The TRANSPETRO Emergency Response System

Author(s):  
Alui´sio T. Ferreira Filho ◽  
Vanderlei F. Cardoso ◽  
Ronaldo Carbone ◽  
Ricardo P. Berardinelli ◽  
Marcelo Ti´lio Monteiro de Carvalho ◽  
...  

This paper describes the TRANSPETRO Emergency Response System, developed by PETROBRAS / TRANSPETRO, which is applicable to oils terminals, mostly located in sea or river harbor areas, and a large oil pipeline mesh that spans the Brazilian territory. The engine of the system consists of a distributed workflow management software, called InfoPAE. The software runs locally at each major installation, all connected to a central site. The deployment of the TRANSPETRO Emergency Response System is part of a larger effort to achieve a standard of excellence in the response to emergency situations at each operational unity, including full compliance with environmental regulations set by the federal government.

2020 ◽  
Author(s):  
Akmal Rustamov

The paper addresses the problem of increasing transportation safety due to usage of new possibilities provided by modern technologies. The proposed approach extends such systems as ERA-GLONASS and eCall via service network composition enabling not only transmitting additional information but also information fusion for defining required emergency means as well as planning for a whole emergency response operation. The main idea of the approach is to model the cyber physical human system components by sets of services representing them. The services are provided with the capability of self- contextualization to autonomously adapt their behaviors to the context of the car-driver system. The approach is illustrated via an accident emergency situation response scenario. “ERA-GLONASS” is the Russian state emergency response system for accidents, aimed at improving road safety and reducing the death rate from accidents by reducing the time for warning emergency services. In fact, this is a partially copied European e Call system with some differences in the data being transmitted and partly backward compatible with the European parent. The principle of the system is quite simple and logical: in the event of an accident, the module built into the car in fully automatic mode and without human intervention determines the severity of the accident, determines the vehicle’s location via GLONASS or GPS, establishes connection with the system infrastructure and in accordance with the protocol, transfers the necessary data on the accident (a certain distress signal). Having received the distress signal, the employee of the call center of the system operator should call the on-board device and find out what happened. If no one answers, send the received data to Sistema-112 and send it to the exact coordinates of the team of rescuers and doctors, and the last one to arrive at the place is given 20 minutes. And all this, I repeat, without the participation of a person: even if people caught in an accident will not be able to independently call emergency services, the data on the accident will still be transferred. In this work intended to add some information about applying system project in Uzbek Roads especially mountain regions like “Kamchik” pass. The Kamchik Pass is a high mountain pass at an elevation of 2.306 m above the sea level, located in the Qurama Mountains in eastern Uzbekistan and its length is about 88km.The road to reach the pass is asphalted, but there are rough sections where the asphalt has disappeared. It’s called A373. The old road over the pass was by passed by a tunnel built in 1999. On the horizon, the snow-capped peaks of the Fan Mountains come into view. The pass is located in the Fergana Valley between the Tashkent and Namangan Regions.


2018 ◽  
Vol 7 (3.3) ◽  
pp. 261
Author(s):  
V Brindha Devi ◽  
Lokeswari U ◽  
Saraswathi B ◽  
Vindhya T

Timely access to the emergency medical services is challenging tasks due to the increasing percentage of population. Especially prehospital emergency situations are neglected for quite a long time. The agglomeration of medical gadgets and other system applications that bridges the gap to healthcare IT systems through Internet or computer networks is placed under the domain (IoMT) Internet Of Medical Things . In this project an efficient medical data monitoring and an emergency response system has been developed. IoT in healthcare is made to bridge the gap by providing the connectivity through internet making sure that the information is secured and available on the timely access. The wireless monitoring device collects data from various sensors, which is shared into the database using ZigBee cc2530 Transmitter Receiver through UART communication. The wireless device is embedded with sensors like Pulse oximeter (senses the heart beat rate and blood oxygen concentration)and temperature sensor. This data is monitored regularly and if there is any abnormality in the values then an alert is sent to the doctor to intimate the condition of the patient. This paper provides an interaction of the patient with the doctors. The interaction is enabled using public and private chat application where any number of patients can interact with a doctor. It is challenging task to personalize specific healthcare data i.e. medical records for various application users in an appropriate and secured fashion. Thus, the patient’s health records i.e. prescription, scan reports, etc. are uploaded by the patient which can be viewed by the doctor. These files are encrypted using an encryption algorithm before uploading it into the cloud. Similarly it is decrypted while downloaded by the doctor for reference. The data collected is used for the prediction of diseases like heart attack and the report is sent to the doctor. Hence the project’s aim is, when the recorded value exceeds the threshold range, an automatic intimation with the patient’s collected data is sent to the concerned doctor.  


2021 ◽  
Vol 1 (2) ◽  
pp. 225-240
Author(s):  
ROBY KURNIAWAN ◽  
Asril Asril ◽  
Endang Purnawati Rahayu

Kasus kebakaran di Rumah Sakit masih tergolong tinggi dan ini sangat merugikan baik untuk pihak Rumah Sakit maupun pengunjung atau pasien yang berobat. maka diperlukan sistem tanggap darurat yang baik dalam menghadapi situasi darurat terutama kebakaran, maka dari itu tujuan dari penelitian ini adalah untuk mengetahui sistem tanggap darurat kebakaran serta bagaimana implementasi prosedur operasional tanggap darurat (emergency response and preparedness) Rumah Sakit 3M Plus. Jenis Penelitian ini adalah observasional dengan pendekatan kualitatif analitik. Analisa yang digunakan adalah triangulasi sumber, metode dan data. Data yang disajikan dalam bentuk matriks dan narasi. Hasil penelitian menunjukkan bahwa sistem tanggap darurat seperti simulasi kebakaran, sarana penyelamatan, dan kesesuaian penerapan APAR masi perlu dievaluasi dan perlu dibenahi kembali agar menjadi sebuah tindakkan yang tepat sewaktu terjadinya kebakaran. Serta masih ada beberapa yang belum sesuai dengan Standar Nasional Indonesia (SNI) maupun permen PU. Sistem proteksi pasif seperti titik kumpul, pintu darurat, tangga darurat tidak memadai. Fire cases in the hospital are still high and this is very detrimental to both the hospital and visitors or patients who seek treatment. Therefore, a good emergency response system is needed in dealing with emergency situations, especially fires, therefore the purpose of this study is to determine the fire emergency response system and how to implement emergency response and preparedness procedures for 3M Plus Hospital. This type of research is observational with a qualitative analytic approach. The analysis used was the triangulation of sources, methods and data. Data presented in the form of a matrix and narrative. The results showed that emergency response systems such as fire simulations, rescue facilities, and suitability of the application of APAR still need to be evaluated and need to be reorganized so that they become an appropriate action when a fire occurs. And there are still some that are not in accordance with the Indonesian National Standard (SNI) and PU candy. Passive protection systems such as gathering points, emergency exits, emergency stairs are inadequate.


ICCTP 2009 ◽  
2009 ◽  
Author(s):  
Hantao Zhao ◽  
Yunpeng Wang ◽  
Shiwu Li ◽  
Hongyan Mao

Author(s):  
Hao Jin ◽  
Ligong Lu ◽  
Junwei Liu ◽  
Min Cui

Abstract Motivation Nations around the world have been significantly impacted during the COVID-19 pandemic. China’s strategies for controlling COVID-19 offer valuable lessons for the global community. By learning from China’s experience and lessons, other countries could also find appropriate methods to control the pandemic. Problem statement What measures has China taken to control the pandemic? What lessons has China learned through this pandemic? Approach/methods The literature on China’s lessons and experience in controlling the COVID-19 pandemic was searched and reviewed. Related newspapers and magazines were also searched. Results China’s experience can be summed up as establishing temporary hospitals, strict isolation, experts with a knowledge of COVID-19, and measures that increase social distancing. Conclusions By learning from the experience of China, other countries in the world could eventually find the methods to control the COVID-19 pandemic. An emergency response system should be established in each country. Doctors and nurses are not alone in fighting COVID-19, and the entire world is helping them. With cooperation, current difficulties could be overcome.


2012 ◽  
Vol 226-228 ◽  
pp. 2253-2257
Author(s):  
Ren Hui Liu ◽  
Bo Yu

It is a nonlinear complex system for project emergency response system, that is a continuous process for the evolution of emergency construction project development process. The nonlinear differential equations that can describe the sudden emergency construction project the evolution of mathematical models. Emergency system by Logistic model was modified, taking into account the development of emergency systems will certainly be outside the system during the impact, combined with the project incidents of law principles of the role of Heinrich proposed TS-based emergency response system evolution equation Model, demonstrated the system at different stages of the emergency rules and features. For the emergency system in which the different stages of development, the corresponding measures to improve emergency response capabilities.


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