Intelligent System for Predicting Motorcycle Accident by Reaching into a Smart City Using a Kriging Model to Achieve Its Prevention and the Reduction of Deaths in the Medium Term

Author(s):  
Alberto Ochoa-Zezzatti ◽  
Brian Urrea ◽  
José Mejía ◽  
Liliana Avelar
2020 ◽  
Vol 1 (1) ◽  
pp. 7-13
Author(s):  
Bayu Prastyo ◽  
Faiz Syaikhoni Aziz ◽  
Wahyu Pribadi ◽  
A.N. Afandi

Internet use in Banyumas Regency is now increasingly diverse according to the demands of the needs. The development of communication technology raises various aspects that also develop. For example, the use of the internet for a traffic light control system so that it can be adjusted according to the settings and can be monitored in real time. In the development of communication technology, the term Internet of Things (IoT) emerged as the concept of extending the benefits of internet communication systems to give impulses to other systems. In other words, IoT is used as a communication for remote control and monitoring by utilizing an internet connection. The Internet of Things in the era is now being developed to create an intelligent system for the purposes of controlling various public needs until the concept of the smart city emerges. Basically, smart cities utilize internet connections for many purposes such as controlling CCTV, traffic lights, controlling arm robots in the industry and storing data in hospitals. If the system is carried out directly from the device to the central server, there will be a very long queue of data while the system created requires speed and accuracy of time so that a system is needed that allows sufficient data control and processing to be carried out on network edge users. Then fog Computing is used with the hope that the smart city system can work with small latency values ​​so that the system is more real-time in sending or receiving data.


2020 ◽  
Vol 1 (2) ◽  
pp. 6-13
Author(s):  
Bayu Prastyo ◽  
Faiz Syaikhoni Aziz ◽  
Wahyu Pribadi ◽  
A.N. Afandi

Internet use in Banyumas Regency is now increasingly diverse according to the demands of the needs. The development of communication technology raises various aspects that also develop. For example, the use of the internet for a traffic light control system so that it can be adjusted according to the settings and can be monitored in real time. In the development of communication technology, the term Internet of Things (IoT) emerged as the concept of extending the benefits of internet communication systems to give impulses to other systems. In other words, IoT is used as a communication for remote control and monitoring by utilizing an internet connection. The Internet of Things in the era is now being developed to create an intelligent system for the purposes of controlling various public needs until the concept of the smart city emerges. Basically, smart cities utilize internet connections for many purposes such as controlling CCTV, traffic lights, controlling arm robots in the industry and storing data in hospitals. If the system is carried out directly from the device to the central server, there will be a very long queue of data while the system created requires speed and accuracy of time so that a system is needed that allows sufficient data control and processing to be carried out on network edge users. Then fog Computing is used with the hope that the smart city system can work with small latency values ​​so that the system is more real-time in sending or receiving data


Author(s):  
Afnanul Hassan ◽  
Zaria Fahamida ◽  
Proloy Sen ◽  
Dr. Syed Akhter Hossain

In the 21st century, for a digital lifestyle in a smart city, security is one of the core ingredients to ensure digital continuity. The existing smart security technologies use a smartphone, card, and fingerprint that need additional devices to carry or can spread out infectious diseases. Now it is high time to think about an additional device free and more time-consuming technique. So, an intelligent system is proposed in this paper to secure our doors with face authentication. The human face is a unique and easy identifying feature of a human. The registered user’s image is saved in the device as a dataset to train the lock. The system recognizes the registered faces very fast and controls the hardware part to be unlocked. The system is capable of detecting and recognizing human faces from a real-time video. It is usable in the door lock, car lock, hutch, and many more security purposes.


2021 ◽  
Vol 25 (1) ◽  
pp. 16-27
Author(s):  
O. O. Komarevtseva

Purpose of the study. The purpose of the scientific article is to form a toolkit that makes it possible to assess the feasibility of introducing Smart City technologies into the management mechanism of a municipal formation based on the current state of the territory development. The achievement of this goal is regulated by the processes of considering the features of the Smart City concept in terms of the municipal formation development, generation of author's indicators for assessing the feasibility of introducing Smart City technologies into the management mechanism of the municipal formation, the development of a simulation model for assessing the feasibility of introducing Smart City technologies into the management mechanism of the municipal formation. The purpose of the study will allow confirming or rejecting the hypothesis about the advisability of introducing Smart City technologies into the management mechanism of the municipal formation. Materials and methods. The research instrumental apparatus is based on the use of the following methods: the method for identifying essential characteristics, theoretical representation, data grouping, assessment, simulation modeling, Bass diffusion method, and graphical representations. The application of theoretical methods is aimed at studying indicators for assessing the feasibility of introducing Smart City technologies into the management mechanism of a municipal formation. The simulation modeling methods and Bass diffusion method will focus attention on the possibility of predicting the management mechanism of a municipal formation with the Smart City concept. Results. Today, the postulates of the Smart City concept are not used within the framework of the municipal formation management mechanism. The study led to the conclusion that the Smart City concept is used for the development of some directions of the municipal formation (for example, the urban infrastructure). The lack of a regulatory and legal framework at the local level in the field of Smart-management and Smart-design shows the impossibility of assessing the feasibility of introducing Smart City technologies into the management mechanism of a municipal formation. At the municipal level, there is no effective toolkit for assessing the feasibility of introducing Smart City technologies into the management mechanism of a municipal formation. On the one hand, simulation modeling acts as a tool for accumulating and simplifying the parameters for assessing the feasibility of introducing Smart City technologies into the management mechanism of a municipal formation. On the other hand, simulation modeling focuses the attention on the process of forecasting the development of directions of the municipal formation management mechanism after Smart City technologies introduction. Within the framework of the study, the following conclusions were formed: Smart City concept is not adapted to the modern conditions of the development of the management mechanism of a municipal formation; the absence of a methodology for assessing the feasibility of introducing Smart City technologies into the management mechanism of a municipal formation doesn’t allow implementing effective measures for the development of small territories; simulation modeling is a rather interesting tool for medium-term forecasting of the feasibility of introducing Smart City technologies into the management mechanism of a municipal formation. Conclusion. To introduce Smart City technologies into the management mechanism of a municipal formation, it is necessary to use modern assessment and simulation modeling tools to form an idea of the result of actions taken in the current period and in the medium term.


In view of developing smart cities, all the infrastructure of the city should be integrated with intelligent system. Transportation is one of the main constraints to the development of cities. Roads maintenance is one of the key factors for transportation system. In developing countries due to the increased vehicular population the maintenance becoming a complex task. Here we propose a system which detects potholes and humps on roads and send the information to higher authorities using LoRa technology. We designed a system with three modules like user module, gateway module and cloud module. User module includes an ultrasonic sensor and Lora GPS shield which should be deployed on vehicles. Through sensor we can detect the pothole and humps on roads, Lora GPS will capture the location and the information will be sent to the gateway using LoRa communication. Gateway can be anywhere in the range of 15km as LoRa module can send the information throughout this range. This information is uploaded to cloud which will be available for higher authorities to repair and maintain the roads effectively.


2019 ◽  
Vol 2 (3) ◽  
pp. 186-193
Author(s):  
Murhadi Murhadi ◽  
Hamid M. Jumasa

Starting in 2018 Purworejo district will implement governance by following the smart city system. Purworejo Government has been very serious about the planning and implementation plan of smart cities in Purworejo Regency. In the Regional Medium-Term Development Plan (RPJMD) 2016-2021, which still projects e-government based governance, there is the term cyber city to support the implementation of more effective and efficient city governance. The transition process from e-government to smart city needs to be pursued so that the planning contained in the RPJMD can work in synergy with the Garuda Smart City Model (GSCM) adopted by Purworejo district. The transition method used is to link the programs contained in the RPJMD with the service domain, namely smart economy, smart society, and smart environment.


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