Penyakit demam berdarah dengue (DBD) merupakan salah satu masalah kesehatan masyarakat di Indonesia dan sering menimbulkan suatu kejadian luar biasa (KLB). Salah satu yang bisa dilakukan untuk merancang program pemberantasan dan pencegahan DBD yang lebih baik adalah dengan melakukan analisis spasial dengan menggunakan Geographic Informatioon System (GIS). GIS dapat memetakan penyakit berbasis alamat penderita bermanfaat dalam melihat sebaran penyakit sehingga mampu mengidentifikasi daerah yang berisiko tinggi. Selain itu, dilakukannya analisis spasial memungkinkan suatu penyakit untuk dilihat dari berbagai konteks sehingga diharapkan mampu dilakukan perencanaan yang lebih baik dalam memberantas dan mencegah suatu penyakit. Hasil penelitian ini menunjukkan ada pengaruh faktor keberadaan kontainer air, sanitasi lingkungan dan kepadatan vektor terhadap peningkatan kasus DBD di Kota Kediri. Perilaku masyarakat berpengaruh dalam upaya pencegahan dan pemberantasan DBD terhadap terhadap kejadian penyakit DBD di Kota Kediri. Hasil identifikasi tipe virus DHF dengan menggunakan PCR di daerah endemis DBD kota Kediri di dapatkan serotype negative untuk Den-1, Den-2, Den-3 dan Den-4. GIS berperan dalam evaluasi program pemberantasan kasus DBD di Kota Kediri dimana dapat menggambarkan peta daerah kasus endemis DBD di kota Kediri.
Quadcopter is an unmanned aircraft driven by four motors and can be controlled remotely, making it usable for detecting an object. Current adaptation of the technology is incredibly effectively used for the public interests, especially for monitoring the safety of victims during natural disasters. The purpose of the present study was to design a quadcopter using the DJI Phantom Frame as an initial test for detecting objects at several heights. The present study used the experimental method, in which the quadcopter was designed first and subsequently several tests were performed. In terms of specifications, the designed quadcopter had an X configuration with 2 rotors at the front and 2 rotors at the rear. It used 2-blade propellers of 9 inch in diameter, Inav FC, Dji Phantom Frame, Esc Blheli_s 30a, DJI 920-kv motor, Phantom 4s battery, DJI gimbal, DJI Phantom camera, DJI Phantom remote control, Ublox m8n GPS, 9-inch propellers, Inav software and DJI GO. The quadcopter was subjected to the following tests: the Li-po (lithium polymer) battery power tests; quadcopter remote control test, Global Position System (GPS) test, and radio telemetry test.
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