Detection of lpg leakage by live monitoring and controlling from smart phone

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International Research Journal of Engineering and Technology (IRJET) Volume: 04 Issue: 02 | Feb -2017

www.irjet.net

e-ISSN: 2395 -0056 p-ISSN: 2395-0072

DETECTION OF LPG LEAKAGE BY LIVE MONITORING AND CONTROLLING FROM SMART PHONE Akshya.A 1, Jasmine Jeniffer.J 2, Priyanka.A.R 3 ,S.Panimalar 4 4S.Panimalar

,Assistant Professor, Dept. of Computer Science & Engineering, Panimalar Institute Of Technology, Chennai,Tamilnadu, India ---------------------------------------------------------------------***-------------------------------------------------------------------Abstract - The project aim is to design and develop a spillage of household cooking gas at encompassing cloud connected smart LPG gas cylinder platform, acting conditions. Small scale electro mechanical as a safety device for detecting LPG gas leak at low levels frameworks construct inter digital sensors were to avoid any possible accidents. It is also capable of manufactured in light of oxidized single-precious sensing fire breakout in the area and weight of the gas in stone silicon surfaces by the maskless order to provide real time monitoring and alert over photolithography method. Dangdang [2] proposed a Internet. If an abnormal condition is detected, the device method constrained air and gas holes are ordinarily sends an alert to the smart phone of the user and also identified utilizing sensor innovation. In this generates an alert to other authorities. In addition to commitment the utilization of aloof IR- thermography this upon detecting a gas leakage or a fire breakout, the is proposed to allow remote hole recognition by device automatically takes safety precautionary evaluating the subsequent temperature profile measures, like gas valve closing, ventilation opening, fire unsettling influence because of extension of forced gas. sprinkler activation and home electrical power supply Remote estimations are favorable as they are simpler cut-off. and more secure to direct. Shanbi Peng, Enbin Liu [3] proposed a method that another strategy to recognize Key Words: LPG gas leak; firebreakout ;gas valve spillage in view of transient model enhances a closing;ventilation opening; fire sprinkler. conventional run of the mill line technique. By finishing the pipeline transient model, it is watched that the time 1.INTRODUCTION taken for startup to settle is less devoured. The distinctive plan is enhanced, so that there is no A large number of residential gas spills happen compelling reason to do consistent state reproduction. each year, with many prompting to wounds, passing, hardware harm, and a shocking ecological impact. 3. EXISTING SYSTEM There have been many taking care of this issue, yet with restricted achievement. A remote gas spill A number of methods are reported that pipeline identification with mugginess and temperature analysis frameworks offered ascend to ultrasonic detecting arrangement by means of SMS utilizing GSM sensors these sensors, however unaffected by innovation. The recognition happens when the propane ecological conditions, don't gauge the power of the and butane is available and the approach is assessed break, are still not able to decide its cause. A hole that to control the controller through SMS. The trial discovery framework that just associates with the setup is conveyed with GSM and gas, moistness, remote umbrella temperature sensor interfaced with the controller from which the information are transmitted to the recipient 3.1 DISADVANTAGES unit i.e., versatile in this way the gas spillage are checked consistently even the temperature and •Content mode permits just constrained elements of mugginess esteem additionally redesigned after each SMS. recognition the SMS is sent to the concerned individual. 2. LITERATURE SURVEY Anindya Nag, Asif Iqbal[1] proposed that Gas

•It doesn’t show the accurate amount of gas leaked.

detecting innovation has been one among the topical research work. This paper demonstrates the exploration done on the discovery system of © 2017, IRJET

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