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Ditemukan 43 dokumen yang sesuai dengan query
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Eko Yuli Harmanto
Depok: Fakultas Teknik Universitas Indonesia, 1994
S38594
UI - Skripsi Membership  Universitas Indonesia Library
cover
Stojkovic, Zlatan
Abstrak :
This textbooks demonstrates the application of software tools in solving a series of problems from the field of designing power system structures and systems. It contains four chapters : The first chapter leads the reader through all the phases necessary in the procedures of computer aided modeling and simulation. It guides through the complex problems presenting on the basis of eleven original examples. The second chapter presents application of software tools in power system calculations of power systems equipment design. Several design example calculations are carried out using engineering standards like MATLAB, EMTP/ATP, Excel & Access, AutoCAD and Simulink. The third chapters focuses on the graphical documentation using a collection of software tools (AutoCAD, EPLAN, SIMARIS SIVACON, SIMARIS DESIGN) which enable the complete automation of the development of graphical documentation of a power systems. In the fourth chapter, the application of software tools in the project management in power systems is discussed. Here, the emphasis is put on the standard software MS Excel and MS Project.
Berlin: Springer, 2012
e20398145
eBooks  Universitas Indonesia Library
cover
Armstrong, G.A.
Abstrak :
Technology Computer Aided Design for Si, SiGe and GaAs Integrated Circuits is the first book that deals with a broad spectrum of process and device design, and modelling issues related to various semiconductor devices. This monograph attempts to bridge the gap between device modelling and process design using TCAD. Many simulation examples for different types of Si-, SiGe-, GaAs- and InP-based heterostructure MOS and bipolar transistors are given and compared with experimental data from state-of-the-art devices. Bringing various aspects of silicon heterostructures into one resource, this book also presents a comprehensive perspective of the emerging field and covers topics ranging from materials to fabrication, devices, modelling and applications. The monograph is aimed at research and development engineers and scientists who are actively involved in microelectronics technology and device design via Technology CAD. It will also serve as a reference for postgraduate and research students in the field of electrical engineering and solid-state physics and for TCAD engineers and developers.
London: Institution of Engineering and Technology, 2007
e20451648
eBooks  Universitas Indonesia Library
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Rachmad Mochammad Suryantoro
Abstrak :
Pada proses pengembangan produk, produsen menerapkan berbagai cara agar produk yang dihasilkannya bisa menjawab kebutuhan pasar, dengan pergeseran tren konsumen yang menginginkan produk yang lebih spesifik, para engineer mulai mengembangkan metode terbaru untuk memproduksi suatu benda yang efisien, baik secara biaya maupun waktu, Virtual Manufacturing mampu mengakomodasi hal tersebut dengan baik, produsen dapat meminimalkan atau menghilangkan sama sekali fase pembuatan prototype secara fisik, yang berdampak pada efisiensi biaya maupun waktu, saat ini proses Virtual Manufacturing lebih banyak menggunakan Virtual Reality, dan hal ini berdampak pada proses yang lebih artificial, penelitian ini ditujukan untuk menggabungkan metode Virtual Manufacturing dengan menggunakan kamera dan sensor berbasis Electromyogram untuk mengukur tingkat kontraksi tangan ketika melakukan proses Virtual Manufacturing. Sehingga fokus pada skripsi ini adalah bagaimana cara mengetahui karakter kontraksi otot biceps brachii pada beberapa kondisi, yang kedepannya akan dimanfaatkan dalam proses Virtual Manufacturing.
In term of product development, many manufacturer seeking for the best solution to ensure their product is what the customers really looking for. Manufacturer have to be able to know the trend, and accomodate the spesific needs of the customer, but after that they also have to minimize the cost and time to make a product. Virtual Manufacturing is one of the method that can achieve that requirement, because it rsquo s really efficient, and many big manufacturer in the world have implemented this method. Basicly, Virtual Manufacturing tend to use Virtual Reality to showing the object. But in this thesis, author mainly use camera for projecting the virtual image and electromyogram sensor to calculate muscle contraction during Virtual Manufacturing process. Author made some parameter from different people to getting know the characteristics from Biceps Brachii Muscle. In the future researcher really hope that Electromyogram based Virtual Manufacturing can be able used by Manufacturer.
Depok: Fakultas Teknik Universitas Indonesia, 2018
S-Pdf
UI - Skripsi Membership  Universitas Indonesia Library
cover
Muhammad Fathin Juzar
Abstrak :
Dalam proses pengembangan produk, terdapat langkah awal dimana konsep desain memerlukan berbagai simulasi dan alat permodelan matematika dengan bantuan perangkat lunak komputer computer-aided . Langkah tersebut disebut dengan Virtual Manufacturing. Singkatnya, Virtual Manufacturing digunakan untuk memanufaktur dan memvalidasi desain secara virtual sebelum membuat produk fisiknya secara nyata. Dari segi perkembangan perangkat lunaknya, Virtual Manufacturing terus dikembangkan dan diperbaharui mengikuti perkembangan teknologi dunia manufaktur. Melihat dari sisi lain, dari sisi input penggunanya, Virtual Manufacturing dapat dikembangkan agar pengguna bisa berinteraksi dengan benda virtual dalam komputer. Untuk mengembangkan sisi input dari Virtual Manufacturing, maka digunakan alat pengukur besaran kontraksi otot pengguna yang kemudian dapat dirubah menjadi masukan input untuk berinteraksi dengan objek secara virtual dalam program Computer-Aided Design CAD . Penelitian ini membahas cara mengkalibrasi dan memfilter sinyal keluaran Sensor kontraksi otot tersebut agar besaran kontraksi pengguna dapat diterjemahkan menjadi besaran gaya yang dapat disimulasikan di program Computer-Aided Design CAD . Hal ini memungkinkan pengguna berinteraksi dengan objek secara virtual dengan besaran gaya yang mendekati keadaan nyata.
In the product development process, there is an initial step where the concept of design requires various simulations and mathematical modeling tools with the help of computer software computer aided . This step is called Virtual Manufacturing. To summarize, Virtual Manufacturing is used to manufacture and validate the design virtually before the physical product is manufactured. In terms of its software development, Virtual Manufacturing continues to be developed and updated following the manufacturing technology development. On the other hand, in terms of user input, Virtual Manufacturing can be developed so that users can interact with virtual objects in the computer. To develop the input side of Virtual Manufacturing, a muscle contraction measurement device is used to convert the contraction value into software inputs. This input allows the user to interact with objects virtually in Computer Aided Design CAD programs. This paper discusses how to calibrate and filter the muscle contraction measurement output signals so that the amount of user muscle contraction can be translated into a simulated force in the Computer Aided Design CAD program. This allows the user to interact with objects virtually with a force that matches a real life condition as close as possible.
Depok: Fakultas Teknik Universitas Indonesia, 2018
S-Pdf
UI - Skripsi Membership  Universitas Indonesia Library
cover
Novitski, B. J.
Gloucester: Rockport Publishers, 1998
720.285 NOV r
Buku Teks  Universitas Indonesia Library
cover
Abstrak :
Heterogeneous embedded systems, signal representations and different abstraction levels, architectures and components based on hardware and software, in all the main phases of design (modeling, validation with multiple models of computation, synthesis and optimization). It concentrates on the specific issues at the interfaces, and is divided into two main parts. The first part examines mainly theoretical issues and focuses on the modeling, validation and design techniques themselves. The second part illustrates the use of these methods in various design contexts at the forefront of new technology and architectural developments.
Dordrecht, Netherlands: [Springer, Springer], 2012
e20398193
eBooks  Universitas Indonesia Library
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Chauhan, N.C.
Abstrak :
This book deals with the development and use of soft computing methods for tackling challenging design problems in the microwave/millimeter wave domain. The aim in the development of these methods is to obtain the design in small time frame while improving the accuracy of the design for a wide range of applications. To achieve this goal, a few diverse design problems of microwave field, representing varied challenges in the design, such as different microstrip antennas, microwave filters, a microstrip-via and also some critical high power components such as nonlinear tapers and RF-windows are considered as case-study design problems. Different design methodologies are developed for these applications.
Berlin: [, Springer], 2012
e20398827
eBooks  Universitas Indonesia Library
cover
Abstrak :
This book constitutes the refereed proceedings of the 9th International Conference on Cooperative Design, Visualization, and Engineering, CDVE 2012, held in Osaka, Japan, in September 2012. The 36 revised full papers presented were carefully reviewed and selected from numerous submissions. The papers cover the topics of cooperative engineering, basic theories, methods and technologies that support CDVE, cooperative design, visualization and applications.
Berlin: Springer-Verlag, 2012
e20410045
eBooks  Universitas Indonesia Library
cover
Dietrich, Manfred, editor
Abstrak :
This book presents the technological, physical, and mathematical fundamentals for a design paradigm shift, from a deterministic process to a probability-orientated design process for microelectronic circuits. Readers will learn to evaluate the different sources of variations in the design flow in order to establish different design variants, while applying appropriate methods and tools to evaluate and optimize their design.
New York: [, Springer], 2012
e20410860
eBooks  Universitas Indonesia Library
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