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Medical Drones System for Amusement Parks | IEEE Conference Publication | IEEE Xplore

Medical Drones System for Amusement Parks


Abstract:

With the fast development of technology, many technological and industrial companies are working on coping with this growth. Therefore, various devices are being manufact...Show More

Abstract:

With the fast development of technology, many technological and industrial companies are working on coping with this growth. Therefore, various devices are being manufactured to be compatible with users. The main interest here is drones (flight controllers). As we can see nowadays, drones have many incredible uses for the future and they will soon revolutionize the entire industries. Drones are newly introduced to the market [1] yet they're gaining a very high amount of acknowledgment and interest due to their remarkable features and functionality [2]. In addition, drones can be designed to do some jobs that have its benefits like medical drones that save lives by providing medical help. The idea of implementing medical drones is not new, but it is increasing for the past decade. Medical drones can provide aid to the medical team by offering some services like delivering supplies to faraway and hard to reach areas. They could be faster in locating injuries in crucial areas and deliver essential supplies to attain the situation until the medical team arrives. With this drone being put in the market, it will be very useful and will have a positive impact on the medicine field as it will offer its useful services which as a result enhance the medical services.
Date of Conference: 30 October 2017 - 03 November 2017
Date Added to IEEE Xplore: 12 March 2018
ISBN Information:
Electronic ISSN: 2161-5330
Conference Location: Hammamet, Tunisia
Citations are not available for this document.

I. Introduction

In this paper, we propose the implementation of a Medical Drones Systems (MDS). MDS is a system that can be implemented in such areas like skiing resorts and amusement parks. These areas are usually filled with tourists who are scattered everywhere enjoying their time. However, in case of emergencies, it will be very difficult to quickly reach the patient or injured person. Not only you need time for locating the injured person, but there might be also a long distance you have to need to cover in order to reach that person. This process is time consuming and endangers peoples' lives [3]. As a result, this system is designed to do this task more effectively without the human error, which will save a lot of time, effort, and successfully rescue injured people [4].

Cites in Papers - |

Cites in Papers - IEEE (6)

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1.
B. Dziewoński, K. Kaliszuk, A. Kierzkowski, T. Kisiel, M. Kucharski, M. Milewski, Jacek Napora, "Preliminary Design of Rapid Response AED Delivery Unmanned Aerial System", 2024 IEEE International Conference on Industrial Engineering and Engineering Management (IEEM), pp.1104-1108, 2024.
2.
Arif Abdul Aziz, Agfianto Eko Putra, Dong In Kim, Kae Won Choi, "Drone-Based Sensor Information Gathering System With Beam-Rotation Forward-Scattering Communications and Wireless Power Transfer", IEEE Internet of Things Journal, vol.9, no.13, pp.11227-11247, 2022.
3.
Changhao Ge, Shubo Yang, Wenjian Sun, Yang Luo, Chunbo Luo, "For RF Signal-Based UAV States Recognition, Is Pre-processing Still Important At The Era Of Deep Learning?", 2021 7th International Conference on Computer and Communications (ICCC), pp.2292-2296, 2021.
4.
G Shanmugan Ganesan, Mastaneh Mokayef, "Multi-Purpose Medical Drone for the Use in Pandemic Situation", 2021 IEEE Microwave Theory and Techniques in Wireless Communications (MTTW), pp.188-192, 2021.
5.
Partha Pratim Ray, Kien Nguyen, "A Review on Blockchain for Medical Delivery Drones in 5G-IoT Era: Progress and Challenges", 2020 IEEE/CIC International Conference on Communications in China (ICCC Workshops), pp.29-34, 2020.
6.
Murillo Augusto da Silva Ferreira, Guilherme Cano Lopes, Esther Luna Colombini, Alexandre da Silva Simões, "A Novel Architecture for Multipurpose Reconfigurable Unmanned Aerial Vehicle (UAV): Concept, Design and Prototype Manufacturing", 2018 Latin American Robotic Symposium, 2018 Brazilian Symposium on Robotics (SBR) and 2018 Workshop on Robotics in Education (WRE), pp.443-450, 2018.

Cites in Papers - Other Publishers (7)

1.
Aleksi Vilkki, Antti Tikanmäki, Juha Röning, "Automatic Jig-Assisted Battery Exchange for Lightweight Drones", Machines, vol.12, no.11, pp.818, 2024.
2.
Zhilan Zhang, Yufeng Wang, Yizhe Luo, Hang Zhang, Xiaorong Zhang, Wenrui Ding, "Iterative Trajectory Planning and Resource Allocation for UAV-Assisted Emergency Communication with User Dynamics", Drones, vol.8, no.4, pp.149, 2024.
3.
Ahmad Merei, Hamid Mcheick, Alia Ghaddar, "Survey on Path Planning for UAVs in Healthcare Missions", Journal of Medical Systems, vol.47, no.1, 2023.
4.
Nonthapat Pulsiri, Ronald Vatananan-Thesenvitz, "Drones in Emergency Medical Services: A Systematic Literature Review with Bibliometric Analysis", International Journal of Innovation and Technology Management, vol.18, no.04, pp.2097001, 2021.
5.
D Susitra, E Annie Elisabeth Jebaseeli, Venkata Kishore Chitturi, Vineet Chadalavada, "Design and development of an Hexacopter for fertlizer spraying in agriculture fields", Journal of Physics: Conference Series, vol.1706, no.1, pp.012053, 2020.
6.
Murillo Augusto da Silva Ferreira, Maria Fernanda Tejada Begazo, Guilherme Cano Lopes, Alexandre Felipe de Oliveira, Esther Luna Colombini, Alexandre da Silva Simões, "Drone Reconfigurable Architecture (DRA): a Multipurpose Modular Architecture for Unmanned Aerial Vehicles (UAVs)", Journal of Intelligent & Robotic Systems, vol.99, no.3-4, pp.517, 2020.
7.
Aida-Yarira Reyes, Carlos-Alberto Ochoa, Diego Adiel Sandoval Chávez, Evelyn Teran, "Intelligent Touristic Logistics Model to Optimize Times at Attractions in a Thematic Amusement Park", Smart Systems Design, Applications, and Challenges, pp.341, 2020.
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References

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