DESIGN AND DEVELOPMENT SMART-IMBULANCE FOR EFFICIENCY OF ROAD EMERGENCY PRIORITIES
DOI:
https://doi.org/10.53625/jirk.v1i2.98Keywords:
ambulance, emergency, smart traffic management.Abstract
Medical emergency conditions required patients to be mobilized by ambulance quickly, precisely, and accurately. To save the patient, the ambulance acted as a helper and hope for the patient to survive until the patients reach the hospital. The ambulance has to go through the fastest and closest way to reach the hospital. However, problems arise when road conditions do not support the creation of the fastest and closest ambulance. Due to congested road conditions, it will be possible to delay the ambulance from reaching the hospital or other unwanted events. The road and traffic conditions that can be controlled for the smooth running of the ambulance need special attention. Smart-iMbulance framework modeling allows an ambulance to move quickly and precisely to reach the nearest hospital. This paper provides a transportation model for vehicles, an application model as an embedded program in an ambulance, and a traffic management plan as a solution offered for ambulances on the road.
References
F. N. P. Irzan, D. P. Kartikasari, and A. Bhawiyuga, “Implementasi Sistem Tracking Posisi Ambulans pada Smart Dispatcher Menggunakan Metode Komunikasi Publish / Subscribe,” J. Pengemb. Teknol. Inf. dan Ilmu Komput., vol. 4, no. 1, pp. 413–420, 2020.
X. Wang and L. Xu, “The factors underlying drivers ’ unwillingness to give way to ambulances : An application of an extended theory of planned behavior,” J. Transp. Heal., vol. 20, no. January, p. 101000, 2021, doi: 10.1016/j.jth.2020.101000.
S. Yoon and L. A. Albert, “A dynamic ambulance routing model with multiple response,” Transp. Res. Part E Logist. Transp. Rev., vol. 133, no. November, pp. 1–18, 2020, doi: 10.1016/j.tre.2019.11.001.
N. V. Amalia, R. P. Priyanti, and P. Nahariyani, “Efektivitas Penggunaan Ambulance Siaga Desa Dalam Transportasi Pre Hospital,” J. Ilm. Keperawatan (Scientific J. Nursing), vol. 4, no. 1, pp. 52–63, 2018, doi: 10.33023/jikep.v4i1.135.
A. Zarkeshev and C. Csiszár, “Patients’ Willingness to Ride on a Driverless Ambulance: A Case Study in Hungary,” Transp. Res. Procedia, vol. 44, no. 2019, pp. 8–14, 2020, doi: 10.1016/j.trpro.2020.02.002.
F. Fukushima and T. Moriya, “Objective evaluation study on the shortest time interval from fire department departure to hospital arrival in emergency medical services using a global positioning system ― potential for time savings during ambulance running,” IATSS Res., 2020, doi: 10.1016/j.iatssr.2020.08.001.
M. Li, A. Carter, J. Goldstein, T. Hawco, J. Jensen, and P. Vanberkel, “Determining ambulance destinations when facing offload delays using a Markov decision process,” Omega (United Kingdom), no. xxxx, p. 102251, 2020, doi: 10.1016/j.omega.2020.102251.
S. Wajid, N. Nezamuddin, and A. Unnikrishnan, “Optimizing Ambulance Locations for Coverage Enhancement of Accident Sites in South Delhi,” Transp. Res. Procedia, vol. 48, pp. 280–289, 2020, doi: 10.1016/j.trpro.2020.08.022.
Y. Z. Chen, S. F. Shen, T. Chen, and R. Yang, “Path optimization study for vehicles evacuation based on Dijkstra algorithm,” in Procedia Engineering, Jan. 2014, vol. 71, pp. 159–165, doi: 10.1016/j.proeng.2014.04.023.
C. M. Huang, C. C. Yang, C. Y. Tseng, and C. H. Chou, “A centralized traffic control mechanism for evacuation of emergency vehicles using the DSRC protocol,” 2009, doi: 10.1109/ISWPC.2009.4800550.
K. S. Sandeep Sagar, D. M. Fazaluddeen, G. S. Harish, and G. Narendra Kumar, “Real Time Patient Monitoring System Interfacing Metro Rail and Ambulance,” 2019, doi: 10.1109/ViTECoN.2019.8899531.
R. R. Al Hakim, E. Rusdi, and M. A. Setiawan, “Android Based Expert System Application for Diagnose COVID-19 Disease : Cases Study of Banyumas Regency,” J. Intell. Comput. Heal. Informatics, vol. 1, no. 2, pp. 1–13, 2020, doi: 10.26714/jichi.v1i2.5958.
R. R. Al Hakim, “Pencegahan Penularan Covid-19 Berbasis Aplikasi Android Sebagai Implementasi Kegiatan KKN Tematik Covid-19 di Sokanegara Purwokerto Banyumas,” Community Engagem. Emerg. J., vol. 2, no. 1, pp. 7–13, Aug. 2021, doi: 10.37385/ceej.v2i1.125.
R. R. Al Hakim, “Aplikasi Sistem Pakar Diagnosa Penyakit Covid-19 Berbasis Android: Studi Kasus Kabupaten Banyumas,” Sekolah Tinggi Manajemen Informatika dan Komputer Widya Utama, 2020.
R. R. Al Hakim, G. E. Setyowisnu, and A. Pangestu, “Rancang Bangun Media Pembelajaran Matematika Berbasis Android pada Materi Persamaan Diferensial,” Kontinu J. Penelit. Didakt. Mat., vol. 4, no. 2, pp. 82–91, 2020, doi: dx.doi.org/10.30659/kontinu.4.2.82-91.
A. Jacobsson, L. Kurland, and E. Höglund, “Direct in-hospital admission via ambulance (DIVA): A retrospective observational study,” Int. Emerg. Nurs., vol. 52, no. October 2019, p. 100906, 2020, doi: 10.1016/j.ienj.2020.100906.