DESIGN OF VOICE CONTROL SYSTEM AN ANDROID AND ARDUINO-ASSISTED AS A COMPONENT ACTIVATION ON VEHICLES

Wachid Yahya, Canggih Ajika Pamungkas

Abstract


The purpose of this research was to design an Android and Arduino-assisted voice control system as a component activation on vehicles.  The method in this study are; making initial design concepts, procuring tools and materials, manufacturing products, testing products, and analyzing product performance. The conclusion of this research is that this system has gone through the application design stage on android using MIT App Inventor 2 and making the program using Arduino IDE, and the last stage is product testing. The test results show that the application installed on an android smartphone is able to work properly. The design of the program on a microcontroller using Arduino was also successfully compiled. This voice control vehicle module achieves connectivity capability with bluetooth as far as 14 meters. Accuracy of voice commands in the range of 73-95%, this result was obtained using clear voice articulation according to acceptance in google speech and using good internet network connectivity. Able to activate and turn off vehicle door locks, hazard, alarm, and engine.


Keywords


voice control, android, arduino, vehicle

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References


Afi. 2015. Sensor Suara. Accessed on 2 June 2017. Available at http://afielektronika.blogspot.com/2015/01/makalah-sensor-suara.html.

Daryanto. 2007. Motor Bensin Pada Mobil. Bandung : Yrama Widya.

Daryanto. 2008. Memahami dan Merawat Sistem Kelistrikan Mobil. Bandung : Yrama Widya.

Das, P., Acharjee, K., Das, P. and Prasad, V. 2015. ‘Voice Recognition System: Speech-To-Text’. Journal of Applied and Fundamental Sciences 1(2):2395-5562. Available at : https://www. researchgate.net/profile/Vijay_Prasad8/publication/304651244_VOICE_RECOGNITION_SYSTEM_SPEECH-TO TEXT/links/5775f84708ae1b18a7dfe584/VOICE-RECOGNITION-SYSTEM-SPEECH-TO-TEXT.pdf

Kadir, Abdul. 2013. Panduan Praktis Mempelajari Aplikasi Mikrokontroler dan Pemrogramannya Menggunakan Arduino. Yogyakarta: Penerbit ANDI.

Kevin, O and Kasamani, B. 2015. The Application of Real-Time Voice Recognition to Control Critical Mobile Device Operations, International Journal of Research Studies in Science, Engineering and Technology Volume 2, Issue 7, July 2015, PP 174-184 ISSN 2349-4751 (Print) & ISSN 2349-476X (Online)

Kuswana, Wowo Sunaryo. 2014. Sistem Kelistrikan Kendaraan Ringan. Bandung : Remaja Rosdakarya.

Suratman. 2009. Servis dan Teknik Reparasi Sepeda Motor. Bandung: Pustaka Grafika.

Widodo, Edi. 2011. Otomotif Sepeda Motor. Bandung: Yrama Widya.

Romadhon, W.E. 2017. Cara Memasang Relay Klakson Motor / Mobil. Accessed on 2 June 2017. Available at http://www.wahyueko.id/2016/08/cara-memasang-relay-klakson-motor mobil.html.

Skynet, Z. 2015. Koleksi Skema Lampu Darurat Hazard. Accessed on 2 June 2017. Available at http://mitrabaterai.blogspot.co.id/2015/11/koleksi-skema-lampu-darurat-hazard.html.

Yahya, Wachid. 2017. ‘Sistem Kontrol Otomotif’. Yogyakarta : Deepublish.




DOI: http://dx.doi.org/10.30870/vanos.v4i1.6117

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