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                  <text>VOL. 20, NO. 4 2022</text>
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                <text>TELKOMNIKA Telecommunication, Computing, Electronics and Control &#13;
Type-1 and type-2 fuzzy logic-based space vector modulation for two-level inverter fed induction motor </text>
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                <text>Induction motor, Pulse width modulation, Space vector modulation, Type-1 fuzzy logic, Type-2 fuzzy logic</text>
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                <text>Two-level inverter control with type-1 and type-2 fuzzy logic-based space vector pulse-width modulation (PWM) method for induction motor drive (IMD) is presented in this paper. A new sampling time independent strategy with type-1 and type-2 fuzzy based methods are used in generating three phase duty ratios which are directly obtained without mathematical equations. The conventional method of space vector modulation (SVM) produces the duty ratios for the inverter which are sampling time dependent. However, in type-1 and type-2 fuzzy based space vector PWM algorithms, the three phases duty ratios generated are sampling time independent and with a new integrated dead-time insertion in SVM itself, can be implemented practically for any switching frequency. As the rule-base for Mamdani non-singleton interval type-1 and type-2 fuzzy inference systems are designed manually, with the expert knowledge of conventional space vector PWM, the duty ratios of the inverter are generated such that the performance of the IMD is improved. The simulation studies for aforementioned cases is performed in matrix laboratory (MATLAB) and experimental validation for the proposed space vector PWM algorithms is validated using real-time&#13;
sacraetheologiae magister (STM) hardware with STM32F429I Cortex M4 processor for a 1 hp IMD. </text>
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                <text>Abhiram Tikkani, Polaki V. N. Prasad</text>
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                <text>DOI: 10.12928/TELKOMNIKA.v20i4.22454</text>
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                <text>Universitas Ahmad Dahlan</text>
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                <text>Sri Wahyuni</text>
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                <text>TELKOMNIKA Telecommunication, Computing, Electronics and Control &#13;
Application of a wireless apnea monitoring device for crisis alertness and sleep diagnosis </text>
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                <text>Over the past five decades, obstructive sleep apnea has been noted as a&#13;
prevalent symptom in adults with escalated health conditions like stroke, obesity, high blood pressure, cardiovascular complications and chronic kidney diseases; to mention but a few. Apnea hypopnea index (AHI) is the average number of apnea or hypopnea events which occur during a complete sleep cycle per hour. It is a measure of determining the severity of sleep apnea, where an index range of 5 to 15 indicates mild, 15 to 30, moderate and above 30 denotes severe sleep apnea. In a bid to perform this diagnosis, several approaches have been considered. In this study vibrating sensor module and an Arduino Uno Rev3 microcontroller which retrieve breathing status data during sleep and identifies apnea events is proposed. The developed monitoring device displays the apnea count, effectively, which can be used to determine AHI. It also incorporates a Bluetooth module for wireless, real-time data monitoring which allows for more comfortable usability. The result is the successful implementation of an efficient, cost-effective system which can be used for sleep apnea diagnosis and provides preventive health care measures. </text>
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                <text>Ademola Abdulkareem, Tobiloba Emmanuel Somefun,Victoria Oguntosin, Princess Oahimire</text>
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                <text>DOI: 10.12928/TELKOMNIKA.v20i4.20461</text>
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                <text>Universitas Ahmad Dahlan</text>
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                <text>Sri Wahyuni</text>
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                <text>ISSN: 1693-6930</text>
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                <text>TELKOMNIKA Telecommunication, Computing, Electronics and Control &#13;
A security services for internet of thing smart health care solutions based blockchain technology</text>
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                <text>Pervasive and ubiquitous computing has enabled people better integrate&#13;
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                <text>Ahmed Hashim Mohammed, Rawaa Mohammed Abdul Hussein</text>
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                <text>DOI: 10.12928/TELKOMNIKA.v20i4.23765</text>
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                <text>Universitas Ahmad Dahlan</text>
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                <text>Sri Wahyuni</text>
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                <text>ISSN: 1693-6930</text>
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A compressed sensing approach for antenna array calibration</text>
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                <text>This paper presented a compressive sensing (CS) calibration technique that simultaneously measures all the element excitations of a 2×2 active phased antenna array (APAA) instantaneously. The power patterns of the rectangular 2×2 APAA element are synchronized to orthogonally cross multiplicative sub-array system applying compressive sensing in achieving an array thinning along two 1-D sub-arrays for a fixed steered beam radiation. The far field radiation pattern direction of the 2×2 APAA is examined considering the mutual effect, complex excitation of the amplitude and phase of the antenna elements placed on the x and y axes. The unwanted array excitation with errors are calibrated using minimization vector as a standard basic pursuit problem in compressive sensing technique for the 2×2 APAA calibration. The elements amplitude and phase shift variation are compared with reference state 0 in order to evaluate the faulty error array elements. The performance evaluation of this proposed technique is measured and demonstrated to validate the effectiveness of the proposed antenna calibration technique. </text>
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Towards more accurate and efficient human iris recognition model using deep learning technology </text>
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                <text>In this study, an end-to-end human iris recognition system is presented to automatically identify individuals for high level of security purposes.&#13;
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consumption time of 17.59 minutes for training set. While the testing&#13;
accuracy 100% with a consumption time of 12 seconds. The introduced iris recognition system has been successfully applied. </text>
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                <text>Bashra Kadhim Oleiwi Chabor Alwawi, Ali Fadhil Yaseen Althabhawee</text>
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                <text>DOI: 10.12928/TELKOMNIKA.v20i4.23759</text>
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                <text>Sri Wahyuni</text>
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                <text>ISSN: 1693-6930</text>
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Secure transmission for uplink and downlink non-orthogonal multiple access system with imperfect channel state information</text>
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                <text>NOMA, Physical layer security, SPSC</text>
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                <text>In this paper, we design a secure transmission scheme in uplink and downlink of non-orthogonal multiple access (NOMA) system. In this scenario, two pairs of base station-user can operate under the presence of eavesdropper. The relay plays an important role to forward signals from group of base stations to serve distant users. However, the eavesdropper can overhear signal which leads to secure performance need be reconsidered. To provide secure performance, we derive the closed-form expressions for strictly positive secrecy capacity (SPSC). In addition, we rely on relay for enlarge coverage area. The channel conditions meet imperfect channel state information (CSI) which shows degraded secure performance. Results confirm the relationship between&#13;
transmit power at the source and and SPSC how many main parameters affecting secure performance metric. Furthermore, simulation results show that the uplink and downlink NOMA technique improves secure performance in the low SPSC region. We further conduct analysis by using Monte-Carlo simulations. </text>
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                <text>Dinh-Thuan Do, Minh-Sang Van Nguyen</text>
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                <text>DOI: 10.12928/TELKOMNIKA.v20i4.20934</text>
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                <text>Sri Wahyuni</text>
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                <text>ISSN: 1693-6930</text>
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Low-cost electronic bamboo walking stick: an innovative assistive mobility aid for the blind </text>
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                <text>Present-day advancements in embedded systems have uncovered a wide area of innovation in inexpensive supportive systems for the visually impaired. Right from the uncomplicated white cane up to the most exceptional electronic walking stick, many designs have been proposed aiming at assisting and protecting visually challenged persons. This paper aims at contributing to these assistive aids by designing a bamboo stick sensor-based unit with ultrasonic and water detection sensors which is robust, cheap, and easily operated for the deprived blind person. Thus, improving the usefulness of the current white stick to consolidate both above-knee and below-knee deterrent identifications. The developed bamboo stick simply operates using ultrasound sensors for sensing the impediments before contact and a water detection sensor for water detection on the pathway. It offers vibration and different sound feedbacks to the operator per the spot of the obstacle. The results obtained by trial from a volunteer who walked an obstructed path blindfolded were excellent. The results ensure quick detection, safety and enhance the speed of mobility of the user. The simulations performed were accurate and relevant to the ultimate goal of the paper. The electronic bamboo walking stick developed can be used to guide the visually impaired in an indoor or outdoor environment. </text>
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                <text>Elisha D. Markus, Frank Kulor, Michael W. Apprey, Kafui T. Agbevanu</text>
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                <text>DOI: 10.12928/TELKOMNIKA.v20i4.23758</text>
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                <text>Universitas Ahmad Dahlan</text>
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                <text>Sri Wahyuni</text>
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                <text>ISSN: 1693-6930</text>
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Similarity measurement on digital mammogram classification</text>
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                <text>Breast cancer is one of the dominant causes of death in the world.&#13;
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In examining mammograms, the overall parenchyma pattern of the left and right breast was placed side by side for symmetry assessed of left and right breast tissue by radiologist. Thus, in building computer-aided diagnosis (CAD) system for screening mammography, it is necessary to adapt the working procedure of the radiologist. In this study, 30 training images and 30 testing images from Kotabaru Oncology Clinic in Yogyakarta were used. The first step was to enhance the image quality with median filter and contrast limited adaptive histogram equalization (CLAHE). Then, feature extraction was processed by histogram-based and by gray level co-occurrence matrix (GLCM) based. Furthermore, the similarity measurement process was used to measure the difference value between selected features, i.e. angular second moment (ASM), inverse difference moment (IDM), contrast, entropy based GLCM, and energy, on the left and right mammograms. This process was intended to assess the symmetry of left and right mammograms as radiologists do in mammography screening. The obtained results of the classification between normal and abnormal images with backpropagation algorithm were accuracy of 0.933, sensitivity of 0.833, and specificity of 1.000.</text>
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                <text>DOI: 10.12928/TELKOMNIKA.v20i4.10698</text>
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                <text>Sri Wahyuni</text>
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Modeling and analysis of millimeter-wave propagation in dusty environments</text>
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                <text>In the fifth generation of wireless communication systems (5G),&#13;
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                <text>Farhad E. Mahmood, Fawaz Y. Abdullah</text>
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                <text>DOI: 10.12928/TELKOMNIKA.v20i4.23245</text>
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                <text>Sri Wahyuni</text>
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                <text>ISSN: 1693-6930</text>
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                  <text>VOL. 20, NO. 4 2022</text>
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Design visual studio based GUI applications on-grid connected rooftop photovoltaic measurement </text>
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                <text>This article describes the design of a data system to integrate energy&#13;
conversion from photovoltaic measurements connected to the power grid. The software used is visual studio, while the hardware uses polycrystalline photovoltaic (PV) with a capacity of 2.08 kW and several sensors that have been integrated into Arduino. Parameter data in measuring the performance of this PV system consists of temperature and humidity sensors to measure the panel surface, direct current (DC) current sensor, DC voltage sensor. To measure the current and voltage sourced from the electricity network, the module (PZEM-004T) is used. Measurements are designed using a graphical user interface (GUI) on a Visual Studio application that has been interfaced through Arduino programming. The data output on the sensor measurement will simultaneously record the circuit that has been connected to the solar panel and then display it visually in the form of tables and graphs in real time with a delay of 1 minute. The results of PV on grid measurements in sunny weather conditions obtained the maximum value of all measurements with a DC voltage of 221 V, while for an alternating&#13;
current (AC) voltage of 231.60 V, the DC value reached 1827.17 W while&#13;
the AC power was 1681 W. </text>
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                <text>Habib Satria,  Syafii, Rudi Salam, Moranain Mungkin, Welly Yandi</text>
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              <elementText elementTextId="46640">
                <text>DOI: 10.12928/TELKOMNIKA.v20i4.23302</text>
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                <text>ISSN: 1693-6930</text>
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