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11.
Reducing the power consumed by motors is important for energy conservation in the case of electrical appliances and electric vehicles (EVs). The motors used for operating these devices operate at variable speeds. Further, the motors operate with a small load in the stationary mode and a large load in the starting mode. A permanent magnet motor can be operated at rated power with high efficiency. However, the efficiency is low under a small load or at high speeds because the large constant magnetic force results in substantial core loss. Furthermore, the flux‐weakening current that decreases the voltage at high speeds leads to significant copper loss and core loss. Therefore, we have developed a new technique for controlling the magnetic force of a permanent magnet on the basis of the load or speed of the motor. In this paper we propose a novel motor that can vary the magnetic flux of a permanent magnet and clarify the principles and basic characteristics of the motor. The new motor has a permanent magnet that is magnetized by the magnetizing coil of the stator. The results of analysis show that the magnetic flux linkage of the motor can be changed from 37% to 100% and that a high torque can be produced. © 2013 Wiley Periodicals, Inc. Electr Eng Jpn, 183(2): 47–57, 2013; Published online in Wiley Online Library (wileyonlinelibrary.com). DOI 10.1002/eej.22309 相似文献
12.
Qingshan Xu Nianchun Wang Kazuto Yukita Yasuyuki Goto Katsuhiro Ichiyanagi 《IEEJ Transactions on Electrical and Electronic Engineering》2009,4(4):545-552
A simplified simulation method was described for charactering mismatching photovoltaic performance integrated with bypass and string diodes, which are configured additionally compared with the tradition design for avoiding deterioration to modules in series or in parallel connection. The Newton-Raphson method was adopted for numerical simulations, with some computation problem discussed for fast convergence. It was proven to be suitable and effective when model validation coinciding with manufacturer specification. Furthermore, maximal power point (MPP) peak positions were reviewed roundly via simulations of the total characteristic curves. Multi-power peaks with multi-diodes installed were also investigated. The proposed method can be benefit for better comprehension on the physical circuit and provides greater program expansibility, and such simulation researches should be applicable for manufacturer to evaluate the configuration of photovoltaic module. © 2009 Institute of Electrical Engineers of Japan. Published by John Wiley & Sons, Inc. 相似文献
13.
The model of self-organized criticality (SOC) is a useful tool to understand the complexity of natural systems in the form of the artificial life and the artificial market. However, SOC remains the question what guarantees the criticality even though the natural systems seem to keep itself in the critical state. In this paper, we focus on the locality of interaction in zero-intelligence plus (ZIP) model. The extremely localized interaction changes the behavior of the ZIP model from equilibrium to intermittency. Although the original ZIP model falls into unstable with some noise, extremely localized interaction model archives robust intermittency against the noise parameter. Further, the statistical property of intermittent behavior shows the power-law nature. 相似文献
14.
Kazuto Okazaki Tatsuya Ogiwara Dongshin Yang Kentaro Sakata Ken Saito Yoshifumi Sekine Fumio Uchikoba 《Artificial Life and Robotics》2011,16(2):229-233
This article presents the micro-electro-mechanical systems (MEMS) microrobot which demonstrates locomotion controlled by hardware
neural networks (HNN). The size of the microrobot fabricated by the MEMS technology is 4 × 4 × 3.5 mm. The frame of the robot
is made of silicon wafer, and it is equipped with a rotary-type actuator, a link mechanism, and six legs. The rotary-type
actuator generates rotational movement by applying an electrical current to artificial muscle wires. The locomotion of the
microrobot is obtained by the rotation of the rotary-type actuator. As in a living organism, the HNN realized robot control
without using any software programs, A/D converters, or additional driving circuits. A central pattern generator (CPG) model
was implemented as an HNN system to emulate the locomotion pattern. The MEMS microrobot emulated the locomotion method and
the neural networks of an insect with the rotary-type actuator, the link mechanism, and the HNN. The microrobot performed
forward and backward locomotion, and also changed direction by inputting an external trigger pulse. The locomotion speed was
0.325 mm/s and the step width was 1.3 mm. 相似文献
15.
Kazuo Kadowaki Takashi Mochiku Hiroyuki Takeya Kazuto Hirata 《Journal of Superconductivity and Novel Magnetism》1995,8(4):461-464
The dc current-voltage (I-V) relation along the c-axis of single crystalline Bi2Sr2CaCu2O8+δ has been measured in magnetic fields parallel and perpendicular to the c-axis. In zero field a clear and sharp jump with large hysteresis in theI-V curve was observed, indicative of the dc-Josephson effect. In magnetic field below a characteristic fieldB *≈0.4 T (at T=0 K) parallel to the c-axis the magnetic field suppresses the hysteresis and reduces the critical currentI c drastically, whereas aboveB * theI-V curve becomes broad and featureless behavior. The characteristic field scaleB * can be interpreted as an energy scale of the Josephson coupling between superconducting layers in Bi2Sr2CaCu2O8+δ and is argued with emphasis on the correlation length of pancake vortices in this system. 相似文献
16.
Yamazaki T Kashiwagi A Kuramochi K Ohtsuka M Hashimoto I Watanabe K 《Journal of electron microscopy》2008,57(6):181-187
The quantitative measurement of a crystal bending effect is performed using low-order zone-axis convergent beam electron diffraction (CBED) patterns. Although the accuracy of the present method is inferior to that of the method of using split higher order Laue zone lines, this method enables us to estimate the crystal bending effect at a region very close to the interface and to easily judge whether the crystal bending effect results in a tensile bend or a compressive bend. As an application of the present method, the crystal bending effect at a region close to the SiGe/Si interface was measured. It was found that the crystal bending effect is due to a thin-foil relaxation of almost 0.3 degrees at a region that is approximately 10 nm away from the interface. 相似文献
17.
Pornthep Chivavibul Makoto Watanabe Seiji Kuroda Jin Kawakita Masayuki Komatsu Kazuto Sato Junya Kitamura 《Journal of Thermal Spray Technology》2011,20(5):1098-1109
Warm spray (WS) process, which can control the temperature of a combustion gas jet used to propel powder, has been successfully
applied to deposit WC-Co coatings. Detrimental reactions resulting from dissolution of WC into Co binder and decarburization
were suppressed effectively by keeping the WC-Co particles’ temperature below the m.p. of the binder phase. In this study,
three nano-structured WC-12Co powders with different particle strengths were prepared by changing the sintering conditions
of spray-dried powder and were deposited by WS. The deposition efficiency and porosity of the coatings decreased with increasing
the particle strength. The coating deposited from the powder with very low particle strength showed significant phase changes,
while those deposited from the higher particle strengths showed almost no change. Particle Image Velocimetry revealed significant
disintegration of the weakest powder, which explains the changes observed. The hardness and wear properties of the former
coating, therefore, were inferior to the other two. 相似文献
18.
19.
Nakamori H Matsuyama S Imai S Kimura T Sano Y Kohmura Y Tamasaku K Yabashi M Ishikawa T Yamauchi K 《The Review of scientific instruments》2012,83(5):053701
To construct adaptive x-ray focusing optics whose optical parameters can be varied while performing wavefront correction, ultraprecise piezoelectric deformable mirrors have been developed. We computationally and experimentally investigated undesirable short-period deformation caused by piezoelectric actuators adhered to the substrate during mirror deformation. Based on the results of finite element method analysis, shape measurements, and the observation of x-ray reflection images, a guideline is developed for designing deformable mirrors that do not have short-period deformation errors. 相似文献
20.
Kuramochi K Suzuki K Yamazaki T Mitsuishi K Furuya K Hashimoto I Watanabe K 《Ultramicroscopy》2008,109(1):96-103
The structure and composition of the 1/4{110} twin boundary in alpha-Zn7Sb2O12 have been determined by using quantitative high-angle annular dark field scanning transmission electron microscopy (HAADF STEM) analysis. The noise in the experimental HAADF STEM images is reduced by using the maximum entropy method and average processing, and the parameters used in dynamical simulations are experimentally determined. From the analysis, it has been found that octahedral sites in the twin boundary slightly shift parallel to the [110] direction, and a reduction of the Sb concentration at the octahedral sites on the plane adjacent to the twin boundary was detected. The reduction was measured from three regions in the same twin boundary, and the Sb concentrations were 4 +/- 3, 8 +/- 3 and 19 +/-2 at% from 33 at%. 相似文献