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On-vehicle triboelectric nanogenerator enabled self-powered sensor for tire pressure monitoring
Tire pressure monitoring systems (TPMS) are becoming increasingly important in an effort to ensure safe and efficient use of tires in the automotive sector. There is growing interest in using energy harvesting technologies to provide power for TPMS because battery supply has serious drawbacks such a...
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Published in: | Nano energy 2018-07, Vol.49, p.126-136 |
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Main Authors: | , , |
Format: | Article |
Language: | English |
Subjects: | |
Citations: | Items that this one cites Items that cite this one |
Online Access: | Get full text |
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Summary: | Tire pressure monitoring systems (TPMS) are becoming increasingly important in an effort to ensure safe and efficient use of tires in the automotive sector. There is growing interest in using energy harvesting technologies to provide power for TPMS because battery supply has serious drawbacks such as replacement difficulty, limited durability and environmental pollution. In this study, we proposed an on-vehicle magnetically triboelectric nanogenerator (V-TENG) scavenging rotating energy from tires and serves as a direct power source for tire pressure sensor. The V-TENG incorporates two different triboelectric materials with opposite polarities based on contact-electrification effect. The unique advantages of the seesaw balance structure are to overcome the influence of a large centrifugal force at high operating speed as well quadruple the efficiency contact areas of a miniaturized device. Noncontact magnets mounted on the brake calliper periodically actuate swing motion of multiple V-TENGs placed on the wheel hub. The V-TENG effectively generates electrical energy at the alarm temperature through a thermally stable polymer film. High electrical output has been achieved among the wide ranges of rotation speed and magnetic force through systematically experiments test. Meanwhile, there is no obvious decrease in the output voltage of the V-TENG after continuous working for about 12 h. Moreover, a battery-less pressure sensor was enabled by a single V-TENG device to measure barometric values of the ambient environment. The V-TENG also have been demonstrated to power a commercial wireless sensor for sending the real-time temperature data to a receiver and displaying on a monitor interface.
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•On-vehicle triboelectric nanogenerator (V-TENG) as a direct power source for tire pressure monitoring system is developed.•The unique seesaw balance structure minimizes the influence of large centrifugal force and quadruples the contact areas.•High performance of the V-TENG is achieved with wide ranges of temperature, rotation speed and magnetic force.•Durability and reliability of V-TENG are dramatically improved for long-term operation.•The V-TENG successfully power small electronics, barometric pressure sensor and wireless sensor node. |
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ISSN: | 2211-2855 |
DOI: | 10.1016/j.nanoen.2018.04.022 |