While the work in the literature can provide one or two
features for monitoring, here, we propose a new single
device and technique that will enable one to monitor heart
rate, respiratory rate, occupancy and pressure points in a
robust manner, taking care of small and big user’s
movement and selecting the best sensor(s) for performing
the monitoring non-intrusively. The FBG sensor system
has the potential for allowing automated monitoring of
body temperature as well. Such a system, when coupled
with a platform for wireless transmission of data, will result in significant time and cost savings and will also
allow for more efficient deployment of scarce manpower
resources.
While the work in the literature can provide one or twofeatures for monitoring, here, we propose a new singledevice and technique that will enable one to monitor heartrate, respiratory rate, occupancy and pressure points in arobust manner, taking care of small and big user’smovement and selecting the best sensor(s) for performingthe monitoring non-intrusively. The FBG sensor systemhas the potential for allowing automated monitoring ofbody temperature as well. Such a system, when coupledwith a platform for wireless transmission of data, will result in significant time and cost savings and will alsoallow for more efficient deployment of scarce manpowerresources.
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