DESIGN BUILDING OF AUTOMATED FOOTWEAR AUTOMATIC VEHICLES BASED ON MICROCONTROLLER AT89S51

  • Zulkurniawan Zulkurniawan Department of Electrical Engineering University of Bangka Belitung
  • Bhakti Yudho Suprapto Department of Electrical Engineering Faculty of Engineering Sriwijaya University
  • Irwan Dinata Department of Electrical Engineering University of Bangka Belitung

Abstract

The condition of vehicle very crowded traffic, that condition caused by high intensity and overload amount vehicle. Usually to get amount of vehicle in street still use manual counting,  use some people to count every vehicle that through the ways, every counting process divide by certain time.  the Automatics of vehicle counting use laser and photodiode sensors as data input that can be possessed by Microcontrollers AT89S51 and data was sent to basis data through serial communication to PC. This application cant apply manual counting because PC has shown by display, helped by Visual Basic.  Design can detect laser until range 7 meters and ASCII 1 that transmitted microcontroller to PC can be read, saved and shown by DzulAT89S51Vb. The result of test, the amount of vehicle can be detected, 66 four-wheel vehicles with range from 16:33 until 18:33, time divides by 10 minutes. The accurate of devices reach 95,45%, with mean 97,083%.

Keywords: Laser, Microcontroller AT89S51, Automatics of Counting Vehicle

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References

[1] Budiono A. 2007. Regulator at the Parking Door in OneLane. http://papers.gunadarma.ac.id/index.php/computer/article/viewFile/11218/10738.pdf. [diakses tanggal 11 Oktober 2011]
[2] Darmayuda, Ketut. 2010. Pemograman Aplikasi Database dengan Microsoft Visual Basic .NET 2008. Bandung. Informatika Bandung.
[3] Departemen Permukiman dan Prasarana Wilayah. 2004. Pedoman Kontruksi dan Bangunan. [29 November 2011]
[4] Fikri, Mohamad. 2012. Perancangan Dan Implementasi Power Meter Optik Berbasis Mikrokontroler 32 Bit Pada Panjang Gelombang 600nm-1000nm. Fakultas Teknik Elektro dan Komunikasi Institut Teknologi Telkom. Bandung.
[5] http://www.scribd.com/doc/19720378/Sifat-Sinar-Laser [diakses tanggal 17 Januari 2012]
[6] http://kardady.files.wordpress.com/2010/08/pedoman-survai-pencacahan-ll-manual.pdf [diakses tanggal 29-11-2011]
[7] Malvino AP. 2004. Prinsip-Prinsip Elektronika. Jakarta: Salemba Teknika.
[8] Pikatan S. 1991. Laser. Seminar Intern FT. UBAYA. Kristal 4:1-11.
[9] Putra, Afgianto Eko. 2004. Belajar Mikrokontroler AT89C51/52/55 Teori dan Aplikasi Edisi 2. Jogyakarta. Gava Media.
[10] Reynaldo, F., 2001. Laser, Gelombang dan Optik, www.geocities.com/reiinaldo/Laser [diakses tanggal 17 Januari 2012]
[11] Sinaga TA. 2011. Light Control Traffic Control Using Microcontroller With Infra Red Sensor .
[12] Susanto S.C., Setiawan B., Widyarto E. 2011. Perancangan Pembangunan Sistem Traffic Light Dengan CCTV Dinamis: Deteksi Kepadatan Jalan Dengan Citra Digital Pada Maket Jalan Simpang Empat.
[13] Syahri A. 2010. Automatic Sink Simulation Using Laser And LDR AT89S51 Microcontroller Based. http://kardady.files.wordpress.com/2010/08/ pedoman-survai-pencacahan-ll-manual.pdf [diakses tanggal 11 Oktober 2011].
[14] Tarnoto, Lussiana. 2010. Rancang Bangun Penghitung Kendaraan Secara Otomatis Berbasis Client Server.
Published
2015-04-30
How to Cite
[1]
Z. Zulkurniawan, B. Suprapto, and I. Dinata, “DESIGN BUILDING OF AUTOMATED FOOTWEAR AUTOMATIC VEHICLES BASED ON MICROCONTROLLER AT89S51”, JurnalEcotipe, vol. 2, no. 1, pp. 26-33, Apr. 2015.
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