Ik-Jun Yoon
Sungkyunkwan University · Computer Science
About the Lab
Professor Ik-Jun Yoon's research lab focuses on sustainable wastewater treatment technologies and advanced networking architectures. The lab investigates ozone-based sludge pretreatment to enhance biodegradability and achieve significant sludge reduction, while also exploring the integration of ozone-converted sludge as a carbon source for nutrient removal. In parallel, the lab conducts pioneering research on differentiated services (DiffServ) in computer networks, emphasizing traffic engineering, fairness in flow management, and throughput guarantees through innovative marking and control strategies. The lab’s work bridges environmental engineering and computer networking, addressing critical challenges in both resource sustainability and next-generation internet architectures.
Research Overview
Research Output Trend
Figures are computed from collected data and may differ slightly.
Selected Papers
15The effects of ozone pretreatment on the biodegradability of municipal wastewater sludge were determined. Three types of experiments were conducted: anaerobic digestion, aerobic biodegradation, and denitrification using ozone-treated sludge as a carbon source. For 5 days, ozonated sludge at 0.1 gO3/g-SS showed about 2-3 times greater biodegradation compared to the raw sludge in both aerobic and anaerobic conditions. In anaerobic experiments, biodegradation increased with ozone dosage up to 0.2 g
The differentiated services architecture has been proposed for providing different levels of services and has received wide attention. A packet in a diff-serv domain is classified into a class of service according to its contract profile and treated differently by its class. While many studies have addressed issues on the diff-serv architecture (e.g., dropper, marker, classifier and shaper), there have been few attempts to analytically understand a flow's behavior in a diff-serv network. We prop
This paper discusses techniques for achieving desired throughput guarantees in the Internet that supports a differentiated services framework. The diff-serv framework proposes the use of different drop precedences to achieve service guarantees over the Internet. However, it has been observed that the drop precedences by themselves cannot achieve the desired target rates because of the strong interaction of the transport protocol with packet drops in the network. This paper proposes and evaluates
The feasibility of ozone treatment of municipal sludge for sludge reduction and carbon source production has been investigated. Significant accumulation of solubilized organics and unsettlable micro-solids (UMS) was observed at relatively low ozone dosages while mineralization became dominant at higher dosages. Batch denitrification experiments showed that the solubilized organics and the UMS could be utilized as carbon sources for nitrogen removal. In terms of overall sludge reduction, 54% redu
Summary Content‐centric networking (CCN) has been recently proposed as an alternative to traditional IP‐based networking. In CCN, content is accessed by content name instead of a host identifier (locational identifier). This new type of access methodology rapidly and efficiently disseminates content in combination with the in‐network caching mechanism. For practical use of CCN, many network properties studied in IP‐based networking are being revisited, and new types of CCN architecture component
The differentiated services (DiffServ) framework is receiving wide attention as an architecture for implementing service guarantees in the Internet. This paper looks at the impact of marking strategies employed by aggregated sources (customers) on the provided service in a DiffServ network. The paper proposes two new marking algorithms that improve the fairness among the individual flows within an aggregation.
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SUMMARY In this paper, we propose a novel technique to deal with sudden bandwidth changes in transmission control protocol (TCP). In the current Internet, sudden bandwidth changes may occur because of vertical handovers between heterogeneous access networks, routing path changes, cognitive ratio, and multi‐rate wireless local area network. The current implementation of TCP is designed and optimized for stable networks and does not adapt well upon sudden bandwidth changes. Consequently, it might
Research Areas
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