The article discusses a system prototype's project concept and technical construction (Intelligent Data Acquisition Module - IDAM). The IDAM system will enable the receipt of data from camera traps using the MMS, SMS, e-mail, and FTP standard. It ensures the integration of various types of wildlife camera traps owned by the Border Guard with the possibility of adding other sensors with standard input/output ports. It will be a fully scalable system based on innovative IT solutions with a cyber security module ensuring encryption at the interface between an open GSM network and the Internet, an internal data processing and communication system. Independent secure, and resistant to jamming communication channels are also presented.
This paper describes the design of the RF front-end, currently implemented as a part of a long-range UHF radio transceiver. The project aims to condition the commercial WiFi HaLow (IEEE 802.11ah) signal to fit in the desired frequency band and enable communication for longer distances. Assumptions of the design, described at the beginning, are followed by a more detailed description of subsequent hardware functional blocks that handle data transmission.
KEYWORDS: Chemical analysis, Sensors, Data integration, Statistical analysis, Chemical fiber sensors, Environmental sensing, Spectroscopy, Inspection, Chemical weapons, Terahertz radiation
The concept of Chemical Subsystem of the Innovative System for Detecting Hidden People in Transport (CHS-ISDHPT) is one of three subsystems of the Mobile Operating Platform (MOP-ISDHPT). The MOP-ISDHPT will be used to increase the detection of illegal smuggling of people. The chemical subsystem will consist of: a transport platform, a sample conditioning system, a gas chromatograph coupled with an ion-mobility spectrometer (GC-IMS), and a data integrator. Two concepts of CHS-ISDHPT development are considered, differing in the location of the GC-IMS installation. Apart from the location of the GC-IMS, both concepts differ in the method of measurement, ease of use, detection limit, and exposure of the analytical equipment to environmental conditions.
The concept of the Innovative System for Detecting Hidden People in Transport (ISDHPT) is an attempt to create an innovative platform to increase the detection of illegal smuggling of people and unauthorized objects. For this purpose, various types of detectors will be integrated into the system: based on measurements in the terahertz band, the X-ray radiation band, and using a set of various chemical sensors. The proposed solution is a world-first that includes the fusion of data from terahertz cameras operating in different bands and different imaging modes, a set of different chemical sensors, and X-ray back-scatter sensors. The system will be used when carrying out checks on means of transport to detect people trying to cross the state border illegally. It is assumed that the system's implementation will improve the level of public safety by increasing the effectiveness of actions taken in the area of transport means control.
The Simulation Training Platform of the PADO platform, STP PADO, is an innovative technical solution that allows for future system operators' demonstration and training. Its job is mapping modes of a real system through the availability of data from many different observing systems of Border Guard, BG. The primary function of the STP is to train and familiarize staff with optoelectronic technology adequately. The article discusses the proposed solution concept, hardware architecture construction, and STP training functionality. The idea is to give up the high and ego level of mapping the host system and appropriate efficiency and training capacity. The system assumptions correspond to the Table Top Trainer series simulator, TTT, in the client-server architecture.
KEYWORDS: Video, Standards development, Telecommunications, Data integration, Printed circuit board testing, Data transmission, Global system for mobile communications, Connectors, Cameras
The Operational Data Aggregation Platform (PADO) is an innovative technical solution that integrates modern ICT techniques with advanced hardware architecture based on a modular design. Its task is to integrate data from many different observational systems of the Border Guard (BG). The basic function of PADO is to increase the safety and effectiveness of BG activities effectively. The article discusses the proposed solutions for the construction of hardware architecture for the PADO platform, which enable the integration of data obtained from various systems and devices used in BG tactics. The system must ensure high reliability of work in severe propagation conditions, ICT performance in the area of information through a variety of communication channels mutually cooperating and low latency. One of the critical aspects of the system is the ability to modify the hardware layer through the implementation of modular construction and solutions based on modern standards and technologies.
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