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Updates found with 'gsm gsm gps'

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Updates found with 'gsm gsm gps'

IEEE 2016 -2017 Embedded System Projects TitlesS.No Project Title Code1. Coexistence of ZigBee-Based WBAN and Wi-Fi for Health Telemonitoring Systems Wireless2. A Novel Wireless Multifunctional Electronic Current Transformer based on ZigBee-based Communication Wireless3. Configurable ZigBee-based control system for people with multiple disabilities in smart homes Wireless4. ZigBee network system for observing operating activities of work vehicles Wireless5. Interference-Mitigated ZigBee-Based Advanced Metering Infrastructure Wireless6. A Mobile ZigBee Module in a Traffic Control System ` Wireless7. Energy Efficient Outdoor Light Monitoring and Control Architecture Using Embedded System Wireless8. Low-power wearable ECG monitoring system for multiple-patient remote monitoring Wireless9. Energy-Efficient Intelligent Street Lighting System Using Traffic-Adaptive Control Wireless10. Development of a distributed disaster data and human life sign probe system Wireless11. Design and implementation of a home automation system for smart grid applications Wireless12. Milk products monitoring system with arm processor for early detection of microbial activity ARM13. Micro grid demonstration gateway for players communication and load monitoring and management Wireless14. WiFACT -- Wireless Fingerprinting Automated Continuous Training Wireless15. Lightweight Mashup Middleware for Coal Mine Safety Monitoring and Control Automation Wireless16. A smart wearable system for sudden infant death syndrome monitoring General17. Exoskeleton robots for upper-limb rehabilitation Robotics18. Wearable Camera- and Accelerometer-Based Fall Detection on Portable Devices GSM & GPS19. Innovation in Underwater Robots: Biologically Inspired Swimming Snake Robots Robotics20. GPS based autonomous vehicle navigation and control system GSM & GPS21. Real-Time Driving Monitor System: Combined Cloud Database with GPS IoT22. AgriSys: A smart and ubiquitous controlled-environment agriculture system IoT23. Building Smart Cities Applications using IoT andCloud-based Architectures IoT24. An IoT-based system for collision detection on guardrails IoT25. A vision-based teleoperation method for a robotic arm with 4 degrees of freedom Robotics26. Gesture control of drone using a motion controller Robotics27. Development of the Mobile Robot with a Robot Arm Robotics28. Milk products monitoring system with arm processor for early detection of microbial activity ARM29. Controller Area Network Assisted Grid Synchronization of a Microgrid With Renewable Energy Sources and Storage Electrical30. A Real-Time Embedded System for Monitoring of Cargo Vehicles, Using Controller Area Network (CAN) CAN31. Wireless biosensing network for drivers' health monitoring Biomedical32. Android4Auto: A proposal for integration of Android in vehicle infotainment systems Android33. A pulse measurement and data management system based on Arduino platform and Android device Android34. Remote control and instrumentation of Android devices Android35. “AUTOBOOK” The Messaging Machines (Using GSM and Arduino) Arduino36. Tracking and Theft Prevention System for Two Wheeler Using GSM and GPS GSM & GPS37. Bank Locker Security System Using RFID and GSM Technology GSM38. Design of Entrapment Escalation using GSM for Elevators GSM39. Distribution Line Fault Detection & GSM Module Based Fault Signaling System Electrical40. GSM & PIR Based Advanced Antitheft Security System Security 41. LPG Gas Weight and Leakage Detection System Using GSM GSM42. Android Based Women Tracking System Using GPS and GSM GSM & GPS43. Trespass Prevention System Using IOT IoT44. Automatic Vehicle Accident Detection and Rescue System GSM & GPS45. Design and Implementation of Integrated Mobile Operated Remote Vehicle IoT46. A Wearable Device for Continuous Detection and Screening of Epilepsy during Daily Life IoT47. Review of Automatic Detection and control of Disease for Grape Field Gen48. Environmental Condition Monitoring System for the Industries Gen49. Security Management Access Control System Gen50. Design and Development of Embedded based System for Monitoring Industrial and Environmental Parameters for Analyzing the Health of Human beings Gen51. Visual Surveillance Using Absolute Difference Motion Detection System Raspberry pi52. Automatic Irrigation System Using Internet of Things IoT53. Design of Embedded Irrigation System by Using WSN Wireless54. Vehicle Accident Prevention Using Assistant Braking System Gen55. Smart Transport Database Management System Gen56. Accident Alert Using ZIGBEE and GPS Wireless57. Controlling the Home Appliances Remotely Through Web Application Using ZIGBEE Wireless58. An optimized solar traffic control and alert system using wireless sensor networks Wireless59. Biometric Recognition Technique for ATM System Security60. Light Weight Access Control System for Constrained IOT Devices IoT61. Design of Prototype Model for Home Automation Using Wireless Sensor Networks Wireless62. Automated Sensor Network For Monitoring and Detection of Impurity In Drinking Water System General63. Automated Smart Trolley with Smart Billing Using Arduino Gene64. Embedded Automatic Vehicle Control System Using Voice Recognition On ARM 7 Processor ARM65. Embedded Voice Controlled Computer For Visually Impaired and Physically Disabled People Using Arm Processor ARM66. Implementation of Embedded Web Server Using TCP/IP Protocol with Raspberry PI Raspberry PI67. Designing of Cleaning Robot Robot68. An Analysis of Network-Based Control System Using Controller Area Network (CAN) Protocol CAN69. Identify the Deterioration in Pipe by Using Wheel Operated Robot Robot70. RFID -G Based Navigation System For Visually Impaired To Work at Industry Gen71. New Generation ATM Terminal Services NFC72. A Wireless Sensor Interface for the Quantification of Tremor Using Off the Shelf Components Wireless73. Design and Implementation of Low-Cost SMS Based Monitoring System of Distribution Transformers GSM74. An Integrated Cloud-Based Smart Home Management System with Community Hierarchy Automation75. Home Outlet and LED Array Lamp Controlled by a Smartphone with a Hand Gesture Recognition Gesture76. Low-power wearable ECG monitoring system for multiple-patient remote monitoring Bio-medical77. Smart Real-Time Healthcare Monitoring and Tracking System using GSM/GPS Technologies Bio-medical78. The Design of Building Fire Monitoring System Based on ZigBee-WiFi Networks Wireless
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EMBEDDED PROJECTS ABSTRACT 2016-2017 SMART REAL-TIME HEALTHCARE MONITORING AND TRACKING SYSTEM USING GS/MGPS TECHNOLOGABSTRACT: Health monitoring systems have rapidly evolved recently, and smart systems have been proposed to monitor patient current health conditions, in our proposed and implemented system, we focus on monitoring the patient’s blood pressure, and his body temperature. Based on last decade statistics of medical records, death rates due to hypertensive heart disease, shows that the blood pressure is a crucial risk factor for atherosclerosis and ischemic heart diseases; thus, preventive measures should be taken against high blood pressure which provide the ability to track, trace and save patient’s life at appropriate time is an essential need for mankind.Nowadays, Globalization demands Smart cities, which involves many attributes and services, such as government services, Intelligent Transportation Systems (ITS), energy, health care, water and waste. This paper proposes a system architecture for smart healthcare based on GSM and GPS technologies.The objective of this work is providing an effective application for Real Time Health Monitoring and Tracking. The system will track, trace, monitor patients and facilitate taking care of their health; so efficient medical services could be providedat appropriate time. By Using specific sensors, the data willbe captured and compared with a configurable threshold viamicrocontroller which is defined by a specialized doctor whofollows the patient; in any case of emergency a short messageservice (SMS) will be sent to the Doctor’s mobile number alongwith the measured values through GSM module. furthermore, the GPS provides the position information of the monitoredperson who is under surveillance all the time. Moreover, thepaper demonstrates the feasibility of realizing a complete endto-end smart health system responding to the real health systemdesign requirements by taking in consideration wider vital humanhealth parameters such as respiration rate, nerves signs ... etc.The system will be able to bridge the gap between patients -in dramatic health change occasions- and health entities who response and take actions in real time fashion.
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JAVA /DOT NET PROJECTS ABSTRACT 2016-2017 INVERTED LINEAR QUADTREE: EFFICIENT TOP K SPATIAL KEYWORD SEARCH ABSTRACT: In this paper, With advances in geo-positioning technologies and geo-location services, there are a rapidly growing amount of spatiotextual objects collected in many applications such as location based services and social networks, in which an object is described by its spatial location and a set of keywords (terms). Consequently, the study of spatial keyword search which explores both location and textual description of the objects has attracted great attention from the commercial organizations and research communities. In the paper, we study two fundamental problems in the spatial keyword queries: top k spatial keyword search (TOPK-SK), and batch top k spatial keyword search (BTOPK-SK). Given a set of spatio-textual objects, a query location and a set of query keywords, the TOPK-SK retrieves the closest k objects each of which contains all keywords in the query. BTOPK-SK is the batch processing of sets of TOPK-SK queries. Based on the inverted index and the linear quadtree, we propose a novel index structure, called inverted linear quadtree (IL- Quadtree), which is carefully designed to exploit both spatial and keyword based pruning techniques to effectively reduce the search space. An efficient algorithm is then developed to tackle top k spatial keyword search. To further enhance the filtering capability of the signature of linear quadtree, we propose a partition based method. In addition, to deal with BTOPK-SK, we design a new computing paradigm which partition the queries into groups based on both spatial proximity and the textual relevance between queries. We show that the IL-Quad tree technique can also efficiently support BTOPK-SK. Comprehensive experiments on real and synthetic data clearly demonstrate the efficiency of our methods.EXISTING SYSTEMS: The Existing Techniques for the problem of TOPK-SK query as well as some other variants of top k spatial keyword search. Then other spatial keyword related queries are introduced. Considering the indexing scheme used in existing works, we classify the indexes into two categories, namely Keyword First Index and Spatial First Index. we describe the shortcomings of the existing indexing approaches. the system throughout is poor if a large number of queries are processed one by one. Motivated by this, a large body of existing work have been devoted to investigate how to improve the system throughout with the batch query processing techniques such that a large number of queries in the queue can be processed with a reasonable delay.PROPOSED SYSTEMS: we propose a novel index structure, called inverted linear quadtree (IL- Quadtree), which is carefully designed to exploit both spatial and keyword based pruning techniques to effectively reduce the search space. An efficient algorithm is then developed to tackle top k spatial keyword search. the spatial keyword rank- ing query is proposed to rank objects based on a scoring function which considers the distance to the query location as well as the textual relevance to the query keywords. In the paper, we adopt the linear quadtree structure because the quadtree is more flexible in the sense that the index is adaptive to the distribution of the objects and we may prune the objects at high levels of the quadtree. Clearly, the new structure proposed satisfies the above-mentioned three important criteria of the spatial keyword indexing method.Advantages:An efficient algorithm is developed to support the top k spatial keyword search by taking advantage of the IL-Quadtree. We further propose a partition based method to enhance the effectiveness of the signature of linear quadtree.The main difference is that the construction of WIBR-tree takes advantage of the term frequencies of the keywords to facilitate the joint TOPK-SK queries.Disadvantages: In the GPS navigation system, a POI (point of interest) is a geographically anchored pushpin that someone may find useful or interesting, which is usually annotated with texture information (e.g., descriptions and users’ reviews). Moreover, in many social network services (e.g., Facebook, Flickr), a huge number of geo-tagged photographs are accu- mulated everyday, which can be geo-tagged by users, GPS- enabled smartphones or cameras with a built-in GPS receiver . These uploaded pho- tographs are usually associated with multiple text labels. As a result, in recent years various spatial keyword query models and techniquesHARDWARE REQUIREMENTS: Hardware - Pentium Speed - 1.1 GHz RAM - 1GB Hard Disk - 20 GB Floppy Drive - 1.44 MB Key Board - Standard Windows Keyboard Mouse - Two or Three Button Mouse Monitor - SVGASOFTWARE REQUIREMENTS: Operating System : Windows Technology : Java and J2EE Web Technologies : Html, JavaScript, CSS IDE : My Eclipse Web Server : Tomcat Tool kit : Android Phone Database : My SQL Java Version : J2SDK1.5 Conclusion: The problem of top k spatial keyword search is important due to the increasing amount of spatio-textual objects collected in a wide spectrum of applications. In the paper, we propose a novel index structure, namely IL-Quadtree, to organize the spatio-textual objects. An efficient algorithm is developed to support the top k spatial keyword search by taking advantage of the IL-Quadtree. We further propose a partition based method to enhance the effectiveness of the signature of linear quadtree. To facilitate a large amount of spatial keyword queries, we propose a BTOPK-SK algorithm as well as a query group algorithm to enhance the performance of the system. Our comprehensive experiments convincingly demonstrate the efficiency of our techniques.
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JAVA/DOT NET PROJECTS ABSTRACT 2016-2017 LOCATION PROOF ABSTRACT: Location-based services are quickly becoming immensely popular. In addition to services based on users' current location, many potential services rely on users' location history, or their spatial-temporal provenance. Malicious users may lie about their spatial-temporal provenance without a carefully designed security system for users to prove their past locations. In this paper, we present the Spatial- Temporal provenance Assurance with Mutual Proofs (STAMP) scheme. STAMP is designed for ad - hoc mobile users generating location proofs for each other in a distributed setting. However, it can easily accommodate trusted mobile users and wireless access points. STAMP ensures the integrity and non-transferability of the location proofs and protects users' privacy. Our prototype implementation on the android plat-form shows that STAMP is low-cost in terms of computational and storage resources. Extensive simulation experiments show that our entropy-based trust model is able to achieve high collusion detection accuracy.EXISTING SYSTEM: In the existing system there is a lot of volunteers are needed and also consuming lot of time. Location privacy is an extremely important factor that needs to be taken into consideration when designing any location based systems. Revealing both identity and location information to an untreated party poses threats to a mobile users. Today's location-based services solely rely on users' devices to determine their location, e.g., using GPS. However, it allows malicious users to fake their STP information. Therefore, we need to involve third parties in the creation of STP proofs in order to achieve the integrity of the STP proofs. This, however, opens a number of security and privacy issues. First, involving multiple parties in the generation of STP proofs may jeopardize users' location privacy. Location information is highly sensitive personal data. Knowing where a person was at a particular time, one can infer his/her personal activities, political views, health status, and launch unsolicited advertising, physical attacks or harassment. Authenticity of STP proofs should be one of the main design goals in order to achieve integrity and non-transferability of STP proofs. Moreover, it is possible that multiple parties collude and create fake STP proofs. PROPOSED SYSTEM:In this paper, we propose an STP proof scheme named Spatial-Temporal provenance Assurance with Mutual Proofs (STAMP). STAMP aims at ensuring the integrity and non-transferability of the STP proofs, with the capability of protecting users' privacy. Most of the existing STP proof schemes rely on wireless infrastructure to create proofs for mobile users. However, it may not be feasible for all types of applications.ADVANTAGE:• A distributed STP proof generation (STAMP) is introduced to achieve integrity and non-transferability of STP proofs. • STAMP is designed to maximize users' anonymity and location privacy. Users are given the control over the location granularity of their STP proofs. • STAMP is collusion-resistant. The system is integrated into STAMP to prevent a user from collecting proofs on behalf of another user. An entropy-based trust model is proposed to detect users mutually generating fake proofs for each other.SYSTEM SPECIFICATION:HARDWARE REQUIREMENTS: System : Pentium IV 2.4 GHz. Hard Disk : 40 GB. Floppy Drive : 1.44 Mb. Monitor : 14’ Colour Monitor. Mouse : Optical Mouse. Ram : 512 Mb.SOFTWARE REQUIREMENTS: Operating system : Windows 7 Ultimate. Coding Language : Java. Front-End : Eclipse. Data Base : SQLite Manger.CONCLUSION:STAMP ensures the integrity and non-transferability of the location proofs and protects users' privacy. Most of the existing STP proof schemes rely on wireless infrastructure to create proofs for mobile users. However, it may not be feasible for all types of applications. A security analysis is presented to prove STAMP achieves the security and privacy objectives. A prototype application is implemented on the Android platform. Experiments show that STAMP requires preferably low computational time and storage. Reduce time for searching the route between the locations. Gives accurate details about the current location. User friendly. Reduces paper works. Easy communication between user and the admin. Thus STAMP called the location proof is explained
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