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1.
Fuzzy inference, a data processing method based on the fuzzy theory that has found wide use in the control field, is reviewed. Consumer electronics, which accounts for most current applications of this concept, does not require very high speeds. Although software running on a conventional microprocessor can perform these inferences, high-speed control applications require much greater speeds. A fuzzy inference date processor that operates at 200000 fuzzy logic inferences per second and features 12-b input and 16-b output resolution is described 相似文献
2.
Ohshima S. Nakamura M.S. Baba S. Tomioka T. Miyachi M. Shimomura Y. 《Lightwave Technology, Journal of》1995,13(9):1838-1846
This paper describes frequency control techniques for cold start and channel recognition functions in coherent multichannel local area networks. A Z-cut quartz etalon can be used to stabilize the optical transmitter frequencies. The capture range and the influence of humidity on a Fabry-Perot etalon are discussed. The frequency deviation of the optical transmitter was estimated to be less than ±1 GHz in the long term. A double AFC loop has been proposed for local LD frequency control. It showed a wide capture range of ±100 GHz. Coherent FDM receiver switching to the desired channel was demonstrated over a range from 0 to 40°C in an experiment 相似文献
3.
Akira Ishizaki Kazuhiko Takasaki Shoji Shimomura Kouichi Masaki Kanji Kitazawa 《Electrical Engineering in Japan》1996,116(5):128-137
Although brushless resolvers have been used widely as angular position transducers, they are expensive due to their intricate construction, involving a rotary transformer to supply the exciting coils wound on the rotor poles with the current. It is shown theoretically in this paper that the resolver without rotary transformer or brushes can be realized by simple construction, which consists of the stator core with both 4-poles exciting windings and 2-poles output ones and the rotor core carrying no windings. In this resolver the rotor core has minimum gap at one side and a maximum gap at another side of the diameter. It is characterized by an outer surface form that makes the fluctuation part of gap permeance very in proportion to cos θ, where θ represents the angular position of a point in the air gap with respect to the origin on the rotor, the point of minimum air gap. The method determining the rotor form to embody the aforementioned gap permeance variation is also shown. It has been confirmed not only by simulation but also experiment that the 2-phase output voltages of a model designed based on the theory have sinusoidal waveforms with very small harmonic contents. Moreover, the rotor position detected by processing the output voltages through the conventional resolver/digital converter was within acceptable engineering accuracy. 相似文献
4.
To solve current industrial problems, manufacturers need to supply service rather than materialized products to consumers. We propose a novel engineering paradigm to deal with services, service engineering. We define services as a state change. A service model consists of three sub-models: scope model, view model and flow model. A computer-aided design tool, called Service Explorer, is developed to represent a network of the parameters and determines the influence weight one another. As the result, we verify the usefulness of the design tool. 相似文献
5.
Yayoi Shimomura Ebba Thora Hvannberg Hjalmtyr Hafsteinsson 《Universal Access in the Information Society》2013,12(2):125-142
Research has been conducted on how to aid blind peoples’ perceptions and cognition of scientific data and, specifically, on how to strengthen their background in mathematics as a means of accomplishing this goal. In search of alternate modes to vision, researchers and practitioners have studied the opportunities of haptics alone and in combination with other modes, such as audio. What is already known, and has motivated research in this area, is that touch and vision might form a common brain representation that is shared between the visual and haptic modalities and through haptics learning is active rather than passive. In spite of extensive research on haptics in the areas of psychology and neuropsychology, recent advances and rare experiences in using haptic technology have not caused a transfer from basic knowledge in the area of haptics to learning applications and practical guidelines on how to develop such applications. Thus motivated, this study investigates different haptic effects, such as free space, magnetic effects and the bounded box when blind people are given the task of recognising and manipulating classes of 3D objects with which they have varying familiarity. In parallel, this study investigates the applicability of Sjöström’s guidelines on haptic applications development and uses his problem classification to capture knowledge from the experiments. The results of this study show that users can easily recognise and manipulate familiar objects, albeit with some assistance. There is an indication that users completed tasks faster and needed less assistance with magnetic effects. However, they were not as satisfied with this mode. While the results of this study show that haptics have the potential to allow students to conceptualise 3D objects, much more work is needed to exploit this technology to the fullest. Objects with higher complexity are difficult for students, and, in their opinion, the virtual objects (as presented) leave much room for improvement. Sjöström’s error taxonomy proved useful, and four of five sub-guidelines tested were confirmed to be useful in this study. 相似文献
6.
Takashi Shimomura 《Dynamical Systems: An International Journal》2018,33(2):275-302
Downarowicz and Maass [7] proposed topological ranks for all homeomorphic Cantor minimal dynamical systems using properly ordered Bratteli diagrams. In this study, we adopt this definition to the case of the essentially minimal zero-dimensional systems. We consider the cases in which topological ranks are 2 and unique minimal sets are fixed points. Akin and Kolyada [2], had shown that if the unique minimal set of an essentially minimal system is a fixed point, then the system must be proximal. The finite topological rank implies expansiveness; furthermore, in the case of proximal Cantor systems with topological rank 2, the expansiveness is always from the lowest degree. Rank 2 proximal Cantor systems are residually scrambled. We present a necessary and sufficient condition for the unique ergodicity of these systems. In addition, we show that the number of ergodic measures of the systems that are topologically mixing can be 1 and 2. Moreover, we present examples that are topologically weakly mixing, not topologically mixing, and uniquely ergodic. Finally, we show that the number of ergodic measures of the systems that are not weakly mixing can be 1 and 2. 相似文献
7.
Yayoi Shimomura Ebba Thora Hvannberg Hjalmtyr Hafsteinsson 《Universal Access in the Information Society》2010,9(4):297-310
Increasingly, computers are becoming tools of communication, information exploring and studying for young people, regardless
of their abilities. Scientists have been building knowledge on how blind people can substitute hearing or touch for sight
or how the combination of senses, i.e., multimodalities, can provide the user with an effective way of exploiting the power
of computers. Evaluation of such multimodal user interfaces in the right context, i.e., appropriate users, tasks, tools and
environment, is essential to give designers accurate feedback on blind users’ needs. This paper presents a study on how young
blind people use computers for everyday tasks with the aids of assistive technologies, aiming to understand what hindrances
they encounter when interacting with a computer using individual senses, and what supports them. A common assistive technology
is a screen reader, producing output to a speech synthesizer or a Braille display. Those two modes are often used together,
but the research studied how visually impaired students interact with computers using either form, i.e., a speech synthesizer
or a Braille display. A usability test has been performed to assess blind grade-school students’ ability to carry out common
tasks with the help of a computer, including solving mathematical problems, navigating the web, communicating with e-mail
and using word processing. During the usability tests, students were allowed to use either auditory mode or tactile mode.
Although blind users most commonly use a speech synthesizer (audio), the results indicate that this was not always the most
suitable modality. While the effectiveness of the Braille display (tactile user interface) to accomplish certain tasks was
similar to that of the audio user interface, the users’ satisfaction rate was higher. The contribution of this work lies in
answering two research questions by analysing two modes of interaction (tactile and speech), while carrying out tasks of varying
genre, i.e., web searching, collaboration through e-mail, word processing and mathematics. A second contribution of this work
is the classification of observations into four categories: usability and accessibility, software fault, cognitive mechanism
and learning method. Observations, practical recommendations and open research problems are then presented and discussed.
This provides a framework for similar studies in the future. A third contribution of this work is the elaboration of practical
recommendations for user interface designers and a research agenda for scientists. 相似文献
8.
The purpose of this study was to design an endoscopic dissector handle and objectively assess its usability. The handles were designed with increased contact area between the fingers and thumb and the eye rings, and the eye rings were modified to have a more perpendicular insertion angle to the finger midline. Four different handle models were compared, including a conventional product. Subjects performed dissection, exclusion, grasping, precision manipulation and precision handling tasks. Electromyography and subjective evaluations were measured. Compared to conventional handles, the designated handle reduced the muscle load in the extensor and flexor muscles of the forearm and increased subjective stability. The activity of the first dorsal interosseous muscle was sometimes influenced by the shape of the other parts. The ergonomically designed endoscopic dissector handle used in this study achieved high usability. Medical instrument designs based on ergonomic concepts should be assessed with objective indices.
Practitioner Summary: The endoscopic dissector handles were designed with increased contact area and more suitable insertion angle between the fingers and thumb and the eye rings. Compared to conventional handles, the designated handle reduced the muscle load in the extensor and flexor muscles of the forearm and increased subjective stability. 相似文献
9.
10.
In this paper, we present a numerical algorithm to the cross‐coupled algebraic Riccati equations(CARE) related to H2/H∞ control problems for singularly perturbed systems (SPS) by means of Newton's method. The resulting algorithm can be widely used to solve Nash game problems and robust control problems because the CARE is solvable even if the quadratic term has an indefinite sign. We prove that the resulting iterative algorithm has the property of the quadratic convergence. Using the solution of the CARE, we construct the high‐order approximate H2/H∞ controller. Copyright © 2004 John Wiley & Sons, Ltd. 相似文献