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김태현(Taehyoun Kim),김광영(Kwangyoung Kim),김형수(Hyungsoo Kim),성민영(Minyoung Sung),장래혁(Naehyuck Chang),신현식(Heonshik Shin) 한국정보과학회 2001 정보과학회 컴퓨팅의 실제 논문지 Vol.7 No.3
자바는 플랫폼 독립성, 높은 보안성, 멀티쓰레드 지원 등의 다양한 장점을 가지고 있어서 내장형 시스템을 위한 실행 환경으로 기대를 모으고 있다. 널리 쓰이고 있는 자바 수행 환경 중 하나인 Sun 사의 퍼스널자바 (PersonalJava™)는 다양한 GUI를 쉽게 생성할 수 있도록 Truffle이라는 AWT 구조를 제공하고 있어서 셋톱박스나 PDA 등의 다양한 내장형 시스템에 활발히 이식되고 있다. 기본적으로 Truffle은 기존의 마이크로소프트 Win32 API나 X 윈도우 API를 기반으로 하고 있다. 그러나, 이러한 윈도우 관리기들은 많은 양의 디스크나 메모리 공간을 요구하므로 시스템 자원이 한정된 내장형 시스템에는 적합하지 않다. 본 연구에서는 내장형 시스템의 요구조건을 만족시킬 수 있도록 내장형 리눅스 상에서 경량 윈도우 관리기인 마이크로윈도우즈(Microwindows)를 플랫폼 그래픽 시스템으로 채택하고 퍼스널자바 AWT API를 구현하였다. 마이크로윈도우즈(Microwindows)는 경량이면서도 기존의 윈도우 관리기들과 유사한 기능을 제공하며, 별도의 그래픽 시스템 지원을 필요로 하지 않아서 다양한 플랫폼 상에 쉽게 이식될 수 있다. 또한, 소스 코드가 공개되어 있어서 응용에 따라 수정 및 확장이 용이하다. 본 연구에서는 내장형 리눅스 상에서 동작하는 마이크로윈도우즈를 이용하여 퍼스널자바 AWT를 구현하였으며 다양한 응용프로그램을 이용하여 그 효용성을 입증하였다. Java is a promising runtime environment for embedded systems because it has many advantages such as platform independence, high security and support for multi-threading. One of the most famous Java run-time environments, Sun's PersonalJavaTM is based on Truffle architecture, which enables programmers to design various GUIs easily. For this reason, it has been ported to various embedded systems such as set-top boxes and personal digital assistants(PDA's). Basically, Truffle uses heavy-weight window managers such as Microsoft Win32 API and X-Window. However, those window managers are not adequate for embedded systems because they require a large amount of memory and disk space. To come up with the requirements of embedded systems, we adopt Microwindows as the platform graphic system for PersonalJava AWT onto Embedded Linux. Although Microwindows is a light-weight window manager, it provides as powerful API as traditional window managers. Because Microwindows does not require any support from other graphics systems, it can be easily ported to various platforms. In addition, it is an open source code software. Therefore, we can easily modify and extend it as needed. In this paper, we implement PersonalJava AWT using Microwindows on embedded Linux and prove the efficiency of our approach.
Mobility and QoS Support in 4G Wireless Networks
Kim Taehyoun,Lee Jaiyong The Korea Institute of Information and Commucation 2005 Journal of communications and networks Vol.7 No.2
Fourth-generation (4G) wireless networks will be the IP-based cellular networks integrating Internet with the existing cellular networks. Two important issues should be concerned in the IP-based cellular networks, IP mobility, and quality-of-service (QoS) guarantees. In this paper, we proposed two mechanisms to solve the problems with IP mobility and RSVP-based QoS provisioning. First, virtual-IP (VIP) allocation scheme in areas with a large rate of handoff can minimize the wireless signaling overhead due to IP mobility. The access routers (ARs) create dynamically the VIP zone by using the measured handoff rate derived from the history of the handoff into neighboring ARs. We show that VIP allocation scheme reduces the binding update messages in the wireless link than hierarchical mobile IPv6. Second, the new advance resource reservation protocol called proportional aggregate RSVP (PA-RSVP) can minimize waste of bandwidth and soft state refresh overhead due to IP mobility. It allocates the bandwidth in advance between the mobility anchor point and neighboring ARs using proportional aggregate reservation. We also show that PA-RSVP provides an improved performance over existing protocols.
Analysis of Optimal Jitter Buffer Size for VoIP QoS under WiMAX Power-Saving Mode
KIM, Hyungsuk,KIM, Taehyoun The Institute of Electronics, Information and Comm 2010 IEICE TRANSACTIONS ON COMMUNICATIONS - Vol.93 No.6
<P>VoIP service is expected as one of the key applications of Mobile WiMAX, but the speech quality of VoIP service often suffers deterioration due to the fluctuating transmission delay called <I>jitter</I>. This is commonly ameliorated by a de-jitter buffer, and we aim to find the optimal size of de-jitter buffer to achieve speech quality comparable to PSTN. We developed a new model of the packet drops at the de-jitter buffer and the end-to-end packet delay which takes account of the additional delay introduced by the WiMAX power-saving mode. Using our model, we analyzed the optimal size of the de-jitter buffer for various network parameters, and showed that the results obtained by analysis accord with simulation results.</P>