989 research outputs found

    Path Loss Analysis on Biomedical Monitoring System

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    Path Loss Analysis on Biomedical Monitoring System is an analysis to observe the path loss on interactive real-time wireless communication system that monitor signal from human body. Using sensors and wireless networking, health status of a person can be monitored. Tiny wireless sensor that placed on the human body can be used to create a wireless body area network (WBAN). Wearable system for health monitoring is the key technology to help the transition to be more effective healthcare. This will allow patient to closely monitor the changes in their vital signs and provide feedback to help maintaining at optimal health status. This system can integrated into a telemedical system, to alert medical personnel when life-threatening changes occur. However, wireless communication has its own problem in term of path loss depending on the environment. In addition, human body is one of the environments with high path losses because of wave absorption from the tissues and muscle

    Giant magnetoelectric effect of a hybrid of magnetostrictive and piezoelectric composites

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    Author name used in this publication: H. L. W. Chand2002-2003 > Academic research: refereed > Publication in refereed journalVersion of RecordPublishe

    Magnetoelectric properties of a heterostructure of magnetostrictive and piezoelectric composites

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    2004-2005 > Academic research: refereed > Publication in refereed journalVersion of RecordPublishe

    Path Loss Analysis on Biomedical Monitoring System

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    Path Loss Analysis on Biomedical Monitoring System is an analysis to observe the path loss on interactive real-time wireless communication system that monitor signal from human body. Using sensors and wireless networking, health status of a person can be monitored. Tiny wireless sensor that placed on the human body can be used to create a wireless body area network (WBAN). Wearable system for health monitoring is the key technology to help the transition to be more effective healthcare. This will allow patient to closely monitor the changes in their vital signs and provide feedback to help maintaining at optimal health status. This system can integrated into a telemedical system, to alert medical personnel when life-threatening changes occur. However, wireless communication has its own problem in term of path loss depending on the environment. In addition, human body is one of the environments with high path losses because of wave absorption from the tissues and muscle

    From time series analysis to a modified ordinary differential equation

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    In understanding Big Data, people are interested to obtain the trend and dynamics of a given set of temporal data, which in turn can be used to predict possible futures. This paper examines a time series analysis method and an ordinary differential equation approach in modeling the price movements of petroleum price and of three different bank stock prices over a time frame of three years. Computational tests consist of a range of data fitting models in order to understand the advantages and disadvantages of these two approaches. A modified ordinary differential equation model, with different forms of polynomials and periodic functions, is proposed. Numerical tests demonstrated the advantage of the modified ordinary differential equation approach. Computational properties of the modified ordinary differential equation are studied

    Effect of magnetic bias field on magnetoelectric coupling in magnetoelectric composites

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    Correcting cross-media instrument metamerism for reflectance estimation in multispectral imaging

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    Author name used in this publication: John H. Xin2010-2011 > Academic research: refereed > Publication in refereed journalVersion of RecordPublishe

    Evaluation of anti-oxidant capacity of root of Scutellaria baicalensis Georgi, in comparison with roots of polygonum multiflorum thunb and Panax ginseng CA Meyer

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    Author name used in this publication: Jian-Hong WuAuthor name used in this publication: Alice Lai-Shan AuAuthor name used in this publication: Peter Hoi-Fu Yu2009-2010 > Academic research: refereed > Publication in refereed journalAccepted ManuscriptPublishe
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