implemented in 0.18-μm MMRF process. Experiment results show that the typical power consumption is 7.3 mA under 1.8 V supply voltage, and the emission power is -10 dBm@433.92 MHz with a phase noise of -103 dBc/Hz@300 kHz. System level experiments demonstrate that the proposed wireless transmission scheme fulfills the vehicle TPMS requirements. The data transmitter and wake-up receiver can communicate with the commercial data receiver and wake-up transmitter in the range of 20 m, which meets the requirements of most vehicles.https://ieeexplore.ieee.org/document/8121968/125 kHz wake-up receiver433 MHz data transmitterbattery-less TPMS
collection DOAJ
language English
format Article
sources DOAJ
author Qinmiao Kang
Xudong Huang
Yong Li
Zhifeng Xie
Yongquan Liu
Ming Zhou
spellingShingle Qinmiao Kang
Xudong Huang
Yong Li
Zhifeng Xie
Yongquan Liu
Ming Zhou
Energy-Efficient Wireless Transmissions for Battery-Less Vehicle Tire Pressure Monitoring System
IEEE Access
125 kHz wake-up receiver
433 MHz data transmitter
battery-less TPMS
author_facet Qinmiao Kang
Xudong Huang
Yong Li
Zhifeng Xie
Yongquan Liu
Ming Zhou
author_sort Qinmiao Kang
title Energy-Efficient Wireless Transmissions for Battery-Less Vehicle Tire Pressure Monitoring System
title_short Energy-Efficient Wireless Transmissions for Battery-Less Vehicle Tire Pressure Monitoring System
title_full Energy-Efficient Wireless Transmissions for Battery-Less Vehicle Tire Pressure Monitoring System
title_fullStr Energy-Efficient Wireless Transmissions for Battery-Less Vehicle Tire Pressure Monitoring System
title_full_unstemmed Energy-Efficient Wireless Transmissions for Battery-Less Vehicle Tire Pressure Monitoring System
title_sort energy-efficient wireless transmissions for battery-less vehicle tire pressure monitoring system
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2018-01-01
description This paper presents an energy-efficient wireless transmission scheme for battery-less vehicle tire pressure monitoring system (TPMS). Our proposed transmission scheme includes a wake-up communication link with 125-kHz carrier frequency and a data communication link with 433-MHz carrier frequency. Considering the TPMS application requirements and the special nature of the vehicle environment, we derive the relevant circuit parameters. In order to verify the reliability of the wireless communication system under the derived circuit parameters, we design an in-tire data transmitter and wake-up receiver. The 125-kHz wake-up receiver adopts dual-channel to improve the communication reliability and logarithmic amplifiers to achieve ASK demodulation and dynamic range compression. The receiver is implemented in 0.35-μm high voltage (HV) BCD process. Experiment results show that typical power consumption of the receiver is no more than 5 μA under 3.3 V supply voltage; the maximum data rate is 35 kb/s with 0.5 mVpp sensitivity. On the other hand, the data transmitter is implemented in 0.18-μm MMRF process. Experiment results show that the typical power consumption is 7.3 mA under 1.8 V supply voltage, and the emission power is -10 dBm@433.92 MHz with a phase noise of -103 dBc/Hz@300 kHz. System level experiments demonstrate that the proposed wireless transmission scheme fulfills the vehicle TPMS requirements. The data transmitter and wake-up receiver can communicate with the commercial data receiver and wake-up transmitter in the range of 20 m, which meets the requirements of most vehicles.
topic 125 kHz wake-up receiver
433 MHz data transmitter
battery-less TPMS
url https://ieeexplore.ieee.org/document/8121968/
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AT yongli energyefficientwirelesstransmissionsforbatterylessvehicletirepressuremonitoringsystem
AT zhifengxie energyefficientwirelesstransmissionsforbatterylessvehicletirepressuremonitoringsystem
AT yongquanliu energyefficientwirelesstransmissionsforbatterylessvehicletirepressuremonitoringsystem
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