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EN
At NTNU in Norway an 8-year research project has been established to (among other things) research the interaction between humans and unmanned, autonomous ships. The human will become even more important when ship operator will be located remotely in shore control centers ashore. This concept paper will take a closer look on remote decision-making by operators monitoring several ships. How can interface design help them to get quickly into-the-loop when something unexpected suddenly happens? I will in this paper suggest keeping a copy of the AI expert-system controlling the ship, updated and running in parallel in the control center to keep the operator’s situation awareness during short communication glitches. Also, to design a “quickly-getting-into-the-loop-display” which automatically will appear in an alarm situation, allowing the operator just-in-time and simple-to-understand information. I will also stress the important of the concept automation transparency.
EN
The aim of the paper is to present the concept of the integrated system dedicated for communication and remote operation of the unmanned aerial vehicle (UAV). In the paper the concept and realization of this kind of wireless communications system is presented. The system consists of two integrated solutions – unidirectional broadcast transmission of video, audio and data from UAV to the operators within the mobile command centre and two‐way communication with the telemetry and control subsystem. The systems are integrated within the single chassis and placed on the UAV to ensure proper operation of the flying robot. The specific elements of the system are presented as well as main requirements and connected with them development methods are also discussed in the paper.
EN
The paper addresses the issue of offering hands‐on engineering labs via the web. The hands‐on feature refers to the functionality of the lab, which is preserved whether the lab experiments are done over the web or with student’s physical presence in the lab. After an extensive review of remote labs, examples of lab stations are described from the area of software engineering, where software development is done remotely and then software modules are uploaded and tested on the lab stations. This type of lab can be called invasive, since the essential element of an experiment is the replacement or modification of the software module controlling the remote equipment. This is in contrast to regular remote labs, which are non‐invasive. Two lab stations are presented in more detail, one for a wireless sensor network and another for a remotely accessible microcontroller. Several observations are made regarding the usefulness of this technology and prospects of adoption in software engineering programs.
4
Content available remote Telemedycyna i systemy telematyczne w medycynie
PL
W pracy przedstawiono osiągnięcia w zakresie telemedycyny, zarówno na świecie, jak i w Polsce. Szczególną uwagę zwrócono na nowoczesne techniki chirurgiczne stosowane w operacjach na odległość. Opisano krótko dwa zrobotyzowane systemy chirurgiczne - teleoperatory, stworzone w Stanach Zjednoczonych, a także projekt pierwszego polskiego robota chirurgicznego RoblnHeart (Fundacja Rozwoju Kardiochirurgii w Zabrzu).
EN
The achievements in telemedicine worldwide, as well as in Poland are presented. The special emphasis is on modern surgery techniques used in remote operations. Two systems are described, coming from the USA, as well as Polish RobinHeart robot from Cardiosurgery Foundation in Zabrze.
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