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Although in actual, this feature has the potential to be disrupted due to the large amount of user traffic. In additions, developers improve the system not only distribute earthquake and tsunami information, but also provide evacuation route direction & survivor detection as a disaster risk reduction.

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Android alert system more effective because it has a lower response time (< 5 seconds) than previous early warning system with a longer response time (13.48 seconds). The result of this study the apps obtained less than 5 seconds respond time to proceed the earthquake & tsunami information from BMKG website to trigger early alarm in users android mobile phone. This study used the Research and Development method with the ADDIE (Analyze, Design, Development, Implementation and Evaluate) procedure. The objective of this study is to develop android real time earthquake & tsunami alarm as early warning system, evacuation directions and earthquake survivor detection for rescuer to reducing disaster risk. It also has a direct impact on evacuation procedures and means that evacuation times are very short as well. The very short tsunami arrival time of 10 – 60 minutes is a challenge for tsunami early warning.

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The Aceh tsunami is one of the biggest tsunami history over past 2 decades which occurred on 26 December 2004, claimed the lives of around a quarter of a million people in areas surrounding the Indian Ocean. Since the earth was formed, a number of tsunamis have been happening all over the world. Not all earthquakes cause tsunamis, but the majority of tsunamis are caused by earthquakes. There are approximately 4000 earthquakes happened in Indonesia per year, whereas earthquakes of a magnitude greater than 5.5, or earthquakes that can be physically felt on land, average around 70-100 per year, and destructive earthquakes around one to two times a year.

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This study developed a tsunami early warning system that works effectively with a fast average response time of 13.48 seconds to download tsunami potential information on the BMKG website and proceed it to trigger the loudspeaker at places of worship. This study used the Research and Development (RnD) method with the ADDIE (Analyze, Design, Development, Implementation and Evaluate) procedure.

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The objective of this study was to create an automatic tsunami early warning system that utilizes tsunami potential data from the Indonesian Agency for Meteorological, Climatological and Geophysics’ website to be conveyed through loudspeakers in places of worship whose area will be affected by the tsunami. This condition is not yet supported by adequate means of disaster mitigation and a tsunami early warning system.

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Indonesia frequently experiences earthquakes and tsunami since Indonesia is geologically located in the ring of fire and sits along three major tectonic plates of the world thus this natural phenomena have the potential to continuously occur for example a notable tsunami that hit Aceh in 2004 and killed 160,000 people.







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