Supriya

Supriya.R1, Sowmya.S2, Yashaswini.Y.N3, Syeda Umme Hani4, Ambika.B.J5 18TH Semester Student ,School of CIT,REVA UNIVERSITY,Bangalore.HYPERLINK [email protected]@gmail.com 28TH Semester Student ,School of CIT,REVA UNIVERSITY,Bangalore, HYPERLINK [email protected]@gmail.com 38TH Semester Student ,School of CIT,REVA UNIVERSITY,Bangalore, HYPERLINK [email protected]@gmail.com 48TH Semester Student ,School of CIT,REVA UNIVERSITY,Bangalore, HYPERLINK [email protected]@gmail.com 58TH Assistant Professor ,,School of CIT,REVA UNIVERSITY,Bangalore, HYPERLINK [email protected]@reva.edu.in ABSTRACT The emerging demographic change towards an ageing population is introducing drastic changes into our society. A person who lives in nursing homes or care units, becomes depressed due to lack of independence. Our aging society demands a reliable solution to stay active for a long time, prevent social isolation and assistance for performing daily life activities independently in their own homes. In this project, we aim to develop a system that assists elderly people for independent living in their own homes. It reduces the health expenditures and burden of health care professionals since their medical aspect, like reminding timely consumption of medicines as per the prescription through a voice output .This module assists the elderly person to complete their daily life activities. It facilitates the care giver assistants by tracking the surrounding environmental conditions around elderly persons in their own homes and alert their family away from them in case of an emergency through a phone call . I.INTRODUCTION Smart home is viewed as an autonomous sound living for elderly individuals. A progress in telephone innovation and new style of figuring worldview allows continuous procurement, preparing, and following of exercises in brilliant home. It decreases the wellbeing consumptions and weight of social insurance experts in care office units. Brilliant home is a canny specialist to see the earth and process the tactile information. Cell phone application imparts through web administrations and helps the elderly individual to finish their day by day life exercises. It encourages the guardian collaborator by following the elderly people in their own particular homes and maintains a strategic distance from specific mishaps. Moreover, it additionally assists the relatives with tracking the exercises, when they are outside from homes. In both developed and developing nations, quantities of cell phone clients are expanding step by step. Cell phone runs an entire working framework and gives a stage to application designers and clients. Our proposed arrangement is to exploit assistive advances in smart home and cell phone, and build up an everyday life movement following application for the health of elderly society and guardians. It helps the elderly individual to finish the exercises autonomously in their own particular homes, leftover portion for taking medications and in the meantime encourages relatives and parental figures to track them when the elderly people remain in the home. II.LITERATURE SURVEY Our project is to analyse the surrounding and report any changes by using real time data monitored by sensor (temperature and heart beat). The sensor detects and collects data and sends it to the NodeMCU. The NodeMCU has code for converting the Analog signals collected by the sensors to digital signals communicating it to the Gsm for further communication to the Android application through Bluetooth and wifi. The Harvard University research project, Code Blue, deploy low-power wireless devices to provide ad hoc sensor network infrastructure for emergency medical care. They developed patient triage application in .NET compact framework, running on an iPAQ PDA with Windows CE. The application operates as active tags to store the information of a patients identity, status, and history. John K developed a Smartphone application Widget, to avoid in-take medicine mistakes. It can remind its users to take the correct medicines on time and keep an in-take record for later review by healthcare professionals. It was developed on a Windows Mobile 6.0 with the help of built in calendar of .NET framework. III.SYSTEM DESIGN In this first we have to register and login to the Web application. After the successful registration user profile will be generated and the user can request for item and can also specify there requirements and this data is stored in database and sent to recommendation module and even the past behaviour of the user is processed and compared with their friends data. New item and rating is suggested to the target user . If the user is satisfied by the item then they can rate the item again and this is stored in database for other user recommendation.. SOFTWARE REQUIREMENTS AURDINOAurdino is an open-source electronics platform based on easy to use hardware and software. HTML 5HTML 5 is a markup language used for structuring and presenting content on the World Wide Web. EMBEDDED C Embedded C is a set of language extensions for the C programming language by the C standards committee to address commonality issues that exist between C extensions for different embedded systems. HARDWARE REQUIREMENTS NODE MCU Node MCUis an open sourceHYPERLINK https//en.wikipedia.org/wiki/Internet_of_Things o Internet of ThingsIOTplatform. It includes firmware which runs on theHYPERLINK https//en.wikipedia.org/wiki/ESP8266 o ESP8266ESP8266HYPERLINK https//en.wikipedia.org/wiki/Wi-Fi o Wi-FiWi-FiHYPERLINK https//en.wikipedia.org/wiki/System_on_a_chip o System on a chipSoCfromHYPERLINK https//en.wikipedia.org/w/index.phptitleEspressif_Systemsactioneditredlink1 o Espressif Systems (page does not exist)Espresso Systems,and hardwarewhich is based on the ESP-12 module. The firmware uses theHYPERLINK https//en.wikipedia.org/wiki/Lua_(programming_language) o Lua (programming language)Luascripting language. It is based on the eLuaproject, and built on theEspresso. It uses many open source projects, such as lua-cjson,and spiffs. HEARTBEAT SENSOR IV.EXPERIMENTAL RESULTS V.CONCLUSION To give versatility to following the day by day life exercises, cell phone is a helpful and reasonable gadget because of its rich functionalities. In this DHT SENSORventure, we have used the mobile phone that may lessen the requests on seniors considerations and exertion while performing everyday life exercises. It produces isolate cautions for inadequate basic, steady, planned and ignores exercises for elderly people. Rundown of subscribed elderly people, their last finished exercises and alarms for basic circumstances are produced for guardians and relatives. It decreases the wellbeing consumptions and weight of human services experts. Our application is very much coordinated with brilliant home condition and clinic framework. Many embedded systems have substantially different designs according to their functions and utilities. The microcontroller located at the centre of the system forms the control unit of the entire project. This project consists of Temperature and Humidity sensor(DHT), Heart Beat sensor, OLED, GSM and an android device. The android Application also provides alert for timely tablet intake in the form of voice output. For demo purpose OLED is used to display the changes in output values of sensors and any event occurring. VI.REFERENCES 1 P. Crilly and V. Muthukkumarasamy, Using smart phones and body sensors to deliver pervasive mobile personal healthcare, in proceeding of 6th International Conference on Intelligent Sensors, Sensor Networks and Information Processing (ISSNIP), Brisbane, pp. 29-296, Dec. 2010. 2 N. Armstrong, C.D. Nugent, G. Moore, and D.D. Finlay, Developing smartphone applications for people with Alzheimers disease, in Proceeding of 10th IEEE International Conference on Information Technology and Applications in Biomedicine (ITAB), pp. 1 – 5, Corfu, Greece, 2010. 3 B. Chowdhury and R. Khosla, RFID-based Hospital Real-time Patient Management System, in proceeding of 6th IEEE International Conference on Computer and Information Science, Melbourne, Australia, pp. 363 – 368, July, 2007. 4 Malan, T. Fulford-jones, M. Welsh, and S. Moulton, CodeBlue An ad hoc sensor network infrastructure for emergency medical care, in Proceeding of International Workshop on Wearable and Implantable Body Sensor Networks, London, 2004. 6Mei-Ying Wang, J.K. Zao, P.H. Tsai, and J.W.S. Liu, Wedjat A Mobile Phone Based Medicine In-take Reminder and Monitor, in Proceeding of 9th IEEE International Conference on Bioinformatics and BioEngineering (BIBE 09), Hsinchu, Taiwan, pp. 423-430,June2009 ePEPEL jJV / Rfouokkfc-oiy8Wi.7VLYg 0 9bFbA5wGhSaG4-_zjZtVzbbE,PIG
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