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41.
Esen Gökçe Özdamar 《Digital Creativity》2013,24(3):206-212
ABSTRACTThis exhibition review focuses on the quest for weaving boundaries between body-form-space-and material relationship using immersive technologies. Emerging as an architectural counterpoint, Universal Everything: Fluid Bodies exhibition held in Borusan Contemporary focuses on how we perceive the motion and form in relation to it, as well as fusing senses of kinaesthetic and synaesthetic through a data driven and motion-based visual representation. Through these algorithms, the exhibition displays how neuroarchitecture reminds us of the senses of perception. The architectural counterpoint, intention as an interaction and encounter of the body with ‘the machine’ as the ‘voyeur body’ and how this observational dialogue becomes a research methodology in understanding the nature of movement in space through digital tools. 相似文献
42.
Failure mode and effects analysis (FMEA) is one of the well-known techniques of quality management that is used for continuous improvements in product or process designs. While applying this technique, determining the risk priority numbers, which indicate the levels of risks associated with potential problems, is of prime importance for the success of application. These numbers are generally attained from past experience and engineering judgments, and this way of risk assessment sometimes leads to inaccuracies and inconsistencies during priority numbering. Fuzzy logic approach is preferable in order to remove these deficiencies in assigning the risk priority numbers. In this study, a fuzzy-based FMEA is to be applied first time to improve the purchasing process of a public hospital. Results indicate that the application of fuzzy FMEA method can solve the problems that have arisen from conventional FMEA, and can efficiently discover the potential failure modes and effects. It can also provide the stability of process assurance. 相似文献
43.
We obtain subquadratic algorithms for 3SUM on integers and rationals in several models. On a standard word RAM with w-bit words, we obtain a running time of
. In the circuit RAM with one nonstandard AC
0 operation, we obtain
. In external memory, we achieve O(n
2/(MB)), even under the standard assumption of data indivisibility. Cache-obliviously, we obtain a running time of
. In all cases, our speedup is almost quadratic in the “parallelism” the model can afford, which may be the best possible.
Our algorithms are Las Vegas randomized; time bounds hold in expectation, and in most cases, with high probability. 相似文献
44.
Assignment of referees to football games is an important problem faced in professional football leagues. Despite its importance, the problem has received limited academic attention. This paper presents a model and analysis of the problem for fair referee assignments, and develops a constructive heuristic and a local search procedure for its solution. Results from an extensive computational study show that the methods are effective in solving the problem in a second of computation time and yielding an excellent solution quality. 相似文献
45.
We study the problem of one-dimensional partitioning of nonuniform workload arrays, with optimal load balancing for heterogeneous systems. We look at two cases: chain-on-chain partitioning, where the order of the processors is specified, and chain partitioning, where processor permutation is allowed. We present polynomial time algorithms to solve the chain-on-chain partitioning problem optimally, while we prove that the chain partitioning problem is NP-complete. Our empirical studies show that our proposed exact algorithms produce substantially better results than heuristics, while solution times remain comparable. 相似文献
46.
47.
Zafer Iscan Ayhan Yüksel Zümray Dokur Mehmet Korürek Tamer Ölmez 《Digital Signal Processing》2009,19(5):890-901
In this study, a novel incremental supervised neural network (ISNN) is proposed for the segmentation of medical images. Performance of the ISNN is investigated for tissue segmentation in medical images obtained from various imaging modalities. Two feature extraction methods based on transform and moments are comparatively investigated to segment the tissues in medical images. Two-dimensional (2D) continuous wavelet transform (CWT) and the moments of the gray-level histogram (MGH) are computed in order to form the feature vectors of ultrasound (US) bladder and phantom images, X-ray computerized tomography (CT) and magnetic resonance (MR) head images. In the 2D-CWT method, feature vectors are formed by the intensity of one pixel of each wavelet-plane of different energy bands. The MGH represents the tissues within the sub-windows by using the spatial variation of image intensities. In this study, the ISNN and Grow and Learn (GAL) network are employed for the segmentation task. It is observed that the ISNN has significantly eliminated the disadvantages of the GAL network in the segmentation of the medical images. 相似文献
48.
A new image segmentation system is presented to automatically segment and label brain magnetic resonance (MR) images to show normal and abnormal brain tissues using self-organizing maps (SOM) and knowledge-based expert systems. Elements of a feature vector are formed by image intensities, first-order features, texture features extracted from gray-level co-occurrence matrix and multiscale features. This feature vector is used as an input to the SOM. SOM is used to over segment images and a knowledge-based expert system is used to join and label the segments. Spatial distributions of segments extracted from the SOM are also considered as well as gray level properties. Segments are labeled as background, skull, white matter, gray matter, cerebrospinal fluid (CSF) and suspicious regions. 相似文献
49.
Mehmet Önder Efe 《Soft Computing - A Fusion of Foundations, Methodologies and Applications》2009,13(1):23-29
This paper presents an approach to improve the performance of intelligent sliding model control achieved by the use of a fundamental
constituent of soft computing, named Adaptive Linear Element (ADALINE). The proposed scheme is based on the fractional calculus.
A previously considered tuning scheme is revised according to the rules of fractional order differintegration. After a comparison
with the integer order counterpart, it is seen that the control system with the proposed adaptation scheme provides (1) better
tracking performance, (2) suppression of undesired drifts in parameter evolution and (3) a very high degree of robustness
and insensitivity to disturbances. The claims are justified through some simulations utilizing the dynamic model of a two
degrees of freedom (DOF) direct drive robot arm and overall, the contribution of the paper is to introduce the fractional
order calculus into a robust and nonlinear control problem with some outperforming features that are absent when the integer
order differintegration operators are adopted. 相似文献
50.
Fuzzy boundary layer tuning for sliding mode systems as applied to the control of a direct drive robot 总被引:1,自引:0,他引:1
Kemalettin Erbatur Berk Çallı 《Soft Computing - A Fusion of Foundations, Methodologies and Applications》2009,13(11):1099-1111
Chattering in the control signal is a significant problem in sliding mode control (SMC). The boundary layer approach is one
of the many modifications proposed in the literature to avoid the chattering. In this approach, instead of the discontinuous
SMC, a continuous feedback control law is employed in a boundary layer around the sliding surface. The thickness of the boundary
layer is an important design parameter. This paper proposes a fuzzy online tuning method to adjust the boundary layer thickness
for the best system performance without chattering. The method features the measurement of the chattering in the control signal.
The paper validates the performance of the algorithm by experiments on a direct drive robot with a range of different payloads. 相似文献