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All Journal International Journal of Electrical and Computer Engineering JTEV (Jurnal Teknik Elektro dan Vokasional Elkom: Jurnal Elektronika dan Komputer Prosiding Seminar Nasional Sains Dan Teknologi Fakultas Teknik PROSIDING CSGTEIS 2013 Journal of Telematics and Informatics Jurnal Teknologi Elektro Proceeding of the Electrical Engineering Computer Science and Informatics TRANSISTOR Elektro dan Informatika Elektrika Angkasa: Jurnal Ilmiah Bidang Teknologi JPPM (Jurnal Pengabdian dan Pemberdayaan Masyarakat) Indonesian Journal of Community Services Jurnal Manajemen Informatika dan Sistem Informasi Journal of Appropriate Technology for Community Services Aviation Electronics, Information Technology, Telecommunications, Electricals, and Controls (AVITEC) Journal of Robotics and Control (JRC) Jurnal Abdi: Media Pengabdian Kepada Masyarakat Medika Teknika : Jurnal Teknik Elektromedik Indonesia JTEIN: Jurnal Teknik Elektro Indonesia Jurnal Sains Teknologi dalam Pemberdayaan Masyarakat JAST International Journal of Advanced Health Science and Technology Jurnal Pengabdian Masyarakat Bidang Sains dan Teknologi INTERNATIONAL JOURNAL OF MECHANICAL COMPUTATIONAL AND MANUFACTURING RESEARCH Medika Trada Jurnal Ilmiah Teknik Elektro Jurnal Riset Rumpun Ilmu Teknik (JURRITEK) Prosiding Seminar Riset Mahasiswa Jurnal Pengabdian Masyarakat dan Riset Pendidikan Journal of Innovative and Creativity Switch: Jurnal Sains dan Teknologi Informasi Emitor: Jurnal Teknik Elektro Uranus: Jurnal Ilmiah Teknik Elektro, Sains dan Informatika International Journal of Information Engineering and Science LANCAH Jurnal Inovasi dan Tren
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ANALISIS KEAKURASIAN INFUSION PUMP DENGAN TINGKAT KOMPONEN DALAM NEGERI (TKDN) MENGGUNAKAN METODE UNCERTAINTY Dedy Iskandar; Eka Nuryanto Budisusila
MEDIKA TRADA Vol 6 No 2 (2025): MEDIKA TRADA: Jurnal Teknik Elektromedik Polbitrada Vol 6 No 2 (2025)
Publisher : LPPM POLBITRADA

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.59485/jtemp.v6i2.153

Abstract

Component-Level Domestic Content Policy (TKDN) encourages the utilization of domestically produced medical devices; however, their accuracy and safety must be proven. This study aims to analyze the accuracy of domestic infusion pumps using the uncertainty measurement method. A total of four units from four brands (Endo, ESA Tech, Inmedik, and Krisma Care) were tested on the flow rate parameter with variations of 10, 50, 100, 200, and 300 mL/hour. Each test point was measured six times using a calibrated Fluke IDA 5 Infusion Device Analyzer. Data were analyzed through calculations of mean, correction, standard deviation, and expanded uncertainty (k = 2). Based on the analysis results, all TKDN infusion pumps (100%) met the tolerance limit of ±10% in accordance with the PO.002-18 standard and were declared fit for use. The highest correction value of 25.57 mL/hour (8.5%) was recorded for the Endo brand at a setting of 300 mL/hour, while the lowest correction of 0.21 mL/hour (0.7%) was found in ESA Tech. All measurement points across the four brands showed consistency within the permitted tolerance limits, with measurement uncertainty variations between ±0.15 and ±0.17 mL/hour. These findings prove that domestically produced infusion pumps possess accuracy and reliability equivalent to the standards required for clinical use.
Analisis Perbandingan Kinerja Simulator NIBP Impor dan Lokal terhadap Blood Pressure Monitor dengan Metode Uncertainty Safariati Isabela; Eka Nuryanto Budisusila
MEDIKA TRADA Vol 6 No 2 (2025): MEDIKA TRADA: Jurnal Teknik Elektromedik Polbitrada Vol 6 No 2 (2025)
Publisher : LPPM POLBITRADA

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.59485/jtemp.v6i2.154

Abstract

Calibration of non-invasive blood pressure (NIBP) devices is essential to ensure measurement accuracy in healthcare services. This study aims to compare the performance of two calibrators, XB1000 and Multisim, in testing two NIBP units using the uncertainty analysis method. Measurements were conducted on systolic, diastolic, and heart rate parameters with a total of 16 data points per parameter. The results show that XB1000 achieved a lower total average expanded uncertainty (U95) of 0.421 mmHg compared to Multisim at 0.529 mmHg. Specifically, XB1000 demonstrated the lowest uncertainty across all parameters, with an overall 20.3% improvement over Multisim. Error analysis indicated that systolic measurements had an average error of 2.063 mmHg, diastolic -1.167 mmHg, and heart rate -0.062 bpm. Based on these findings, XB1000 is recommended as the preferred calibrator for NIBP devices, as it provides lower measurement uncertainty and improved accuracy across all tested parameters.
Analisis Akurasi flowrate dan Ketidakpastian Syringe Pump Produk Dalam Negeri dengan Metode ISO GUM MUHAMMAD AFIFUDIN; Eka Nuryanto Budisusila
MEDIKA TRADA Vol 6 No 2 (2025): MEDIKA TRADA: Jurnal Teknik Elektromedik Polbitrada Vol 6 No 2 (2025)
Publisher : LPPM POLBITRADA

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.59485/jtemp.v6i2.160

Abstract

This study evaluates the accuracy of locally manufactured syringe pumps used in Karanganyar District Hospital and analyzes their measurement uncertainty based on the ISO GUM method. Five Indonesian brands (Endo, Esa Tech, Inmedik, KalTech, and Krisma) were tested using an Infusion Device Analyzer at three flow-rate set-points (10, 50, and 100 ml/h) and an occlusion test at 100 ml/h. All devices met the standard tolerance limits (±10% and <20 psi). The expanded uncertainty ranged from ±0.09 to ±0.70 ml/h, indicating reliable measurement performance. KalTech and Inmedik demonstrated the most stable accuracy, while Esa Tech tended to over-read at low flow rates and Krisma showed significant under-reading at high flow rates, though still within acceptable limits. Statistical tests confirmed no significant differences among brands. Overall, the findings support that Indonesia-made syringe pumps meet technical requirements and strengthen the implementation of the national TKDN policy for reducing dependence on imported medical devices.
Pengembangan Sistem Deteksi Anemia Non-Invasif Menggunakan Photoplethysmography (PPG) dan Logika Fuzzy untuk Estimasi Kadar Hemoglobin Darojat Yugiantoro; Eka Nuryanto Budisusila; Agus Suprajitno; Arief Marwanto; Abdul Haris Kuspranoto
MEDIKA TRADA Vol 6 No 2 (2025): MEDIKA TRADA: Jurnal Teknik Elektromedik Polbitrada Vol 6 No 2 (2025)
Publisher : LPPM POLBITRADA

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.59485/jtemp.v6i2.163

Abstract

The Anemia is a global health issue affecting many individuals worldwide. Traditional anemia detection through invasive blood testing is often costly, time-consuming, and requires trained medical personnel. This study developed a non-invasive anemia detection system based on Photoplethysmography (PPG) technology and fuzzy logic to estimate hemoglobin (Hb) levels and classify the degree of anemia. The system uses a PPG sensor to measure red and infrared light intensities, which are used to calculate the ratio and estimate the hemoglobin levels. The fuzzy logic system then classifies the estimated Hb results into the categories of Severe Anemia, Moderate Anemia, and Mild Anemia. The results of the study indicate that this system provides an estimated hemoglobin level with an accuracy of 88.42%, and can classify anemia degrees with results comparable to conventional blood testing. This system offers a more practical, efficient, and non-invasive alternative for anemia detection and has the potential to be used for self-health monitoring.
Implementasi Kontrol PID Pada Alat Negative Pressure Wound Therapy Naufal Adkha; Eka Nuryanto Budisusila
Elkom: Jurnal Elektronika dan Komputer Vol. 19 No. 1 (2026): Juli : Jurnal Elektronika dan Komputer
Publisher : STEKOM PRESS

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.51903/elkom.v19i1.3457

Abstract

This study aims to implement Proportional-Integral-Derivative (PID) control in a Negative Pressure Wound Therapy (NPWT) device to improve the precision and stability of negative pressure applied to wounds. NPWT is a standard therapy for complex wounds that applies subatmospheric pressure to accelerate healing. The developed system consists of three operating modes, namely continuous, intermittent, and dynamic, to tailor therapy based on wound type and patient needs. The prototype was built using main components including the XGZP101DB1R pressure sensor, ESP32 microcontroller, DC vacuum motor, and LCD Nextion interface. The PID algorithm was optimized through a trial-and-error method to achieve a stable response with minimal overshoot and fast response time. Test results show that the system can operate in a pressure range of -25 mmHg to -150 mmHg with very high accuracy, as indicated by an error percentage below 2% across all modes. PID control proved effective in maintaining pressure according to the setpoint, with a response time ranging from 12.8 to 15.8 seconds depending on the target pressure. Thus, this research successfully developed a precise, stable, and adaptive NPWT system, ready for further testing in clinical applications.
Penyuluhan Standarisasi Lampu Penerangan Jalan Umum Bagi Masyarakat Desa Manggihan Kecamatan Getasan Kabupaten Semarang Eka Nuryanto Budisusila; Dedi Nugroho; Muhammad Khosyi&#039;in
ABDIKAN: Jurnal Pengabdian Masyarakat Bidang Sains dan Teknologi Vol. 5 No. 2 (2026): Mei 2026
Publisher : Yayasan Literasi Sains Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.55123/abdikan.v5i2.7845

Abstract

Public Street Lighting (PSL) plays an important role in improving safety, security, and comfort for communities during nighttime activities. However, in many rural areas, as is the case in Manggihan Village, PSL installations at several points are installed haphazardly with irregular pole spacing, without paying attention to proper technical and safety factors, and are simply able to be turned on only. This community service program aims to improve public understanding of street lighting installation standards based on Indonesian National Standards and electrical installation regulations. The implementation method included educational counseling, discussions, and technical assistance for residents of Manggihan Village, Getasan District, Semarang Regency. The materials delivered covered the basic concepts of street lighting systems, illumination standards, energy-efficient lighting technology, and safe electrical installation practices. The results showed an improvement in community knowledge regarding proper installation standards for street lighting systems. The activity also increased awareness of energy-efficient LED lighting and safe electrical practices. This program is expected to support the development of safer and more efficient rural street lighting infrastructure.
Sistem Kontrol Pompa Air Adaptif Berbasis Logika Fuzzy dan IoT untuk Mitigasi Banjir Ivan Ade Pradipta; Eka Nuryanto Budisusila
Jurnal Teknologi Elektro Vol. 17 No. 1 (2026)
Publisher : Electrical Engineering, Universitas Mercu Buana

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.22441/jte.2026.v17i1.007

Abstract

Abstrak – Stasiun pompa air konvensional di DKI Jakarta, seperti Stasiun Pompa Cideng, seringkali tidak efisien karena mengandalkan sistem kontrol On/Off yang reaktif berbasis satu sensor dan tidak memiliki manajemen beban pompa. Penelitian ini bertujuan untuk merancang dan mengimplementasikan sebuah prototipe sistem kontrol otomatis yang adaptif, antisipatif, dan andal untuk enam unit pompa air. Metode yang digunakan adalah Perancangan Sistem yang mengintegrasikan tiga teknologi utama. Arsitektur sistem ini menggunakan strategi dual-microcontroller, di mana Arduino Mega 2560 berfungsi sebagai unit kontrol utama (menjalankan Logika Fuzzy dan rotasi) dan ESP32 berfungsi sebagai gateway IoT. Logika fuzzy dengan 27 aturan digunakan untuk memetakan tiga variabel masukan (curah hujan, debit sungai, tinggi muka air) menjadi enam keluaran biner (On/Off) secara individual, satu untuk setiap pompa. Status siaga (normal, waspada, siaga, dan bahaya) kemudian ditentukan berdasarkan jumlah pompa yang aktif sebagai indikator. Untuk keandalan jangka panjang, diimplementasikan mekanisme rotasi pompa 7 hari berbasis RTC DS3231 yang dirancang untuk pemerataan beban kerja. Hasil pengujian prototipe pada empat skenario pengujian (normal, waspada, siaga, dan bahaya) menunjukkan sistem berhasil merespons secara proporsional dengan mengaktifkan kombinasi pompa yang tepat (0, 2, 3, dan 6 pompa) sesuai aturan. Analisis rotasi 7 hari membuktikan pemerataan beban kerja pompa dengan selisih maksimum hanya 1 siklus aktif per minggu. Integrasi IoT melalui platform Blynk berhasil menampilkan data sensor dan status pompa secara real-time dengan latensi rata-rata 1,8 detik. Disimpulkan bahwa sistem yang diusulkan terbukti unggul signifikan dibandingkan metode konvensional karena bersifat adaptif, antisipatif, proporsional, dan lebih andal.Kata kunci: Perancangan Sistem; Logika Fuzzy; Kontrol Pompa; Mitigasi Banjir; Internet of Things; Rotasi Pompa.
Simulation and Modeling CUK H-Bridge Current-Controlled Inverter Using a Proportional-Integral Algorithm Fahrul Indra; Eka Nuryanto Budisusila
Emitor: Jurnal Teknik Elektro Vol 26, No 2: July 2026
Publisher : Universitas Muhammadiyah Surakarta

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.23917/emitor.v26i2.17937

Abstract

The growing demand for renewable energy drives the need for efficient and reliable power conversion systems. This paper presents the simulation and modeling of a CUK H-Bridge Inverter with current control using a Proportional Integral (PI) algorithm implemented in Power Simulator (PSIM) software. The proposed topology combines an H-Bridge inverter with a CUK AC–AC converter, enabling bidirectional power flow, buck-boost voltage operation, and low Total Harmonic Distortion (THD) in the output current. The current control loop uses a PI controller tuned using the empirical Ziegler–Nichols (Z-N) method, followed by fine-tuning, resulting in optimal parameters of Kp = 0.6, Ti = 0.0167, and Ki = 35. Simulation results show that the actual output current (Iact) accurately follows the reference current (Iref) with minimal steady-state error. The topology operates in buck mode (Vo < Vin), steady-state mode (Vo ≈ Vin), and boost mode (Vo > Vin) depending on the given reference current value. A maximum output power of 2.25 kW is achieved at a reference current of 15 A with a maximum output voltage of 150 V. The measured output current THD is 3.6%, meeting the IEEE 519 standard. These results confirm the effectiveness of the PI-controlled CUK H-Bridge Inverter topology for renewable energy applications.