Articles
Sosialisasi Aplikasi Monitoring Keamanan Tanggul Lapindo via Smartphone di Desa Gempolsari
Shazana Dhiya Ayuni;
Syamsudduha Syahrorinni;
Jamaaluddin Jamaaluddin
Jurnal Abdimas PHB : Jurnal Pengabdian Masyarakat Progresif Humanis Brainstorming Vol 5, No 1 (2022): Jurnal Abdimas PHB : Jurnal Pengabdian Masyarakat Progresif Humanis Brainstormin
Publisher : Politeknik Harapan Bersama
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DOI: 10.30591/japhb.v5i1.2717
Seiring berkembangnya teknologi membuat semua orang kini memiliki smartphone. Apalagi harga smartphone android dapat dijangkau oleh semua kalangan. Berdasarkan hal ini maka alat monitoring tanggul lapindo yang sudah dibuat oleh shazana dan tim dapat diakses juga melalui smartphone. Sehingga ketika alat sudah dipasang maka hal selanjutnya adalah mensosialisasikan aplikasi monitoring ini kepada warga desa Gempolsari. Sasaran rumah warga yang dituju yaitu yang tinggal tepat bersinggungan dengan pagar pembatas tanggul dan hanya berjarak 500m dari tanggul lapindo. Aplikasi yang dibuat digunakan semudah mungkin sehingga dapat dimengerti oleh warga dari berbagai kalangan. Sehingga dengan aplikasi ini didapat rasa aman bagi warga yang tinggal di sekitar tanggul. Juga nanti akan diberi kuisoner sebagai dari hasil kebermanfaatan dari aplikasi monitoring ini bagi warga desa Gempolsari.
STRATEGI MITIGASI BENCANA TANGGUL LAPINDO DI DESA GEMPOLSARI: DISASTER MITIGATION STRATEGY OF LAPINDO EMPIRE IN GEMPOLSARI VILLAGE
Shazana Dhiya Ayuni;
Jamaaluddin;
Sy. Syahrorini
Jurnal Teknologi dan Terapan Bisnis Vol. 4 No. 1 (2021): Vol. 4 No. 1 (2021) Jurnal Teknologi dan Terapan Bisnis
Publisher : UPPM Akademi Komunitas Semen Indonesia
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DOI: 10.0301/jttb.v4i1.95
The leakage of natural gas drilling carried out by PT. Lapindo Brantas, resulted in 3 sub-districts in Sidoarjo affected by mudflow. Since 2006 untill now per-January 2021, the embankments that’s have been built often collapsed, leakage or burst. Meanwhile, there has been no disaster mitigation action when it happened. So far, when the mud flows into residents’s houses, the authorities have taken a long time to act the disaster. And the residents anticipate themselves when the mud overflows their house. So it is necessary to have disaster mitigation strategy that also collaborates with others parties in sub-districts. So that rhe local residents know what to do when disaster happened. Disaster mitigation strategies that will be carried out include pre-disaster, during disaster and post-disaster. With that result residents have a sense of security even though they live in disaster-prone areas.
SENSOR ACCELEROMETER MMA7361 SEBAGAI DETEKSI GETARAN PADA TANGGUL LUMPUR LAPINDO : MMA7361 ACCELEROMETER SENSOR AS VIBRATION DETECTION ON LAPINDO MUD EMBED
Shazana Dhiya Ayuni;
Jamaaluddin;
Sy. Syahrorini
Jurnal Teknologi dan Terapan Bisnis Vol. 4 No. 1 (2021): Vol. 4 No. 1 (2021) Jurnal Teknologi dan Terapan Bisnis
Publisher : UPPM Akademi Komunitas Semen Indonesia
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DOI: 10.0301/jttb.v4i1.96
Lapindo mudflow caused by leakage natural gas drilling in charge by neglation of PT. Lapindo Brantas since 2006. It has been 14 years ago but mudflow still can not be stopped and inflict a financial loss to citizen who lived around the embankment. Eventough the embankment and guardrails were built but sometimes the mud flow into resident’s houses while its raining caused of increases water discharge or the embankment subsidience or reep. In fact, there isn’t any mitigation disaster system from any institution who responbility of this disaster. Whereas the resident’s houses located not far from the embankment, around 500 m away.That happens usually is the mudflow is already stagnate at their house it will took for more days to reconstruction the embankment. therefore it will be more efficiently if we monitoring the embankment vibration using accelerometer sensor where located in dike-prone points then it send via smartphone using Blynk application. Every vibration will show real time at Blynk, so the citizen can monitoring security of this Lapindo embankment. When the accident happened the application will send warning and notification to smartphone so they can save their live and property.
Community Dedication on General Facilities Using Solar Cell System in Kalialo Village, Kupang, Jabon, Sidoarjo
Boy Isma Putra;
Jamaaluddin Jamaaluddin;
Shazana Dhiya Ayuni
Kontribusia : Research Dissemination for Community Development Vol 4 No 2 (2021): Kontribusia (Research Dissemination for Community Development)
Publisher : OJS Universitas Muhammadiyah Gresik
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DOI: 10.30587/kontribusia.v4i2.2529
In essence, road access to Kalialo Village is still very difficult due to the dark terrain and street lighting (PJU), this is because the PJU electricity in the village has been cut off since the last 6 months. Kalialo Village has provided information to PLN regarding the cut off of public street lighting but has not received any response to date.To help and facilitate this access, we as the Center for Engineering and Energy Studies feel the need for a Solar Power Plant (PLTS) or Solar Cel. Which will be installed at certain vital points or locations on the road access to Kalialo Village.
STRATEGI MITIGASI BENCANA TANGGUL LAPINDO DI DESA GEMPOLSARI: DISASTER MITIGATION STRATEGY OF LAPINDO EMPIRE IN GEMPOLSARI VILLAGE
Shazana Dhiya Ayuni;
Jamaaluddin;
Sy. Syahrorini
Jurnal Teknologi dan Terapan Bisnis Vol. 4 No. 1 (2021): Vol. 4 No. 1 (2021) Jurnal Teknologi dan Terapan Bisnis
Publisher : UPPM Akademi Komunitas Semen Indonesia
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DOI: 10.0301/jttb.v4i1.95
The leakage of natural gas drilling carried out by PT. Lapindo Brantas, resulted in 3 sub-districts in Sidoarjo affected by mudflow. Since 2006 untill now per-January 2021, the embankments that’s have been built often collapsed, leakage or burst. Meanwhile, there has been no disaster mitigation action when it happened. So far, when the mud flows into residents’s houses, the authorities have taken a long time to act the disaster. And the residents anticipate themselves when the mud overflows their house. So it is necessary to have disaster mitigation strategy that also collaborates with others parties in sub-districts. So that rhe local residents know what to do when disaster happened. Disaster mitigation strategies that will be carried out include pre-disaster, during disaster and post-disaster. With that result residents have a sense of security even though they live in disaster-prone areas.
SENSOR ACCELEROMETER MMA7361 SEBAGAI DETEKSI GETARAN PADA TANGGUL LUMPUR LAPINDO : MMA7361 ACCELEROMETER SENSOR AS VIBRATION DETECTION ON LAPINDO MUD EMBED
Shazana Dhiya Ayuni;
Jamaaluddin;
Sy. Syahrorini
Jurnal Teknologi dan Terapan Bisnis Vol. 4 No. 1 (2021): Vol. 4 No. 1 (2021) Jurnal Teknologi dan Terapan Bisnis
Publisher : UPPM Akademi Komunitas Semen Indonesia
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DOI: 10.0301/jttb.v4i1.96
Lapindo mudflow caused by leakage natural gas drilling in charge by neglation of PT. Lapindo Brantas since 2006. It has been 14 years ago but mudflow still can not be stopped and inflict a financial loss to citizen who lived around the embankment. Eventough the embankment and guardrails were built but sometimes the mud flow into resident’s houses while its raining caused of increases water discharge or the embankment subsidience or reep. In fact, there isn’t any mitigation disaster system from any institution who responbility of this disaster. Whereas the resident’s houses located not far from the embankment, around 500 m away.That happens usually is the mudflow is already stagnate at their house it will took for more days to reconstruction the embankment. therefore it will be more efficiently if we monitoring the embankment vibration using accelerometer sensor where located in dike-prone points then it send via smartphone using Blynk application. Every vibration will show real time at Blynk, so the citizen can monitoring security of this Lapindo embankment. When the accident happened the application will send warning and notification to smartphone so they can save their live and property.
Prototype Social Distancing Reminder Using HC-SR04 Sensor At The Payment Counter Via A Smartphone
Ferry Wahyu Perdana;
Shazana Dhiya Ayuni;
Arief Wisaksono;
Syamsudduha Syahrorini
Procedia of Engineering and Life Science Vol 1 No 2 (2021): Proceedings of the 2nd Seminar Nasional Sains 2021
Publisher : Universitas Muhammadiyah Sidoarjo
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DOI: 10.21070/pels.v1i2.952
Starting from the beginning of March 2019 and even until the end of 2020, the Indonesian people are experienced prolonged suffering due to the emergence of a new type of infectious disease called Corona Virus 2019. Social Distancing is a program that aims to prevent the transmission of the COVID-19 disease as early as possible. In this research, the method used is the observation technique and literature study for the implementation of the HC-SR04 sensor as one of the distance sensors used for distance reminders implemented in public spaces using IoT as a monitoring system. The results obtained are the reading accuracy of the HC-SR04 sensor is quite accurate to 100% accuracy and when the HC-SR04 sensor detects less than 8cm (1meter real distance) then the DF Player will sound, the LCD will display a display “Jaga Jarak Anda! ", And there will be a notification"Peringatan: Kondisikan Jarak" on a smartphone that has the Blynk application installed.
Arduino Based Multifunction Fan
Muhammad Ulum;
Izza Anshory;
Dwi Hadidjaja Rasjid Saputra;
Shazana Dhiya Ayuni
Procedia of Engineering and Life Science Vol 1 No 2 (2021): Proceedings of the 2nd Seminar Nasional Sains 2021
Publisher : Universitas Muhammadiyah Sidoarjo
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DOI: 10.21070/pels.v1i2.1026
Fans are electronic equipment that are often found in Indonesia, but fan use is generally still used manually. This can cause the use of fans to be ineffective, and again humans must approach the fan in regulating the fan speed according to room temperature and adjusting the fan direction that is right for use. The purpose of this research is to innovate conventional fans into automatic fans to make it easier and more comfortable for humans to operate. This research method is to explain the design of hardware and software as well as the exposure of the experimental tools. The results of this study are that the fan automatically selects the fan speed according to the temperature read by the DHT11 sensor, and if the read temperature exceeds 350C, the system will spray water vapor through a 12V DC pump and stop if the temperature read is below 350C, then the fan will turn on. On / off automatically according to the presence of people around the fan through the PIR sensor, the temperature indicator and the presence of people are displayed on the 16X2 LCD, then for the fan in terms of turning right-left and spraying perfume can be controlled from a distance of 7 meters via IR remote. Where all these systems are controlled via a microcontroller in the form of ARDUINO UNO
Diseminasi Disinfektan Covid-19 Pembangkit Listrik Tenaga Surya Pada Masjid Baitul Muttaqiin Pucu’An
Jamaaluddin Jamaaluddin;
Izza Anshory;
Shazana Dhiya Ayuni
Jurnal Abdimas ADPI Sains dan Teknologi Vol. 1 No. 2 (2020): Jurnal Abdimas ADPI Sains dan Teknologi
Publisher : Asosiasi Dosen Pengabdian kepada Masyarakat Indonesia
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DOI: 10.47841/saintek.v1i2.97
In this kind of COVID-19 pandemic, prevention is very necessary. The forms of the prevention process from the dangers of COVID-19 are spraying disinfectants regularly and continuously. Spraying of disinfectants is carried out in many public places / public facilities such as worship facilities, tourist attractions, offices and others. In this community service, the prevention efforts will be applied to the Baitul Muttaqiin mosque in Pucu'an village. Baitul Muttaqiin Pucukan Mosque is a mosque located at the eastern end of Sidoarjo Regency. This mosque needs attention because it is located at the end of Sidoarjo and difficult to transport. The location can only be reached by motorbike or boat. By using energy sources from Solar Power Plants. This Solar Power Plant is managed by a Solar Charge Controller and a water pump, so spraying this disinfectant can be done without incurring electricity costs. Photovoltaic systems with a power of 50 Wattpeak as many as 3 units are regulated by the Solar Charge Controller utilizing batteries as solar energy storage will be able to operate the system properly. Disinfectant ingredients and how to operate the system are taught to residents around the mosque. This system turned out to be very effective to be used as an effort to prevent the development of COVID-19 in general areas of worship in particular and to hamlet residents in general.
Prototype of Power Sharing Automation System in 3 Phase Power Source Based on Internet of Things
Ali Mahfud Roziqin;
Indah Sulistiyowati;
Shazana Dhiya Ayuni;
Syamsudduha Syahrorini
Procedia of Engineering and Life Science Vol 2 No 2 (2022): Proceedings of the 4th Seminar Nasional Sains 2022
Publisher : Universitas Muhammadiyah Sidoarjo
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DOI: 10.21070/pels.v2i2.1265
In companies or goods storage places, to see the value of the load current in the RST phase, we still use Clamp Ampere and in doing power distribution using manual work by moving the load on the RST phase from one MCB to another MCB until it is evenly distributed so that the process takes time. In this study, the method of observation and literature study was used to implement the ACS712 sensor as a current sensor on a prototype power splitter automation system on a 3-phase power source based on the internet of things as a tool in the form of a prototype with 3 200 watt incandescent lamp loads that can be operated with a finger remotely using android smartphone to help users so that power distribution is not manually and can be automatically evenly distributed in each RST phase. The results of automatic power sharing with 3 200 watt incandescent lamp loads, the first load is automatically turned on using the R phase with a current value of 0.8 Ampere, then the second load is turned on automatically using the S phase with a current value of 0.8 Ampere and the third load turned on automatically using phase T with a current value of 0.8 Ampere. The difference between the readings of the current value between the Clamp Ampere and the blynk is 0.03-0.08 Ampere and to find out the current value in each phase can be seen in the blynk application.