Development of a Lidar System Based on an Infrared RangeFinder Sensor and SlipRing Mechanism

Cilt: 2 Sayı: 3 14 Eylül 2016
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Development of a Lidar System Based on an Infrared RangeFinder Sensor and SlipRing Mechanism

Öz

Abstract-Lidar systems are one of the most important sensor infrastructures in autonomous vehicles and mobile robots. They are used for achieving indoor and outdoor mapping purposes. In the scope of this study, a new perspective to develop a lidar system is proposed. The system developed is constructed based on a low-cost infrared rangefinder sensor, low-cost slipring mechanism designed and manufactured, dc motor and microprocessor. The rangefinder sensor is mounted to a head-structure actuated by a dc motor that continuously rotates with a desired rotational velocity. The data coming from the rangefinder sensor flows through the microprocessor via the slipring. The design concept of the slipring mechanism gives an advantage that the data of the infrared rangefinder sensor can be taken while the sensor continuously rotates. The required power for the sensor can also be supplied by the slipring during motion. The decoding process of the data coming from the rangefinder sensor and motor control task are accomplished using an ATmega based microprocessor. A user interface is also created to communicate with the system and evaluate the performance of the whole structure developed. After conducting many experiments, successful results are obtained. The design steps of the system proposed and the experimental results are presented in this paper.

Anahtar Kelimeler

Kaynakça

  1. J. R. Ben-Arie, G. J.Hay, R. P. Powers, G. Castilla, B. St-Onge, Development of a pit filling algorithm for LiDAR canopy height models, Computers & Geosciences, Vol. 35, pp. 1940–1949, 2009.
  2. M. Hollaus, W. Wagner, C. Eberhöfer, W. Karel, Accuracy of large-scale canopy heights derived from LiDAR data under operational constraints in a complex alpine environment, ISPRS Journal of Photogrammetry & Remote Sensing, Vol. 60, pp. 323–338, 2006.
  3. C. Alexander, S. Smith-Voysey, C. Jarvis, Kevin Tansey, Integrating building footprints and LiDAR elevation data to classify roof structures and visualise buildings, Computers, Environment and Urban Systems, Vol. 33, pp. 285–292, 2009.
  4. F. Amzajerdian, D. Pierrottet, L. Petway, M. Vanek, Development of lidar sensor systems for autonomous safe landing on planetary bodies, International Conference on Space Optics, Rhodes Island, Greece, 2010
  5. Y. Saito, R. Saito, T. D. Kawahara, A. Nomura, S. Takeda, Development and performance characteristics of laser-induced fuorescence imaging lidar for forestry applications, Forest Ecology and Management, Vol. 128, pp. 129-137, 2000.
  6. J. C. Suarez, C. Ontiveros, S. Smith, S. Snape, Use of airborne LiDAR andaerial photography in the estimation of individual tree heights in forestry, Computers & Geosciences, Vol. 31, pp. 253–262, 2005.
  7. G. Cecchi, L. Pantani, V. Raimondi, L. Tomaselli, G. Lamenti, P. Tiano, R. Chiari, Fluorescence lidar technique for the remote sensing of stone monuments, Journal of Cultural Heritage, Vol. 1, pp. 29–36, 2000.
  8. J. Bregeon, M. Compin, S. Rivoire, M. Sanguillon, G. Vasileiadis, An elastic lidar system for the H.E.S.S. Experiment, Nuclear Instruments and Methods in Physics Research A, Vol. 819, pp. 60–66, 2016.

Ayrıntılar

Birincil Dil

İngilizce

Konular

-

Bölüm

-

Yazarlar

Alparslan Uludag Bu kişi benim

Yayımlanma Tarihi

14 Eylül 2016

Gönderilme Tarihi

6 Haziran 2016

Kabul Tarihi

-

Yayımlandığı Sayı

Yıl 2016 Cilt: 2 Sayı: 3

Kaynak Göster

APA
Bayar, G., & Uludag, A. (2016). Development of a Lidar System Based on an Infrared RangeFinder Sensor and SlipRing Mechanism. International Journal of Engineering Technologies IJET, 2(3), 94-99. https://doi.org/10.19072/ijet.259392
AMA
1.Bayar G, Uludag A. Development of a Lidar System Based on an Infrared RangeFinder Sensor and SlipRing Mechanism. IJET. 2016;2(3):94-99. doi:10.19072/ijet.259392
Chicago
Bayar, Gokhan, ve Alparslan Uludag. 2016. “Development of a Lidar System Based on an Infrared RangeFinder Sensor and SlipRing Mechanism”. International Journal of Engineering Technologies IJET 2 (3): 94-99. https://doi.org/10.19072/ijet.259392.
EndNote
Bayar G, Uludag A (01 Eylül 2016) Development of a Lidar System Based on an Infrared RangeFinder Sensor and SlipRing Mechanism. International Journal of Engineering Technologies IJET 2 3 94–99.
IEEE
[1]G. Bayar ve A. Uludag, “Development of a Lidar System Based on an Infrared RangeFinder Sensor and SlipRing Mechanism”, IJET, c. 2, sy 3, ss. 94–99, Eyl. 2016, doi: 10.19072/ijet.259392.
ISNAD
Bayar, Gokhan - Uludag, Alparslan. “Development of a Lidar System Based on an Infrared RangeFinder Sensor and SlipRing Mechanism”. International Journal of Engineering Technologies IJET 2/3 (01 Eylül 2016): 94-99. https://doi.org/10.19072/ijet.259392.
JAMA
1.Bayar G, Uludag A. Development of a Lidar System Based on an Infrared RangeFinder Sensor and SlipRing Mechanism. IJET. 2016;2:94–99.
MLA
Bayar, Gokhan, ve Alparslan Uludag. “Development of a Lidar System Based on an Infrared RangeFinder Sensor and SlipRing Mechanism”. International Journal of Engineering Technologies IJET, c. 2, sy 3, Eylül 2016, ss. 94-99, doi:10.19072/ijet.259392.
Vancouver
1.Gokhan Bayar, Alparslan Uludag. Development of a Lidar System Based on an Infrared RangeFinder Sensor and SlipRing Mechanism. IJET. 01 Eylül 2016;2(3):94-9. doi:10.19072/ijet.259392

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