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An Agent-based Network Management System Using Active Information Resources
Kinoshita, Tetsuo,Kitagata, Gen,Takahashi, Hideyuki,Sasai, Kazuto,Kalegele, Khamisi The Institute of Internet 2013 Journal of Advanced Smart Convergence Vol.2 No.2
An expert network administrator is not always stationed as disasters happen. In that case, it is desirable that a novice administrator is capable of taking part in network recovery operations as well. In this paper, an agent-based network management system in emergency situations is presented. We use the Active Information Resource based Network Management System (AIR-NMS) to relieve the human administrator from parts of her management tasks and present an interface that remotely can control this management system. The effectiveness of the system is demonstrated by experiments using a prototype system.
A Knowledge-based Network Management System Using Active Information Resources
Kinoshita, Tetsuo,Kitagata, Gen,Takahashi, Hideyuki,Sasai, Kazuto,Kalegele, Khamisi The Institute of Internet 2014 International journal of advanced smart convergenc Vol.3 No.1
An expert network administrator is not always stationed as disasters happen. In that case, it is desirable that a novice administrator is capable of taking part in network recovery operations as well. In this paper, aknowledge-based network management system in emergency situations is presented. We use the Active Information Resource based Network Management System (AIR-NMS) to relieve the human administrator from parts of her management tasks and present an interface that remotely can control this management system. The effectiveness of the system is demonstrated by experiments using a prototype system.
A Knowledge-based Network Management System Using Active Information Resources
Tetsuo Kinoshita,Gen Kitagata,,Hideyuki Takahashi,Kazuto Sasai,KhamisiKalegele 한국인터넷방송통신학회 2014 Journal of Advanced Smart Convergence Vol.3 No.1
An expert network administrator is not always stationed as disasters happen. In that case, it is desirable that a novice administrator is capable of taking part in network recovery operations as well. In this paper, aknowledge- based network management system in emergency situations is presented. We use the Active Information Resource based Network Management System (AIR-NMS) to relieve the human administrator from parts of her management tasks and present an interface that remotely can control this management system. The effectiveness of the system is demonstrated by experiments using a prototype system.
Multiagent System for Microgird Operation : Modelling & Implementation
Hak-Man Kim(김학만),Tetsuo Kinoshita(木下哲男) 대한전기학회 2009 대한전기학회 학술대회 논문집 Vol.2009 No.11
The Microgrid is a small-scale private power system. Recently, many studies for a commercial stage of the Microgrid have been performed. In this paper, a Multiagent system approach to the Microgrid operation is discussed. The Multiagent is modeled based on the Contract Net Protocol (CNP). To test the availability the Multiagent system, a simulation study is performed.
Talmudic Approach to Load Shedding of Islanded Microgrid Operation Based on Multiagent System
Hak-Man Kim,Tetsuo Kinoshita,Yujin Lim 대한전기학회 2011 Journal of Electrical Engineering & Technology Vol.6 No.2
This paper presents a load-shedding scheme using the Talmud rule in islanded microgrid operation based on a multiagent system. Load shedding is an intentional load reduction to meet a power balance between supply and demand when supply shortages occur. The Talmud rule originating from the Talmud literature has been used in bankruptcy problems of finance, economics, and communications. This paper approaches the load-shedding problem as a bankruptcy problem. A load-shedding scheme is mathematically expressed based on the Talmud rule. For experiment of this approach, a multiagent system is constructed to operate test islanded microgrids autonomously. The suggested loadshedding scheme is tested on the test islanded microgrids based on the multiagent system. Results of the tests are discussed.
A Microgrid Operation based on a Power Market Environment
Kim, Hak-Man,Kinoshita, Tetsuo The Korean Institute of IIIuminating and Electrica 2009 조명·전기설비학회논문지 Vol.23 No.11
A Microgrid is a private small-scale power system composed of distributed energy resources (DERs), storage devices and loads. And it is expected that the Microgrid will come into wide use in the near future. For this, the establishment of the Microgrid operation methodology is a very important problem. Especially, the Microgrid is greatly different from existing private small-scale power systems because of the multiple participants. Therefore, the Microgrid operation considered various requirements according to multiple participants is more complicated than the operation of existing private small-scale power systems. In this paper, Microgrid operation methodology based on a market environment is suggested. Through case studies, the effectiveness of the suggested methodology is verified.
Talmudic Approach to Load Shedding of Islanded Microgrid Operation Based on Multiagent System
Kim, Hak-Man,Kinoshita, Tetsuo,Lim, Yu-Jin The Korean Institute of Electrical Engineers 2011 Journal of Electrical Engineering & Technology Vol.6 No.2
This paper presents a load-shedding scheme using the Talmud rule in islanded microgrid operation based on a multiagent system. Load shedding is an intentional load reduction to meet a power balance between supply and demand when supply shortages occur. The Talmud rule originating from the Talmud literature has been used in bankruptcy problems of finance, economics, and communications. This paper approaches the load-shedding problem as a bankruptcy problem. A load-shedding scheme is mathematically expressed based on the Talmud rule. For experiment of this approach, a multiagent system is constructed to operate test islanded microgrids autonomously. The suggested load-shedding scheme is tested on the test islanded microgrids based on the multiagent system. Results of the tests are discussed.