• Title/Summary/Keyword: smart interface

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CIM Interface Technique for a Collage Promotion in the Age of Smart - Focusing on Smart Web - (스마트시대의 대학 홍보를 위한 CIM 인터페이스 기법 - 스마트 웹 중심 -)

  • Jang, Seung-Young
    • The Journal of the Korea institute of electronic communication sciences
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    • v.7 no.3
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    • pp.597-606
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    • 2012
  • The description of this paper was made putting the emphasis on CIM Interface configuration with a college policy program as the center whether it is suitable or not for a college promotion. CIM Interface technique for a college promotion is an expression method by visual requirements. Alternatives to a college promotion turned up which are depending on Contents, Image, Marketing strategies by visual elements. The application of consumer contents to give users information did the role of a channel inducing the users to join. Besides, an information designing enabled the information structure to be a visual expression by being grafted on content consistency. First above all, the implementation policy of such systematical formation could be found through University Identity Program-IMC useful as a branding strategy of a college promotion. Like this, a methodology which is able to increase the efficiency of college promotion through a process and a connection was established.

Design and Implementation of an Around-View Monitoring system of Smart User Interface based on Windows O/S (Windows 운영체제 기반 어라운드 뷰 모니터링 시스템의 스마트 사용자 인터페이스 설계 및 구현)

  • Cheon, Seung-hwan;Jang, Si-woong
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2012.10a
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    • pp.427-430
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    • 2012
  • 최근 차량용 블랙박스, 자동 운전 시스템, 어라운드 뷰 시스템 등과 같은 운전자의 편의와 안전을 위한 장치 및 시스템들이 개발되고 있다. 현재 운전자를 위한 보조 시스템으로 구글(google)의 자동 운전 시스템(Auto Car Driving System)과 현대 모비스(hyundai mobis)의 AVM 시스템(Around View Monitoring System) 등의 다양한 차량용 편의장치 시스템들이 등장했다. 위와 같은 다양한 ECU들을 관리하기 위한 서버 및 저장 장치 역할을 할 수 있는 고사양의 Car PC의 장착이 필수적이다. 기존의 AVM 시스템은 차량 주변을 실시간으로 제공하기 위해 임베디드 또는 별도의 차량용 네트워크를 통해 임베디드 시스템 또는 SoC(System On Chip)형태의 하드웨어 기반으로 개발되고 있다. 하지만 고사양의 Car PC 기반에서는 별도의 비용없이 소프트웨어로 구현이 가능하다. 본 논문에서는 차량의 전 후 좌 우에 장착된 4대의 카메라로부터 입력된 차량 주변 상황을 한눈에 보여주는 AVM 시스템(Around-View Monitoring System)을 위한 카메라 보정 및 정합 처리 모듈 및 AVM 시스템을 Windows를 O/S로 하는 PC 내부에서 기존의 AVM 시스템을 이용하여 화면에 전 후 좌 우 버튼을 각각 만들어 버튼을 터치했을 때, 각 버튼에 해당되는 영상이 AVM 시스템과 함께 출력되도록 하거나 디스플레이에 Full 버전으로 출력되도록 S-UI(Smart User Interface)를 설계 및 구현한다. 제안하는 AVM 시스템과 기존의 AVM 시스템의 성능과 기능을 비교 분석함으로써 제안하는 영상 처리 모듈을 이용하여 추가 비용이 발생하지 않는 AVM 시스템의 구현 가능성을 검증한다.

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An Approach to implement Virtual 3D-Touch using 2D-Touch based Smart Device through User Force Input Behavior Pattern (2D-Touch 스마트 디바이스에서 사용자 행동 패턴 분석을 통한 가상 3D-Touch 구현을 위한 방법)

  • Nam, ChoonSung
    • Journal of Internet Computing and Services
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    • v.17 no.6
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    • pp.41-51
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    • 2016
  • The appearance of 3D-Touch interface provided the basis of a new interaction method between the users and the mob ile interface. However, only a few smartphones provide 3D-Touch features, and most of the 2D-Touch devices does not provide any means of applying the 3D-Touch interactions. This results in different user experiences between the two interaction methods. Thus, this research proposes the Virtual Force Touch method, which allows the users to utilize the 3D-Touch Interface on 2D-Touch based smart devices. This paper propose the suitable virtual force touch mechanism that is possible to realize users' inputs by calculating and analysis the force touch area of users' finger. This proposal is designed on customized smartphone device which has 2D-Touch sensors.

Design and Implementation of Home IoT Cultivation System with iOS Interface (iOS 인터페이스를 지원하는 가정용 IoT 재배 시스템 설계 및 구현)

  • Jeong, Seung Gyun;Kim, Gyu Dong;Kim, Byeong Chang
    • KIPS Transactions on Computer and Communication Systems
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    • v.12 no.2
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    • pp.61-68
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    • 2023
  • Demand for "pet plants" and "planteriers" is increasing due to the increase in COVID-19 and fine dust. In this paper, Smart pots for planterior should be small in size while providing the functions for cultivation without any problems. They should provide a user interface for long-range control for user's convenience. We implemented smart pots by incorporating IoT into pots. In response to the growing number of iPhone users, we developed an iOS app for user interface and UX/UI design. By communicating with the smartphone app and a home pot server over the Internet, users can check and control the state of the pot anytime, anywhere. The server and the pot module were separated to reduce the size of the pot itself. By locating a water bottle at the bottom of the pot, we expect that it is suitable for a "planterier" because it adopts a circulating structure in which drainage flows down to the water bottle as it is.

Implementation of an User Interface Developing Tool for 3D Simulator (3차원 시뮬레이터의 사용자 인터페이스 개발 도구 구현)

  • Yoon, Ga-Rim;Jeon, Jun-Young;Kim, Young-Bong
    • Journal of Korea Multimedia Society
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    • v.19 no.2
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    • pp.504-511
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    • 2016
  • 3D simulation programs or games on a smart phone and a personal computer have often employed 3D graphic processing techniques and 3D graphical views. However, the user interfaces in those 3D programs have sticked to take a typical 2D style user interface and thus the combination of a 2D user interface view and a 3D simulation view give us a mismatched sense. Since a 2D user interface has been based on the windows controls, it causes sometime DC conflicts between a simulation view and an interface view. Therefore, we will implement the UI developing tool which can be inserted into the pipeline structure for the development of a 3D simulation software and also follows the view-handler design pattern in Microsoft windows system. It will provide various graphical effects such as the deformation of UI depending on the view direction of simulation view and the sitting pose of user. This developing tool gives the natural user interface which heightens the sense of unity with a given 3D simulation view.

Mobile Terminal-Based User Interface for Intelligent Robots (휴대용 단말기 기반의 재능 로봇 사용자 인터페이스)

  • Kim Gi-Oh;Xuan Pham Dai;Park Ji-Hwan;Hong Soon-Hyuk;Jeon Jae-Wook
    • The KIPS Transactions:PartB
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    • v.13B no.2 s.105
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    • pp.179-186
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    • 2006
  • A user interface that connects a user to intelligent robots needs to be designed for executing them efficiently. In this paper, it is analyzed how to organize a mobile terminal based user interface according to the function and level of autonomy of intelligent robots and the user interface of PDA (Personal Digital Assistant) and smart phone is developed for controlling intelligent robots remotely. In the image-based user interface, a user can see the motion of a robot directly and control the robot. In the map-based interface, the quantity of transmission information is reduced and therefore a user can control the robot with a small delay of transmission time.

Interface Modeling for Digital Device Control According to Disability Type in Web

  • Park, Joo Hyun;Lee, Jongwoo;Lim, Soon-Bum
    • Journal of Multimedia Information System
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    • v.7 no.4
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    • pp.249-256
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    • 2020
  • Learning methods using various assistive and smart devices have been developed to enable independent learning of the disabled. Pointer control is the most important consideration for the disabled when controlling a device and the contents of an existing graphical user interface (GUI) environment; however, difficulties can be encountered when using a pointer, depending on the disability type; Although there are individual differences depending on the blind, low vision, and upper limb disability, problems arise in the accuracy of object selection and execution in common. A multimodal interface pilot solution is presented that enables people with various disability types to control web interactions more easily. First, we classify web interaction types using digital devices and derive essential web interactions among them. Second, to solve problems that occur when performing web interactions considering the disability type, the necessary technology according to the characteristics of each disability type is presented. Finally, a pilot solution for the multimodal interface for each disability type is proposed. We identified three disability types and developed solutions for each type. We developed a remote-control operation voice interface for blind people and a voice output interface applying the selective focusing technique for low-vision people. Finally, we developed a gaze-tracking and voice-command interface for GUI operations for people with upper-limb disability.

Iot Based Vision and Remote Control a Compact Mobile Robot System (IoT 기반의 비전 및 원격제어 소형 이동 로봇 시스템)

  • Jeon, Yun Chae;Choi, Hyeri;Yoon, Ki-Cheol;Kim, Gwang Gi
    • Journal of Korea Multimedia Society
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    • v.24 no.2
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    • pp.267-273
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    • 2021
  • Recently, the small-size mobile robots with remote-control are rapidly growth which market of mobile is increased in the world. Especially, the smart-phones are widely used for interface device in the small size of a mobile robot. The research goal is control system design which is applied to miniaturization of a mobile robot using smart-phone and it can be confirmed performance for designed system. Meanwhile, the fabrication of mini-mobile robot can also be remote-control operation through the WIFI performance of a smart-phone. The smart-phone is used to remote-control for robot operation which control data transmit to robot via the WIFI network. To drive the robot, we can observe by the smart-phone screen and it can easily adjust the robot drive condition and direction by smart-phone button. Consequentially, there was no malfunction and images were printed out well. However, in drive, because of blind spot, robot was bumped into obstacle. Therefore, the additional test is necessary to sensor for blind spot which sensor can be equipment to mobile robot. In addition, the experiment with robot object recognition is needed.

Design of 32 bits tow Power Smart Card IC (32 비트 저전력 스마트카드 IC 설계)

  • 김승철;김원종;조한진;정교일
    • Proceedings of the IEEK Conference
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    • 2002.06b
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    • pp.349-352
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    • 2002
  • In this Paper, we introduced 32 bit SOC implementation for multi-application Smart Card and described the methodology for reducing power consumption. It consists of ARMTTDMI micro-processor, 192 KBytes EEPROM, 16 KB SRAM, crypto processors and card reader interface based on AMBA bus system. We used Synopsys Power Compiler to estimate and optimize power consumption. Experimental results show that we can reduce Power consumption up to 62 % without increasing the chip area.

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