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Problem Statement: Evolution of technology has always been endeavored with making daily life simple. With a fast paced life everybody today is harnessing the benefits of technology except some parts of the society .One of them is the visually impaired Who have to rely on others for travelling and other activities? This paper aims at providing one such theoretical model which incorporates the latest technologies to provide efficient and smart electronic aid to the blind. We have used IR sensors along with ultrasonic range finder circuit for hurdle detection. Bluetooth module which along with GPS technology and an Android application for blind, will provide voice assistance to desired location and in panic situations will send SMS alert to registered mobile numbers The basic objective of the system is to provide a convenient and easy navigation aid for unsighted which helps in artificial vision by providing information about the environmental scenario of static and dynamic objects around them.
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Problem Statement: In this paper, an approach to the development of medical wearables is proposed. The system integrates sensing modules, Wi-Fi microcontroller and Web browser based user interface. As an example, ECG-PPG monitor is presented. The signals are acquired by AD8232 ECG amplifier module and MAX30102 PPG and SpO2 system on chip. The ESP8266 microcontroller is used as a host, while HTML5 protocol with JavaScript, Canvas and Web Socket performs user interfacing, data post-processing and visualization. The idea and testing confirm satisfactory results, both in terms of performance and cost.
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Problem Statement: A cost-effective portable glucose monitoring system with remote data access based on a novel e-oscilloscope was developed using a glucose biofuel cell and a capacitor circuit interfaced to an ESP8266 microcontroller programmed to convert the charge/discharge rates of the capacitor functioning as a transducer. The capacitor charge/discharge rates were converted into glucose concentration readings that is monitored remotely. The glucose monitoring system comprise a glucose biofuel cell, a charge pump circuit, a capacitor and an ESP microcontroller. The anode was fabricated by modifying a gold microwire with nanoporous colloidal platinum (Au-co-Pt) and the cathode was constructed using a mesh dense network of multiwalled carbon nanotubes modified with bilirubin oxidase, respectively. The glucose monitoring system showed sensitivity of 1.18 Hz/mM•cm2 with a correlation coefficient of 0.9939 with increasing glucose concentration from 1 mM to 25 mM. In addition, the glucose monitoring system exhibited optimal operation at a pH of 7.4 and 37 C, which is ideal for physiological glucose monitoring.
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Problem Statement: In the present-day world we are residing in a highly industrialized and tech-driven environment. No single day goes without interacting with the mechanized surrounding. It goes without saying that it does have an adverse effect on the environment we live in. There is a concerning need to monitor the quality of air present in the working environment. This paper focuses on a device capable of monitoring the index of air quality in the industrial environment along with fire safety measures for the employees. This is achieved by using a wifienabled ESP8266 NodeMCU microcontroller which is interfaced with air quality monitoring sensor MQ135, DHT11 (humidity and temperature) sensor for environmental parameters and flame sensor (IR based) for fire safety. OLED (I2C) as a display module. The proposed device works with the Blynk application (an IoT platform) with Thingspeak cloud storage.
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Problem Statement: In the contemporary era, Now a days there is a surge in the crimes contra to the women. Women are obverse with molestation, sexual torment and acid assaults in the nonce civilization. There is no Impeccable system that ensures protection for the women. In this paper, a persuasive protection and alert framework for women has been evolved. The refined system assures a safeguard for women in the aspects of tracking, recording and self-defense. The smart women protection system is unified with Internet of things and open source technology to contribute favored ensue. The Raspberry Pi 3 and ESP8266 Wi-Fi device employed with modules aforementioned as fingerprint, GSM, GPS, camera, body sensors and Nerve simulator enhances to accomplishngly safeguard the women. The GSM, GPS, camera, fingerprint module and body sensors ensures the tracking and locating the women. The nerve simulator employs the job of self defense. In the case of troublesome situation, women in the equipped device ensures the fingerprint and then the GPS and GSM equipped with a microphone and speaker, camera and body sensors will be triggered and the location alerts will be directed to the corresponding persons and stats will be updated in the server also with the aid of nerve simulator an array of shocks can be remitted to the attacker. The developed framework insure that it immensely accomplishes its task in protecting a women in all the circumstances.
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Problem Statement: The Internet of Things (IoT) is the network of physical devices, vehicles, home appliances, and other items embedded with electronics, software, sensors, actuators and connectivity which enables these things to connect and exchange data. The number of IoT devices has increased 31% year-over-year to 8.4 billion in 2017 and it is estimated that there will be 30 billion devices by 2020. Water pollution is a major environmental problem in India. The largest source of water pollution in India is untreated sewage. Other sources of pollution include agricultural runoff and unregulated small scale industry that results in polluting, most of the rivers, lakes and surface water in India. In this paper, An IoT Based Smart Water Quality Monitoring System using Cloud and Deep Learningis proposedto monitor the quality of the water in water-bodies. In conventional systems, the monitoring process involves the manual collection of sample water from various regions, followed by laboratory testing and analysis. This process is ineffective, as this process is arduous and timeconsuming and it does not provide real-time results. The quality of water should be monitored continuously, to ensure the safe supply of water from any water bodies and water resources. Hence, the design and development of a low-cost system for real-time monitoring of water quality using the Internet of Things (IoT) is essential. Monitoring water quality in water bodies using Internet of Things (IoT) helps in combating environmental issues and improving the health and living standards of all living things. The proposed system monitors the quality of water relentlessly with the help of IoT devices, such as, NodeMCU. The in-built Wi-Fi module is attached in NodeMCU which enables internet connectivity transfers the measured data from sensors to the Cloud. The prototype is designed in such a way that it can monitor the number of pollutants in the water. Multiple sensors are used to measure various parameters to assess the quality of water from water bodies. The results are stored in the Cloud, deep learning techniques are used to predict whether the water suitable or not.
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Problem Statement: This paper describes an internet of things (IoT)- based parking sensing system that deploys a robust outdoor vehicle localization and recognition methodologies. Although, parking occupancy monitoring systems have made a considerable progress, smart parking payment is rarely studied in smart parking research. This paper proposes a new low-cost sensor system allowing real-time parking occupancy monitoring along with parking payment without requiring any user/driver interaction. The proposed on-board vehicle transceiver device (VTD) sensor, will be deployed without having to install new components on each parking lot. It has benefits in terms of detection and payment reliability, and reduced expense by reducing the system complexity, infrastructure investment, and battery replacement expense. A robust vehicle recognition and parking occupancy monitoring is achieved using two-fold sensing approach. It is a sequence of motion detector and global navigation satellite system (GNSS) sensing techniques. The sensor is triggered when the vehicle is within a parking area thanks to a proposed radio frequency (RF) wake-up technique. As consequence, the energy consumption is optimized and the VTD has a power saving scheme with a power consumption as low as 20 µW at 3 V supply. The VTD can be seamlessly integrated into the intelligent vehicular ad-hoc networks (inVANETs).
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Problem Statement: Nowadays, the smart home automation system has a significant role in makes daily work easier and efficient. Keeping room keys is an obstacle. Therefore many research has been proposed however the lack of a security system makes the automation systems less trustworthy and unreliable, as well as limited control distances. This paper purposes speech recognition to control the door and only registered people can access it. The proposed system uses microcontroller NodeMCU ESP8266 with a wifi connection to control actuators. The android application has features tracking history control menu, real-time monitoring menu, registration menu, and speech recognition control. The system security consists of a login system, biometric authentication, and specific speech command. The system also uses restful API technology and a java programming language for conducting data transactions either android or microcontroller with a database server. The results show a stable response time of 2 seconds for the microcontroller to control the smart home locally and distantly in one city. The system also proves the registration menu, tracking history control and real-time monitoring perform well with 100% success. The 3 levels of security system also have 100% success with each level must have a value true before doing control of the smart home. This level of security proves the application system is not easy to hack by anyone, very reliable and trustworthy.
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Problem Statement: Recent aggressive scientific and technological developments all these focus on a global environmental issue considering air quality system, reveals the fact that India is facing severe health hazards. In recent reports, more than 10 cities in India are listed on top. The air quality index (AQI) in India launched in 2014 under Swachh Bharat Abhiyan monitors air pollution on 10 scales ranging from low (green) to moderate (yellow) to serious (red) through data analysis of various air contaminating matters like pm 2.5, O3, NO2, SO2, CO. The present paper develops an Internet of Things (IoT) that enabled air quality monitoring system mobile in nature analyzing real-time surrounding data measuring Carbon Monoxide, Smoke and PM level. The system can measure local area air contamination and generate analyzed data based on which it alerts the people through a buzzer device integrated into the system. The user-friendly and easy handling of the system technology is such that it can be installed in houses and in small places.
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Problem Statement: nowadays development of IoT applications with robotics is an ongoing revaluation. This paper mainly focuses on the security, remote surveillance, and monitoring of our homes done by the surveillance robots. Remote surveillance has become the most important research topic over the past decade. Through this paper we put forward a surveillance robot that can be used in domestic areas and many other places. Robots are becoming important in our day to day life activities as they reduce the human labor and probability of error. We can control robots manually or they can be automatic based on the need of people. This paper focuses on design and implementation of mobile robot for obstacle detection and avoidance in a real-time basis.
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Problem Statement: In view of the measurement and control of temperature and humidity in the material warehouse of a factory, the Internet of things scheme is adopted, ESP8266 chip is used to connect WiFi, temperature and humidity sensor DHT11 is used to collect temperature and humidity, the collected temperature and humidity data is connected to Baidu intelligent cloud server through MQTT protocol, and the collected temperature and humidity data is sent to WeChat and stored in cloud through topic subscription and release of Baidu intelligent cloud According to, and at the same time use gray prediction model to predict the temperature and humidity data of the warehouse, through the WeChat end, you can view the current and predicted temperature and humidity data of the warehouse. The design of the measurement and control system is convenient and effective for real-time detection and prediction of the temperature and humidity data of the material warehouse. The system has the advantages of small size, low deployment cost and so on.
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Problem Statement: This design represents the usage of IoT in health care system.This design introduces a wireless health monitoring system that can monitor a human 24x7. This system consists of a number of the part. Controlling and data processing is done through the Arduino Uno board, all the sensors are connected to Arduino UNO. Through this system, we can measure ECG, heartbeat, BP, and spo2. Through sensors, it is possible to measure all these values. Here all the sensors are powered using a solar power system. All these analog sensors can be connected to Arduino through any of the six analog pins. These values are then used for detecting any critical situation. In the case of a critical situation, an alert can be given as a message. Also, it is possible to monitor the persons health from any location in the world through the Thingspeak cloud. Data from sensors is uploaded to Thingspeak periodically without any interruption if internet is available. Here ESP8266 wifi module is used for connecting Arduino to the internet. For achieving best monitoring, networked sensors are either in the form of wire able or embedded in our living environment. This system monitors patients pulsate, vital sign salie. if any of on top of parameter goes on the far side the brink price this sensible device inform doctors or care taker and kindle corrective actions to save lot of patients life s. Humans are facing problems of unaccepted died due various illness which is because of lack medical care to patients at right time. Primary goal to develop a resalable patient monitoring system using IOT. Patients temperature heart beat rate ECG data are monitored displayed and stored by the system and send to the doctors mobile containing applications. IOT based patient monitoring system effectively monitored patience health and status and save life on time
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