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A Search for Deeply-bound Kaonic Nuclear States by In-flight $^3$He($K^-, n$) Reaction at J-PARC
Sakuma, F.,Ajimura, S.,Beer, G.,Bhang, H.,Bragadireanu, M.,Buehler, P.,Busso, L.,Cargnelli, M.,Choi, S.,Curceanu, C.,Enomoto, S.,Faso, D.,Fujioka, H.,Fujiwara, Y.,Fukuda, T.,Guaraldo, C.,Hashimoto, T. Jagiellonian University 2014 Acta physica Polonica. B Vol.45 No.3
takaki Hatae,H. Yoshida,M. Nakatsuka,O. Naito,S. Kitamura,T. Hamano,T. Sakuma 한국물리학회 2006 THE JOURNAL OF THE KOREAN PHYSICAL SOCIETY Vol.49 No.III
Phase conjugate mirror based on stimulated Brillouin scattering (SBS) is a fundamentally new and promising technology, and it is applicable to plasma diagnostics in order to improve the measurement performance. A review is presented about the applications of SBS phase conjugation to Thomson scattering diagnostics in JT-60U and ITER. Proposed applications using the phase conjugate mirror to plasma diagnostics, namely double-pass and multipass Thomson scattering methods, were described. Improvement of diagnostic laser system for Thomson scattering employing the phase conjugate mirror are also described.I
Optimal Placement and Control of BESS for a Distribution System Integrated with PV systems
Kihara, Hiroyuki,Yokoyama, Akihiko,Liyanage, Kithsiri M.,Sakuma, Hisato The Korean Institute of Electrical Engineers 2011 The Journal of International Council on Electrical Vol.1 No.3
Recently, photovoltaic generation (PV) has attracted a great attention as one of green power generations. Accordingly a large amount of PV systems will be installed in residential areas in the coming years. In such scenario, reverse power flow caused by PV in feeders may cause some problems such as voltage rise over upper limits in the distribution line, and the reverse power flow into the distribution substation. Battery energy storage system (BESS) is a promising option to solve the above both problems at the same time. However, the effect of BESS depends on location of BESS. Therefore, it is necessary to consider an appropriate location in the residential distribution system to install BESS to obtain an optimal effect. This paper investigates an optimal placement pattern of BESS in the residential distribution system with certain patterns of PV installation. It has been made clear that the obtained results can determine the best placement pattern of BESS with the minimum required BESS capacity and power loss.