Sound and vibration energy harvesting for railway applications: A review on linear and nonlinear techniques

Сбор энергии звука и вибраций для железнодорожных применений: обзор линейных и нелинейных методов
Ali Hosseinkhani, Davood Younesian, Pezhman Eghbali, Armin Moayedizadeh, Amir Fassih
2021-02-06

linear and nonlinear techniquesrailway energy harvestingself-powered sensorssound energy harvestingvibration energy harvesting
Energy harvesting in the railway industry has great potential for many applications. Energy harvesters can provide electrical power for track-side, on-board, and infrastructure instruments, including health monitoring sensors, signaling, switches, and safety equipment. Due to the rapidly growing trend of the railway network, a considerable number of instrumentations need to be located in inaccessible, remote, and harsh locations where providing the energy through cable is almost impossible. In these cases, self-powered sensors and distributed power generators can be used based on energy harvesting techniques. High-intensity sound and vibration levels in the railway environment prove them to be promising sources of energy for self-powered devices. This paper aims to provide a comprehensive review on the railway sound and vibration energy harvesting, from the beginning to the most state-of-the-art. This paper addresses different energy harvesting resources for the railway environment, diverse methods of energy harvesting and their advantages and drawbacks, and at the end, energy harvesting applications in the railway industry. Different models and prototypes of energy harvesters are introduced and compared. Finally, the potential applications of railway energy harvesting are addressed, and future challenges and trends are discussed. The scheme of the present paper is designed in a way to provide readers the most significant principles that need to be considered in the design of railway energy harvesters.
1
Harvested energy can support track-side, onboard, and infrastructure systems, including health monitoring, signaling, switches, and safety equipment.
2
Railway energy harvesting is particularly valuable for instruments in inaccessible, remote, or harsh locations where cable-based power delivery is impractical.
3
Railway environments offer substantial sound and vibration energy suitable for powering self-powered sensors and distributed generators.
4
The paper identifies potential applications, design principles, future challenges, and emerging trends for railway sound and vibration energy harvesters.
5
The review comprehensively compares linear and nonlinear harvesting techniques, energy sources, models, prototypes, advantages, and drawbacks for railway applications.

railway-environment sound and vibration energy harvesting systems

linear and nonlinear energy-harvesting techniques, models, prototypes, applications, advantages, drawbacks, and design challenges

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Publication Date
2021-02-06
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Authors
Ali Hosseinkhani
Davood Younesian
Pezhman Eghbali
Armin Moayedizadeh
Amir Fassih
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