Kyung-Ah Chang

dblp:24/3765 · DBLP profile ↗
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8ranked-venue papers
2as first author
0since 2021 · last 2018
—ORCID · none

Domains — the database's venue-derived domains; a paper can count in several

Systems, architecture and hardware · 3Computer networks · 1 · 1 first-authorSecurity and privacy · 1 · 1 first-authorSoftware engineering, systems software and programming languages · 1 · 1 first-authorGraphics, computer vision, multimedia, augmented reality and games · 1

Expertise — from the expertise taxonomy: the topics of the expert's papers under the CCF categories. A weight counts papers with recency: 1 for a paper about the topic, 0.3 when the topic is its context, halved every five years.

Computer architecture, parallel and distributed computing, and storage systems
2 papers
Distributed systems · 38% Embedded and real-time systems · 37% Cloud and datacenter computing · 25%
Software engineering, system software, and programming languages
1 paper
Compilers and program optimization · 100%

Topics — the 5 heaviest of 5, each with the papers that count most for it

TopicWeightPapersLastEvidence papers
Distributed systems
resource sharing
0.312018
DynaMix: Dynamic Mobile Device Integration for Efficient Cross-device Resource Sharing · USENIX ATC 2018
Cloud and datacenter computing
computation offloading
0.212015
Architecture-aware automatic computation offload for native applications · MICRO 2015
Embedded and real-time systems
mobile computing
0.212015
Architecture-aware automatic computation offload for native applications · MICRO 2015
Embedded and real-time systems
mobile devices
0.112018
DynaMix: Dynamic Mobile Device Integration for Efficient Cross-device Resource Sharing · USENIX ATC 2018
Compilers and program optimization
compiler analysis
0.112015
Architecture-aware automatic computation offload for native applications · MICRO 2015

Methods — techniques the papers use, named apart from their topics

unified virtual address space · 0.4memory unification · 0.4communication optimization · 0.4
YearPublicationVenuePosition
2018 DynaMix: Dynamic Mobile Device Integration for Efficient Cross-device Resource Sharing
Dongju Chae, Joonsung Kim 0001, Gwangmu Lee, Hanjun Kim 0001, Kyung-Ah Chang, Hyogun Lee, Jangwoo Kim
USENIX ATC5
2017 Mobile Cloud-Based Interactive 3D Rendering and Streaming System Over Heterogeneous Wireless Networks
abstract
This paper presents an effective mobile cloud-based interactive 3D rendering and streaming system with data-service cost constraints over heterogeneous wireless networks. The proposed system contains software-defined networking (SDN)-enabled adaptive cloud resource management module and context-aware 3D rendering and streaming module to enhance the quality-of-service of interactive 3D rendering and streaming services. The first module is designed to efficiently control the limited cloud resources, such as server computing power and available backbone link bandwidth, and the second module is implemented to pursue an effective tradeoff between 3D rendering quality and compressed image quality. The system is implemented using Mininet network emulator with an OpenDay-light SDN controller, and VirtualGL with an online open-source 3D game, PlaneShift. Finally, the system is examined at a mobile device connected to real long-term evolution and WiFi networks.
Donghyeok Ho, Hyungnam Kim, Wan Kim, Youngho Park 0005, Kyung-Ah Chang, Hyogun Lee, Hwangjun Song
IEEE Trans. Circuits Syst. Video Technol.5
2016 CloudSwap: A Cloud-Assisted Swap Mechanism for Mobile Devices
abstract
Application caching is a key feature to enable fast application switches for mobile devices by caching the entire memory pages of applications in the device's physical memory. However, application caching requires a prohibitive amount of memory unless a swap feature is employed to maintain only the working sets of the applications in memory. Unfortunately, mobile devices often disable the invaluable swap feature as it can severely decrease the flash-based local storage device's already marginal lifespan due to the increased writes to the device. As a result, modern mobile devices suffering from the insufficient memory space end up killing memory-hungry applications and keeping only a few applications in the memory. In this paper, we propose CloudSwap, a fast and robust swap mechanism for mobile devices to enable the memory-oblivious application caching. The key idea of CloudSwap is to use the fast local storage as a cache of read-intensive swap pages, while storing prefetch-enabled, write-intensive swap pages in a cloud storage. To preserve the lifespan of the local storage, CloudSwap minimizes the number of writes to the local storage by storing the modified portions of the locally swapped pages in a cloud. To reduce the remote swap-in latency, CloudSwap exploits two cloud-assisted prefetch schemes, the app-aware read-ahead scheme and the access pattern-aware prefetch scheme. Our evaluation shows that the performance of CloudSwap is comparable to a fast, but lifespan-critical local swap system, with only 18% lifespan reduction, compared to the local swap system's 85% lifespan reduction.
Dongju Chae, Joonsung Kim 0001, Youngsok Kim, Jangwoo Kim, Kyung-Ah Chang, Sang-Bum Suh, Hyogun Lee
CCGrid5
2015 Architecture-aware automatic computation offload for native applications
abstract
Although mobile devices have been evolved enough to support complex mobile programs, performance of the mobile devices is lagging behind performance of servers. To bridge the performance gap, computation offloading allows a mobile device to remotely execute heavy tasks at servers. However, due to architectural differences between mobile devices and servers, most existing computation offloading systems rely on virtual machines, so they cannot offload native applications. Some offloading systems can offload native mobile applications, but their applicability is limited to well-analyzable simple applications. This work presents automatic cross-architecture computation offloading for general-purpose native applications with a prototype framework that is called Native Offloader. At compile-time, Native Offloader automatically finds heavy tasks without any annotation, and generates offloading-enabled native binaries with memory unification for a mobile device and a server. At run-time, Native Offloader efficiently supports seamless migration between the mobile device and the server with a unified virtual address space and communication optimization. Native Offloader automatically offloads 17 native C applications from SPEC CPU2000 and CPU2006 benchmark suites without a virtual machine, and achieves a geomean program speedup of 6.42× and battery saving of 82.0%.
Gwangmu Lee, Hyunjoon Park, Seonyeong Heo, Kyung-Ah Chang, Hyogun Lee, Hanjun Kim 0001
MICRO4
2015 Raptor codes-based energy-efficient multipath multimedia transport protocol over HetNets
abstract
In this work, we propose a Raptor codes-based energy-efficient multipath multimedia transport protocol over heterogeneous wireless networks (HetNets) in order to provide seamless high-quality video streaming service in an energy efficient way. In the proposed protocol, systematic Raptor codes are employed to mitigate the video quality degradation. For energy saving, the proposed protocol not only shapes a video stream into bursts, but also determines the Raptor encoding parameters including code rate, symbol size, and the number of source symbols for energy saving. The proposed protocol is fully implemented on an Android-based smartphone, and examined over real HetNets.
Oh Chan Kwon, Yunmin Go, Kyung-Ah Chang, Sang-Bum Suh, Hyogun Lee, Hwangjun Song
PIMRC3
2008 Software Mobility for Personalized Computing Environments on Removable Storages
abstract
Today, people usually find it difficult to work seamlessly on PCs in different places. It is mainly because the PCs have different computing environments in terms of versions of applications and desktop settings like fonts or languages. The Software Mobility technology enables people to use their own personalized computing environment on any PC ensuring seamless work We designed our Software Mobility solution with an visualization layer. Because this layer decouples applications from the operating system, applications can be moved and run on any PC without disruption. We will demonstrate our Software Mobility implementation that shows people can use Windows XP applications and user preference desktop settings on any PC without any installation or configuration.
Sang-Bum Suh, Sungkwan Heo, Kyung-Ah Chang, Minsung Jang, Byung Woan Kim, Seong-Yeol Park, Jae-Ra Lee, IlPyung Park, Hosoo Lee
CCNC3
2001 Ticket-Based Secure Delegation Service Supporting Multiple Domain Models
abstract
We propose a ticket-based delegation service for multiple domain models. This scheme presents an extension to the Kerberos (J.T. Kohl et al., 1991) framework using public key cryptosystem (T. ElGamal, 1985). This proposed model, based on CORBAsec (A. Alireza et al., 2000; B. Blakey, 2000), supports the protection of the high-level resources and the preservation of the security policies of the underlying resources that form the foundation of various domains, between the Kerberized domains and the nonKerberized domains. Also we achieved the flexibility of key management and reliable session key generation between the client and the provider using the public key cryptosystem based ticket.
Kyung-Ah Chang, Tae-Seung Lee, Bang-Hung Chun, Tai-Yun Kim
PRDC1
1999 Integrated secure-negotiation service for subjects of electronic commerce
abstract
Electronic commerce shall provide its subjects with a credential-based security service in the open distributed computing environment. In this paper, based on CORBA security service specification which the OMG defined, we propose an integrated secure-negotiation service for subjects of electronic commerce, providing mutual authentication and label-based authorization. This proposed structure, by Kerberos for authentication and authenticated key exchange, assures not only the identification of a partner but also the confidence of origin of the business item for negotiations between subjects of electronic commerce. Since our deployed Kerberos is extended to the mutual authentication service based on the CORBA platform, it is efficient for security administration to manage information such as a key management in an open distributed computing environment.
Kyung-Ah Chang, Hang-Jae You, Byung-Rae Lee, Tai-Yun Kim
WCNC1