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Ditemukan 55 dokumen yang sesuai dengan query
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Munthe, Charles A.
"Instrumen pemantauan dosis radiasi sinar-x untuk para pekerja radiasi berhasil dikembangkan. Instrumen ini dapat mengukur densitas dan dosis radiasi yang direkam oleh film badge yang dikenakan oleh para pekerja radiasi. Sistem instrumentasi dirancang menggunakan sensor cahaya, DAQ, dan PC dengan menggunakan perangkat lunak LabVIEW. Film badge yang digunakan mempunyai tiga jenis filter yaitu Plastik, SnPb dan Dural. Sensor cahaya yang dipakai mempunyai kemampuan deteksi antara 5-500 lux. Data atenuasi intensitas cahaya oleh film badge yang dideteksi oleh sensor cahaya dirubah ke digital dan diolah oleh DAQ. Data ini kemudian dianalisis dan disimpan di data based beserta identitas pekerja, densitas film, dosis radiasi, dan waktu pengukuran. Data dapat diakumulasi sehingga riwayat paparan radiasi dari pekerja dapat dimonitor dan tersimpan dengan baik. Kalibrasi instrument dilakukan dengan menggunakan kalibrator film densitas. Hasil pengukuran densitas film kalibrator sudah mendekati nilai densitas yang sudah disertifikasi. Instrumen ini dapat dioperasikan dan menunjukkan hasil ukur secara langsung yang dapat dimonitor melalui GUI yang dirancang secara interaktif.

The instrument monitoring radiation doses for the workers in a radiology department at the hospital have been successfully developed. These instruments could measuring density and the radiation doses recorded by film badges worn by radiation workers. Instrumentation system is designed using a light sensors, DAQ, and a PC by LabVIEW software. Film badges that are used had three types of filters ie Plastics, SnPb and Dural. The light sensor has a detection capabilities used between 500-500 lux. A data attenuation of light intensities by film badge detected by light sensors to digital converted and processed by DAQ. This data is then analyzed and stored in a data-based workers and their identity, the film density, radiation doses, and time measurement. The data can be accumulated so that a history of radiation exposure from workers could be monitored and saved fine. The instrument calibration performed using film density calibrator. This instrument can operate and shows the results of direct measurement that can be monitored via a GUI that is designed interactively."
Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2011
S816
UI - Skripsi Open  Universitas Indonesia Library
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Muhammad Irsyad Amzy
"Elekroda Boron-Doped Diamond BDD termodifikasi nanopartikel emas AuNP telah berhasil dipreparasi dengan metode perendaman. Sintesis AuNP dilakukan menggunakan capping agent alil amina dan poli alil amina dan menghasilkan AuNP dengan ukuran partikel rata-rata 93.197 39.228 nm. Karakterisasi BDD termodifikasi AuNP menggunakan XPS dan spektrofotometer SEM-EDS menunjukan adanya keberadaan Au pada permukaan BDD. Namun karakterisasi dengan cyclic voltammetry untuk BDD-AuNP hanya mendeteksi adanya puncak oksidasi dan reduksi Au pada BDD-AuNP dengan dengan capping agent alil amina, dan tidak mendeteksi kedua puncak tersebut pada BDD-AuNP dengan capping agent poli alil amina. BDD-AuNP hasil preparasi kemudian diaplikasikan sebagai sensor oksigen dan sensor Biochemical Oxygen Demand BOD dengan mengukur jumlah oksigen yang dibutuhkan oleh mikroorganisme Rhodoturula mucilaginosa UICC Y-181 dalam larutan untuk mengoksidasi senyawa organik. Glukosa digunakan sebagai sebagai model senyawa organik. Kadar oksigen sisa dalam larutan diukur dengan teknik Multi Pulse Amperometry melalui reaksi reduksi oksigen pada -500mV vs Ag/AgCl. Kurva kalibrasi linier diperoleh dari selisih arus reduksi oksigen sebelum dan setelah waktu kontak 20 menit mikroorganisme dengan larutan glukosa - ?I= I0-I20. Larutan glukosa yang digunakan divariasikan dengan rentang konsentrasi 0,1 ndash; 0,5 mM. Hasil pengukuran menunjukan bahwa BDDN-AuNP yang dipreparasi memiliki sensitifitas dan stabilitas yang baik digunakan sebagai elektroda dalam biosensor BOD.

Boron Doped Diamond BDD modified gold nanoparticles AuNP electrode were successfully prepared by immersion method. The synthesis performed by using allylamine and poly allylamine as the capping agent produced AuNP with an average particle size of 93.197 39.228 nm. Characterization of AuNP modified BDD using XPS and SEM EDS spectrophotometers indicates the presence of Au on BDD surfaces. However, characterization with cyclic voltammetry observed the oxidation reduction couple peaks only at BDD AuNP with allylamine as the capping agent. On the contrary, the peaks were not observed at BDD AuNP with poly allylamine as the capping agent. Then, BDD AuNP electrode was applied as oxygen sensor and biochemical oxygen demand BOD sensors by measuring the amount of oxygen required by the Rhodoturula mucilaginosa UICC Y 181 to oxidize the organic compound in solution. Glucose has been used as a model of organic compounds. The residual oxygen content in solution was measured by Multy Pulse Amperometry technique through oxygen reduction reaction at 500mV vs Ag AgCl. The calibration curve with a concentration range of 0.1 0.5 mM glucose was obtained from the difference of the oxygen reduction current before and after 20 min contact time of microorganism with glucose solution I I0 I20. The measurement results show that the prepared BDD AuNP electrode has good sensitivity and stability for application in BOD biosensor.
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Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2018
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UI - Skripsi Membership  Universitas Indonesia Library
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Barszcz, Tomasz
"This book describes in detail different types of vibration signals and the signal processing methods, including signal resampling and signal envelope, used for condition monitoring of drivetrains. A special emphasis is placed on wind turbines and on the fact that they work in highly varying operational conditions. The core of the book is devoted to cutting-edge methods used to validate and process vibration data in these conditions. Key case studies, where advanced signal processing methods are used to detect failures of gearboxes and bearings of wind turbines, are described and discussed in detail. Vibration sensors, SCADA (Supervisory Control and Data Acquisition), portable data analyzers and online condition monitoring systems, are also covered. This book offers a timely guide to both researchers and professionals working with wind turbines (but also other machines), and to graduate students willing to extend their knowledge in the field of vibration analysis."
Switzerland: Springer Nature, 2019
e20509487
eBooks  Universitas Indonesia Library
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Rio, David del
"This book presents design methods and considerations for digitally-assisted wideband millimeter-wave transmitters. It addresses comprehensively both RF design and digital implementation simultaneously, in order to design energy- and cost-efficient high-performance transmitters for mm-wave high-speed communications. It covers the complete design flow, from link budget assessment to the transistor-level design of different RF front-end blocks, such as mixers and power amplifiers, presenting different alternatives and discussing the existing trade-offs. The authors also analyze the effect of the imperfections of these blocks in the overall performance, while describing techniques to correct and compensate for them digitally. Well-known techniques are revisited, and some new ones are described, giving examples of their applications and proving them in real integrated circuits. "
Switzerland: Springer Cham, 2019
e20501720
eBooks  Universitas Indonesia Library
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"This book comprises selected articles from the International Communications Conference (ICC) 2018 held in Hyderabad, India in 2018. It offers in-depth information on the latest developments in voice-, data-, image- and multimedia processing research and applications, and includes contributions from both academia and industry."
Singapore: Springer Singapore, 2019
e20502510
eBooks  Universitas Indonesia Library
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"This book explores the fabrication of soft material and biomimetic MEMS sensors, presents a review of MEMS/NEMS energy harvesters and self-powered sensors, and focuses on the recent efforts in developing flexible and wearable piezoelectric nanogenerators. It also includes a critical analysis of various energy harvesting principles, such as electromagnetic, piezoelectric, electrostatic, triboelectric, and magnetostrictive. Included are chapters that:
- Describe self/low-powered MEMS devices that are developed through biomimetic and bio-inspired approaches;
- Review the recent progress in kinetic MEMS/NEMS-enabled energy harvesters as self-powered sensors;
- Comprehensively review the ongoing research done in the field of nanofiber-based flexible and wearable energy harvesters;
- Explore the current trends in the field of soft materials research and future challenges."
Switzerland: Springer Nature, 2019
e20509817
eBooks  Universitas Indonesia Library
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Teguh Firmansyah
"Spektrum dari localized surface plasmon resonance (LSPR) yang dapat dikonfigurasi ulang serta teknologi sensor yang memiliki sensitivitas tinggi dengan kemampuan multikinerja sangat dipelukan untuk mendukung Society 5.0. Akan tetapi banyak aplikasi LSPR dengan spektrum yang sulit untuk dikonfigurasi/tuning serta sensor yang tidak sensitive dan mono fungsi. Pada disertasi ini diusulkan pengembangan spektrum LSPR yang dapat dikonfigurasi serta dilajutkan untuk mengembangkan sensor yang memiliki kemampuan multifungsi. Kontribusi penelitian yang dilakukan ini dapat dibedakan menjadi tiga buah cabang utama. Pertama, pengembangan reconfigurable LSPR spektrum dengan mendeposisi nano partikel emas (AuNPs) pada substrat piezoelektrik 36XY-LiTaO3. Kedua, hasil deposisi AuNPs pada bahan piezoelektrik digunakan untuk menghasilkan sensor multifungsi yang mengintegrasikan sensor shear-horizontal surface acoustic waves (SAW) dan sensor LSPR. Ketiga, mendeposisi AuNPs pada substrat kaca yang memiliki struktur multi-layer. Selain itu, pada substrat kaca juga dipabrikasi microwave ring resonator sehingga menghasilkan sensor microwave, sehingga dapat mengkombinasi sensor microwave dan sensor LSPR secara bersamaan. Adapun penjelasan lebih terperinci sebagai berikut ini.
Kontribusi pertama dari disertasi ini difokuskan kepada pengembangan reconfigurable LSPR sepktrum. Dimana LSPR dihasilkan dari deposisi AuNPs pada substrat piezoelektrik 36XY-LiTaO3. Kemudian, kemampuan reconfigure nya didapatkan dari posisi dinamis dari array AuNPs yang ikut berosilasi akibat vibrasi dari shear horizontal surface acoustic waves (SH-SAWs). Vibrasi ini diperoleh setelah mencatu sumber listrik ke devais SH-SAW melalui interdigital transducers (IDTs). Hasil eksperiment mengkonfirmasi bahwa perbandingan kondisi OFF dan ON akan menghasilkan efek blue-shift dan perubahan nilai Q-factor dari spektrum LSPR. Selanjutnya, hasil gambar morfologi dari SEM digunakan untuk menganalisis dan mensimulasi menggunakan komputasi finite-difference time-domain (FDTD). Model nya kemudian diekspansi menjadi struktur dimer-AuNP, dan array AuNPs dengan menggunakan gap sebagai parameter. Hasil simulasi juga mengkonfirmasi efek dari blue-shift dari spektrum LSPR.
Kontribusi kedua dari disertasi ini yaitu diusulkan pengembangan sensor multifungsi yang dapat mendeteksi permittivitas (εr), konduktivitas (s), dan refraktiv index (n) secara simultan. Sensor multifungsi yang diusulkan, dibangun dengan mengintegrasikan sensor SH-SAW dan sensor LSPR. Sensor SH-SAW dibangun dengan cara memfabrikasi IDTs pada substrat piezoelektrik 36XY-LiTaO3. Sementara itu, sensor LSPR dibangun dengan mendeposisi AuNPs pada permukaan propagasi dari SH-SAW. Menariknya, mendeposisi AuNP di permukaan propagasi SH-SAW tidak hanya menghasilkan sensor LSPR namun juga dapat meningkatkan sensitivitas sensor SH-SAW. Peningkatan sensitivitas ini terverifikasi menggunakan pengukuran domain frekuensi oleh a vector network analyzer (VNA) dan domain waktu dengan mengaplikasikan sinyal amplitude shift keying. Sementara itu, software CST digunakan untuk mensimulasikan plasmonic enhance near field-nya. Kemudian investigasi morphologi digunakan perangkat atomic force microscopy (AFM). Hybrid sensor yang diusulkan memiliki rentang deteksi εr = 25 – 85), s = 0.00528–0.02504 S/m, dan n = 45.5–201.9 nm/RIU. Efek cross-sectional dari sensor SH-SAW ke sensor LSPR dan sebaliknya juga diinvestigasi menggunakan sinyal sinusoidal OFF/ON dan cahaya OFF/ON. Hasil pengukuran menunjukkan bahwa sensor SH-SAW tidak terpengaruh oleh cahaya. Akan tetapi, sensor LSPR sedikit dipengaruhi oleh sensor SH-SAW karena efek vibrasi yang berakibat pada efek blue-shift. Namun pengaruh ini tidak signifikan terhadap kinerja sensor multifungsi. Secara umum, sensor yang diusulkan memiliki sensitivitas tinggi dengan karakteristik independen.
Kontribusi ketiga dari penelitian ini fokus kepada intergrasi microwave sensor (dan LSPR sensor. Microwave sensor dihasilkan dengan mempabrikasi elektroda/resonator yang berbentuk ring resonator pada substrat kaca dengan struktur yang multilayer. Sehingga, apabila sensor tersebut diberi beban cairan Ethanol (EtOH) dengan kadar berbeda maka akan menghasilkan pergeseran frekuensi resonansi dari microwave sensor. Sementara itu, sensor LSPR dihasilkan dengan mendeposisi AuNPs pada substrate kaca bagian tengah. Perubahan nilai refreactive index pada cairan sampel juga akan menghasilkan pergeseran puncak dari LSPR. Hal ini memperlihatkan sensor LSPR telah bekerja. Selain itu, untuk menganalisis struktur multilayer, pada penelitian ini juga dipergunakan metode conformal dan dibandingkan dengan hasil FDTD. Adapun hasil penelitian hibrid microwave sensor dan LPSR sensor dihasilkan pergeseran frekuensi sebesar 416 MHz dengan sensitivitas 5,2 MHz/ . Nilai sensitivitas berada pada rentang 5.36 MHz/Er – 14.37 MHz/Er. Nilai rentang normalisasi sensitivity berada pada rentang 0.312 – 1.246%. Hasil pengukuran dengan dan tanpa cahaya memperlihatkan hasil yang konstan, sehingga memperlihatkan independensi dari sensor. Sementara itu, hasil pengukuran sensor LSPR memperlihatkan terjadi pegeseran panjang gelombang sekitar 20 nm sampai 60 nm. Sementara itu nilai sensitivitas sensor refraktive index berada pada rentang 20.0 - 162.6 nm/RIU.
Akhirnya, berdasarkan hasil dan sebagai temuan utama, deposisi AuNPs pada bahan dielektrik seperti bahan 36XY-LiTaO3 atau bahan kaca dapat meningkatkan fungsionalitas perangkat diluar fungsi dasar umum yang diketahui. Secara khusus, fungsionalitas perangkat dapat ditambahkan dengan fenomena plasmonik atau fungsi sensor indeks bias.

A reconfigurable localized surface plasmon resonance (LSPR) spectrum and integration of high-sensitivity sensors with multiple sensing performance for the environmental detection are required to support Societies 5.0 and strengthen sustainable development goals programs. However, many LSPR applications lack configurability performance and sensors with low sensitivity that stand alone. In this dissertation, a reconfigurable LSPR and multifunctional sensors are proposed. The main study can be separated into three branches. The first is a deposition of gold nanoparticles (AuNPs) on 36XY-LiTaO3 piezoelectric substrate. It can generate a reconfigurable LSPR. Second, it can be applied for multifunctional sensor applications by combining the LSPR sensor and acoustic sensor. The third is to deposit AuNPs on a glass substrate with a multilayered microwave ring resonator to obtain multifunctional sensors between the LSPR sensor and microwave sensor (MS).
The first contribution of this dissertation is focused on the investigation of LSPR with reconfigurable capability. The LSPR was produced by deposition of AuNPs on the 36XY-LiTaO3 piezoelectric substrate. Then, the reconfigurable capability was obtained by the dynamic array AuNPs position. Moreover, the dynamic array AuNPs was induced by shear horizontal surface acoustic waves (SH-SAWs) vibration after applying an electric signal through interdigital transducers (IDTs), the ON-condition. The experimental results confirmed that compared to OFF-condition, the ON-condition generates a blueshift effect. In general, the peak position (lP) has shifted to a lower wavelength with a quality factor adjustment. The scanning electron microscope (SEM) images of the morphological structure of AuNPs are utilized to perform the finite-difference time-domain (FDTD) analysis. Then, the model was expanded to dimer AuNPs and arrays AuNPs with dynamic coupling gap and variation arrays structures. As a result, the FDTD simulation confirmed a blueshift effect spectrum characteristic.
The second contribution is proposing a multifunctional sensor for the detection of permittivity (εr), conductivity (s), and the refractive index (n) simultaneously. The multifunctional sensor was developed based on the SH-SAW sensor and LSPR sensor. Moreover, the IDTs were fabricated on the 36XY-LiTaO3 substrate to develop the SH-SAW sensor. Then, the AuNPs were deposited on the propagation surface of the SH-SAW sensor to obtain the LSPR sensor. Interestingly, the deposited AuNPs on SH-SAW were not only generating an LSPR sensor but also enhanced the SH-SAW sensor sensitivity. The sensitivity enhancement was verified by frequency-domain measurement using a vector network analyzer and time-domain measurements by utilizing amplitude shift keying signal. A CST software was used for plasmonic enhance near field simulation. Then, atomic force microscopy (AFM) imaging was utilized for morphology characterization. The proposed sensor has detection range of εr = 25 – 85), s = 0.00528–0.02504 S/m, and high sensitivity for n detection (45.5–201.9 nm/RIU). The cross-sectional effects between the SH-SAW sensor and LSPR sensor were also investigated using the sine signal OFF/ON and the light OFF/ON, respectively. The result shows that the SH-SAW sensor was not influenced by light. Moreover, the LSPR sensor was slightly influenced by the SH-SAW sensor due to the vibration effect, and it has a small blueshift effect. However, this effect is not significant to interference sensor performance. In general, the proposed multifunctional sensors have high sensitivity with independent characteristics.
The third contribution is focused on the integration of MS and LSPR sensor. The MS was fabricated on a glass. The electrodes have a structure ring resonator with a multilayered configuration. The changes of liquid under test lead to frequency shifting. Then, the LSPR sensor was developed on the low-layered glass by deposition array AuNPs on the glass substrate. Therefore, the liquid under test will have direct interaction with AuNPs. LSPR sensor was examined using wavelength shifting characteristic. A comparison between FDTD and the conformal analytical method is also presented. The simulation result shows that by comparing air and water sample, it has shifted frequency of 395 MHz with the sensitivity of 4.95 MHz/εr. Measurement result show that it has shifted frequency of 416 MHz with the sensitivity of 5.2 MHz/εr. It is shown that the proposed sensor has followed the simulation result. Finally, the proposed sensors are suitable for a chemical environment, with the possibility of integration with a wireless network.
Finally, based on the result and as the main finding, the deposition AuNPs on dielectric material such as 36XY-LiTaO3 substrate or glass substrate can improve the device's functionality beyond the known general basic function. In particular, the functionality of the device can add with plasmonic phenomena or a refractive index sensor function.
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Depok: Fakultas Teknik Universitas Indonesia, 2022
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UI - Disertasi Membership  Universitas Indonesia Library
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"This book provides a thorough overview of cutting-edge research on electronics applications relevant to industry, the environment, and society at large. It covers a broad spectrum of application domains, from automotive to space and from health to security, while devoting special attention to the use of embedded devices and sensors for imaging, communication and control. The book is based on the 2017 ApplePies Conference, held in Rome, Italy in September 2017, which brought together researchers and stakeholders to consider the most significant current trends in the field of applied electronics and to debate visions for the future. Areas addressed by the conference included information communication technology; biotechnology and biomedical imaging; space; secure, clean and efficient energy; the environment; and smart, green and integrated transport. As electronics technology continues to develop apace, constantly meeting previously unthinkable targets, further attention needs to be directed toward the electronics applications and the development of systems that facilitate human activities. This book, written by industrial and academic professionals, represents a valuable contribution in this endeavor."
Switzerland: Springer Cham, 2019
e20501801
eBooks  Universitas Indonesia Library
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"This volume contains the peer-reviewed proceedings of the International Conference on Modelling and Simulation (MS-17), held in Kolkata, India, 4th-5th November 2017, organized by the Association for the Advancement of Modelling and Simulation Techniques in Enterprises (AMSE, France) in association with the Institution of Engineering Technology (IET, UK), Kolkata Network.
The contributions contained here showcase some recent advances in modelling and simulation across various aspects of science and technology. This book brings together articles describing applications of modelling and simulation techniques in fields as diverse as physics, mathematics, electrical engineering, industrial electronics, control, automation, power systems, energy and robotics. It includes a special section on mechanical, fuzzy, optical and opto-electronic control of oscillations.
It provides a snapshot of the state of the art in modelling and simulation methods and their applications, and will be of interest to researchers and engineering professionals from industry, academia and research organizations."
Switzerland: Springer Cham, 2019
e20502901
eBooks  Universitas Indonesia Library
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"This book discusses key concepts, challenges and potential solutions in connection with established and emerging topics in advanced computing, renewable energy and network communications. Gathering edited papers presented at MARC 2018 on July 19, 2018, it will help researchers pursue and promote advanced research in the fields of electrical engineering, communication, computing and manufacturing."
Singapore: Springer Singapore, 2019
e20503052
eBooks  Universitas Indonesia Library
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