USER INTERFACE AND IMAGE ACQUISITION SUBSYSTEM DESIGN FOR FOCUS STACKING IN MACRO PHOTOGRAPHY

Macro Photography is a subject of photography in which the size of subject in photos is the same or greater than the size of subject in real life. One of the concerns in macro photography is shallow depth of field when taking extreme close-up image. The solution is to take a number of photographs wi...

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Main Author: SUSANTO (NIM : 13213053), BAMBANG
Format: Final Project
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/26024
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:26024
spelling id-itb.:260242018-03-05T13:47:12ZUSER INTERFACE AND IMAGE ACQUISITION SUBSYSTEM DESIGN FOR FOCUS STACKING IN MACRO PHOTOGRAPHY SUSANTO (NIM : 13213053), BAMBANG Indonesia Final Project INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/26024 Macro Photography is a subject of photography in which the size of subject in photos is the same or greater than the size of subject in real life. One of the concerns in macro photography is shallow depth of field when taking extreme close-up image. The solution is to take a number of photographs with different focus field, then stack those images (focus stacking) into one image with large depth of field. <br /> <br /> When done manually, image acquisition with different focus fields introduces a new problem. Taking images with the same frame can prove to be very difficult because of the movement the photographer causes when changing camera’s focus field. To tackle that dilemma, a graphical user interface (GUI) system for changing camera’s settings remotely; and an image acquisition system for taking pictures automatically, will be built. <br /> <br /> In this paper, we will discuss the implementation of the graphical user interface subsystem and the implementation of image acquisition subsystem using microcontroller Arduino. Graphical user interface system is developed using Nikon software development kit (SDK) which can be accessed through digiCamControl application program interface (API). Image acquisition protocol will also be developed using Nikon SDK with the help of media transfer protocol (MTP). Result of the implementation is a windows application as GUI and communication system to to connect GUI and Arduino. <br /> <br /> Both of these subsystems will help photographer in producing an array of images with the same frame but different focus fields. The output of these systems will be used as inputs to image fusion (focus stacking) subsystem. text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
description Macro Photography is a subject of photography in which the size of subject in photos is the same or greater than the size of subject in real life. One of the concerns in macro photography is shallow depth of field when taking extreme close-up image. The solution is to take a number of photographs with different focus field, then stack those images (focus stacking) into one image with large depth of field. <br /> <br /> When done manually, image acquisition with different focus fields introduces a new problem. Taking images with the same frame can prove to be very difficult because of the movement the photographer causes when changing camera’s focus field. To tackle that dilemma, a graphical user interface (GUI) system for changing camera’s settings remotely; and an image acquisition system for taking pictures automatically, will be built. <br /> <br /> In this paper, we will discuss the implementation of the graphical user interface subsystem and the implementation of image acquisition subsystem using microcontroller Arduino. Graphical user interface system is developed using Nikon software development kit (SDK) which can be accessed through digiCamControl application program interface (API). Image acquisition protocol will also be developed using Nikon SDK with the help of media transfer protocol (MTP). Result of the implementation is a windows application as GUI and communication system to to connect GUI and Arduino. <br /> <br /> Both of these subsystems will help photographer in producing an array of images with the same frame but different focus fields. The output of these systems will be used as inputs to image fusion (focus stacking) subsystem.
format Final Project
author SUSANTO (NIM : 13213053), BAMBANG
spellingShingle SUSANTO (NIM : 13213053), BAMBANG
USER INTERFACE AND IMAGE ACQUISITION SUBSYSTEM DESIGN FOR FOCUS STACKING IN MACRO PHOTOGRAPHY
author_facet SUSANTO (NIM : 13213053), BAMBANG
author_sort SUSANTO (NIM : 13213053), BAMBANG
title USER INTERFACE AND IMAGE ACQUISITION SUBSYSTEM DESIGN FOR FOCUS STACKING IN MACRO PHOTOGRAPHY
title_short USER INTERFACE AND IMAGE ACQUISITION SUBSYSTEM DESIGN FOR FOCUS STACKING IN MACRO PHOTOGRAPHY
title_full USER INTERFACE AND IMAGE ACQUISITION SUBSYSTEM DESIGN FOR FOCUS STACKING IN MACRO PHOTOGRAPHY
title_fullStr USER INTERFACE AND IMAGE ACQUISITION SUBSYSTEM DESIGN FOR FOCUS STACKING IN MACRO PHOTOGRAPHY
title_full_unstemmed USER INTERFACE AND IMAGE ACQUISITION SUBSYSTEM DESIGN FOR FOCUS STACKING IN MACRO PHOTOGRAPHY
title_sort user interface and image acquisition subsystem design for focus stacking in macro photography
url https://digilib.itb.ac.id/gdl/view/26024
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