Efficient electromagnetic energy harvester for railroad transportation

Mechatronics - Tập 53 - Trang 277-286 - 2018
Teng Lin1, John J. Wang1, Lei Zuo2
1Department of Mechanical Engineering, Stony Brook University, Stony Brook, NY 11790, USA
2Department of Mechanical Engineering, Virginia Tech, Blacksburg, VA 24061, USA

Tóm tắt

Từ khóa


Tài liệu tham khảo

National Transportation and Safety Board (2013) “Most wanted list: implement positive train control systems”.

Aboelela, Emad, William Edberg, Christos Papakonstantinou, and Vinod Vokkarane. "Wireless sensor network based model for secure railway operations." In Performance, computing, and communications conference, 2006. IPCCC 2006. 25th IEEE international, pp. 6-pp.

Tan, Hwee-Pink, Pius WQ Lee, Winston KG Seah, and Zhi Ang Eu. "Impact of power control in wireless sensor networks powered by ambient energy harvesting (WSN-HEAP) for railroad health monitoring." In Advanced Information networking and applications workshops, 2009. WAINA'09. International conference on, pp. 804–809.

Igwemezie, 2007, Understanding stresses in rails, Interface J Wheel/Rail Interact

Farritor, 2006

Grabe, 2010, Axle load and track deflection on a heavy haul line, Civil Eng

Coelho, 2011, An assessment of transition zone performance, Proc Inst Mech Eng Part F, 225, 129, 10.1177/09544097JRRT389

Fakhzan, 2013, Harvesting vibration energy using piezoelectric material: modeling, simulation and experimental verifications, Mechatronics, 23, 61, 10.1016/j.mechatronics.2012.10.009

Nelson, 2008, Power harvesting for railroad track health monitoring using piezoelectric and inductive devices, 10.1117/12.775884

Zhang, 2016, A portable high-efficiency electromagnetic energy harvesting system using supercapacitors for renewable energy applications in railroads, Energy Convers Manage, 118, 287, 10.1016/j.enconman.2016.04.012

Gatti, 2016, Harvesting energy from the vibration of a passing train using a single-degree-of-freedom oscillator, Mech Syst Signal Process, 66, 785, 10.1016/j.ymssp.2015.06.026

Pourghodrat, 2013, Power harvesting systems design for railroad safety, Proc Inst Mech Eng Part F

Wang, 2012, Electromagnetic energy harvesting from train induced railway track vibrations

Wang, 2013, High efficiency electromagnetic energy harvester for railroad application

Zuo, 2010, Design and characterization of an electromagnetic energy harvester for vehicle suspensions, Smart Mater Struct, 19, 10.1088/0964-1726/19/4/045003

Zuo, Lei, Gopinath Reddy Penamalli, John Wang, Rui He Zheng, Xiao Hui Lei, Jorge F. Lam-Ki, Zhongjie Li, and Teng Lin. "High-efficiency energy generator for harnessing mechanical vibration power." U.S. Patent Application 13/447,908, filed April 16, 2012.

Penamalli, 2011

2011

Holm, 2002, 10

Alstom Signaling, NY, USA, http://www.alstomsignalingsolutions.com.

GE Lighting, USA, LED Rail Road Signal Lighting, http://www.gelighting.com/LightingWeb/na/solutions/transportation-lighting/rail-signals/.

Osgood, 2013

Dowling, 1996, Mechanical behavior of materials

Liu, 2017, Design, modeling, lab and field tests of a mechanical-motion-rectifier-based energy harvester using a ball-screw mechanism, IEEE/ASME Trans Mechatron, 10.1109/TMECH.2017.2700485

Li, 2012, Energy-harvesting shock absorber with a mechanical motion rectifier, Smart Mater Struct, 22, 10.1088/0964-1726/22/2/025008

Lin, 2018, Modeling and field testing of an electromagnetic energy harvester for rail tracks with anchorless mounting, Appl Energy, 213, 219, 10.1016/j.apenergy.2018.01.032