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Perancangan Sistem Kontrol dan Monitoring Kualitas Air dan Suhu Air pada Kolam Budidaya Ikan Image
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Perancangan Sistem Kontrol dan Monitoring Kualitas Air dan Suhu Air pada Kolam Budidaya Ikan

The quality and the temperature of pond water is an important parameter that need to get attention in fish cultivation. Every type of fish has their own characteristic towards water condition and pond temperature.  The monitoring of water quality in cultivation pond is done manually and it takes a lot of time. The purpose of this research is to design web-based control system device and monitoring the quality of the water of fish cultivation pond including salinity, temperature and the hardness in real time using special application. This device design consists of salinity sensor, hardness sensor, and temperature sensor. Temperature can be controlled and monitored automatically on the application via computer/laptop. The result of this research is temperature drop by 0,1 oC on a 10 liters pond that takes 18 seconds, and to decrease the temperature of 1 oC takes 180 seconds (3 minutes). To raise the temperature of 0,1 oC takes 264 seconds or 4,4 minutes, and to raise the temperature of  1 oC takes 2640 seconds or 44 minutes. The percentage of error for sensor reading is ranged 2,4% - 3,9%.
Perancangan Filter Bandpass dengan Teknik Penggabungan Filter Lowpass dan Highpass Image
Journal article

Perancangan Filter Bandpass dengan Teknik Penggabungan Filter Lowpass dan Highpass

UWB technology started to become an attraction in the field of research since the Federal Communications Commission (FCC) allowing this communication is used for commercial communications at a frequency (3.1 GHz - 10.6 GHz). UWB has a very wide frequency range so that in practice there is often interference due to signal interference. Therefore in UWB system filter design is required to maintain UWB device. In telecommunications, filter is a transmission device that has the function to pass the desired frequency. In this paper designed bandpass filter which is applied for UWB technology. The designed bandpass filter is a combination of a lowpass filter (LPF) and a highpass filter (HPF). The lowpass filter has the characteristic of passing a frequency lower than its cut-off frequency. The highpass filter has the characteristic passing a frequency higher than its cut-off frequency. Considering the characteristics of both filters, the bandpass filter (BPF) is a combination of lowpass and highpass filters. In this research designed lowpass filter in microstrip technology with step impedance method, that is by combining high impedance microstrip and low impedance microstrip with a certain length. As for designing HPF using the distribution method of short circuit stubs by adding via ground on each stub. The design of this filter uses Roger substrate RT 5880 with dielectric constant εr = 2,2 with thickness (h) = 0.508 mm. In this research it can be concluded that bandpass filter can be designed with lowpass and highpass filter incorporation method, although at the merging of highpass and lowpass structures is disturbed by each other, but overall design shows matching bandpass.
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Sistem Monitoring Distribusi Listrik 2x3 MW Image
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Sistem Monitoring Distribusi Listrik 2x3 MW

Pembangkit tenaga listrik menghasilkan sumber energi listrik yang akan disalurkan ke jalur sistem distribusi. Sistem distribusi ini belum sepenuhnya maksimal dalam proses penyaluran energi listrik karena sistem monitoringnya belum maksimal. Hal ini akan berakibat pada kegagalan sistem dalam distribusi listrik. Pada penelitian ini, akan dilakukan sistem monitoring distribusi listrik 2x3 MW di Pembangkit Listrik Tenaga Mesin Gas (PLTMG) Kijang. Sistem monitoring meliputi listrik yang disalurkan dan listrik yang dimanfaatkan untuk pengoperasian peralatan dan komponen pendukung pada sistem pembangkit tenaga listrik. Sistem distribusi listrik di PLTMG Kijang disalurkan melalui jaringan 20 KV. Hasil monitoring yang didapatkan bahwa daya rerata untuk penggunaan pembangkit ketika tidak beroperasi berkisar 1655.894 Watt per bulan. Sistem distribusi listrik ke express feeder pada daya 3 MW menghasilkan rerata cos phi 0.99, frekuensi 50.1 Hz, tegangan 20.1 KV, dan arus 86.14 A. Sistem distribusi listrik pada daya 6 MW menghasilkan rerata cos phi 0.99, frekuensi 50.1 Hz, tegangan 20.1 KV, dan arus 172.3 A.
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