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EN
The paper aims to present the organizational concept of the wireless personal area network (WPAN network) transmitting biomedical data, used in the BioSip system. The network transmits data from recording modules arranged on the subject's body to a collective node (data integrator). At the same time, all the necessary properties are maintained, i.e. low power consumption of the modules, increased resistance of the network to artefacts, the required transmission speed and signal delays. The options to synchronize measurements in various modules have also been presented, along with the resulting benefits. The wireless personal area network of BioSip modules may be based on various communication protocols, such as Bluetooth Smart or ANT. The BioSip network builds on its own protocol based on transmission mechanisms by Nordic. The software of BioSip modules may be adapted for operation in the Internet of Things through network protocol layers made available by Nordic.
EN
The paper presents the idea behind the implementation of a system designed to monitor biomedical parameters and the subject's behaviour on the basis of the architecture of measurement modules located on the body. The system was developed as a result of market launch of new generations of electronic devices combining high functionality, small size and low power consumption. The paper presents the elements of the system called BioSip, along with hardware solutions selected for the objectives to be accomplished, i.e. providing communication between system elements that would be efficient and resistant to artefacts, extending the time of operation for battery power supply, as well as ensuring a satisfactory level of reliability and ease of use.
EN
Progress in technology and the demand for systems used for psychophysiological measurements, which record several synchronous parameter / signal types at a time, have a significant impact on the increasing number of innovative solutions available in the market. This article focuses on the design and engineering path of the created systems with special emphasis on the latest solutions, developed at the Institute of Medical Technology and Equipment (ITAM) in Zabrze. Competitive systems and other systems are also referred to by way of a comparative analysis, both in terms of their benefits and drawbacks. The overview shows that the new system may become a competitive solution for the already existing options and that it is characterized by a number of properties that make it unique.
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