843 research outputs found

    A generalized leaky FxLMS algorithm for tuning the waterbed effect of feedback active noise control systems

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    © 2017 Elsevier Ltd To tune the noise amplification in the feedback system caused by the waterbed effect effectively, an adaptive algorithm is proposed in this paper by replacing the scalar leaky factor of the leaky FxLMS algorithm with a real symmetric Toeplitz matrix. The elements in the matrix are calculated explicitly according to the noise amplification constraints, which are defined based on a simple but efficient method. Simulations in an ANC headphone application demonstrate that the proposed algorithm can adjust the frequency band of noise amplification more effectively than the FxLMS algorithm and the leaky FxLMS algorithm

    Active Noise Control Over Space: A Wave Domain Approach

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    Noise control and cancellation over a spatial region is a fundamental problem in acoustic signal processing. In this paper, we utilize wave-domain adaptive algorithms to iteratively calculate the secondary source driving signals and to cancel the primary noise field over the control region. We propose wave-domain active noise control algorithms based on two minimization problems: first, minimizing the wave-domain residual signal coefficients, and second, minimizing the acoustic potential energy over the region, and derive the update equations with respect to two variables, the loudspeaker weights and wave-domain secondary source coefficients. Simulation results demonstrate the effectiveness of the proposed algorithms, more specifically the convergence speed and the noise cancellation performance in terms of the noise reduction level and acoustic potential energy reduction level over the entire spatial region.DP14010341

    ICS Materials

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    This present book covers a series of outstanding reputation researchers’ contributions on the topic of ICS Materials: a new class of emerging materials with properties and qualities concerning interactivity, connectivity and intelligence. In the general framework of ICS Materials’ domain, each chapter deals with a specific aspect following the characteristic perspective of each researcher. As result, methods, tools, guidelines emerged that are relevant and applicable to several contexts such as product, interaction design, materials science and many more

    Bringing sensory anthropology to consumer research

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    Purpose Multisensory stimulation is integral to experiential consumption. However, a gap persists between recognition of the importance of multisensory stimulation and the research techniques used to study the effects of such stimulation on consumption experiences. This article draws on sensory anthropology to narrow the gap. Design/methodology/approach Sensory anthropology has the potential to help consumer researchers understand multisensory stimulation and its effect on consumption experiences. To highlight this potential, ethnographic fieldwork is reported for two related experiential settings: yacht racing and adventure racing. Findings It is shown how consumer researchers can apply concepts and data collection techniques from sensory anthropology to derive powerful insights into consumption experiences. A set of guidelines and examples is derived from the embodied concepts associated with sensory anthropology, namely, kinaesthetic schema, bodily mimesis, the mindful body and local biology. These concepts are used to comprehend how consumers experience sensations phenomenologically, understand them culturally and re-enact them socially. Practical implications By acknowledging and engaging the senses, researchers can acquire embodied information that would not be evident from the conventional interview, survey or experimental data. Sensory anthropology adds to what is known from psychological, social and cultural sources to enable organisations to differentiate their offerings by means of the senses and sensory expressions, not only in yacht and adventure racing but potentially in many other experiential settings, such as travel, shopping, entertainment and immersive gaming. Originality/value This article offers distinct and original methodological insights for consumer researchers by focusing on concepts and data collection techniques that assist the study of experiential consumption from an embodied and corporeal perspective

    ICS Materials

    Get PDF
    This present book covers a series of outstanding reputation researchers’ contributions on the topic of ICS Materials: a new class of emerging materials with properties and qualities concerning interactivity, connectivity and intelligence. In the general framework of ICS Materials’ domain, each chapter deals with a specific aspect following the characteristic perspective of each researcher. As result, methods, tools, guidelines emerged that are relevant and applicable to several contexts such as product, interaction design, materials science and many more

    Aeronautical engineering: A continuing bibliography, supplement 122

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    This bibliography lists 303 reports, articles, and other documents introduced into the NASA scientific and technical information system in April 1980

    Autonomous Sailboat Navigation

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    The purpose of this study was to investigate novel methods on an unmanned sailing boat, which enables it to sail fully autonomously, navigate safely, and perform long-term missions. The author used robotic sailing boat prototypes for field experiments as his main research method. Two robotic sailing boats have been developed especially for this purpose. A compact software model of a sailing boat's behaviour allowed for further evaluation of routing and obstacle avoidance methods in a computer simulation. The results of real-world experiments and computer simulations are validated against each other. It has been demonstrated that autonomous boat sailing is possible by the effective combination of appropriate new and novel techniques that will allow autonomous sailing boats to create appropriate routes, to react properly on obstacles and to carry out sailing manoeuvres by controlling rudder and sails. Novel methods for weather routing, collision avoidance, and autonomous manoeuvre execution have been proposed and successfully demonstrated. The combination of these techniques in a layered hybrid subsumption architecture make robotic sailing boats a promising tool for many applications, especially in ocean observation
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