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System’s generalities and structure of the final report. Cesidio Bianchi. INGV. Index. Introduction Identification of Critical Infrastructures in the Mediterranean Sea context and communications’ criticalities.
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System’s generalities and structure of the final report Cesidio Bianchi. INGV
Index Introduction • Identification of Critical Infrastructures in the Mediterranean Sea context and communications’ criticalities. 2. Determination of the topology of high survival HF radio communication network. • Internet criticalities and activation/deactivation of HF network. 4. High survival HF radio network . 5. HF management communication system and link optimization. 6. Design and realization of HF station prototype. • SWING system’s generalities . • Conclusions. References SWING Final Meeting | CNIT - Pisa, Italy
SVP Supervision Program (SVP) is a general procedure for management and control as well as a methodology valid and applicable in every point (or node) of the HF network. This program contains the common concepts adopted for the protection of maritime CI in the context of the Mediterranean Sea. It also deals with the common technical requirements for the data/voice communication (radio electric parameters, network and data protocol, etc.) SWING Final Meeting | CNIT - Pisa, Italy
SVP Supervision Program SWING Final Meeting | CNIT - Pisa, Italy
DSVF Distributed Supervision Functions (DSVFs) follows the general procedure established by SVP. It is a program that runs in every HF network point (or critical infrastructure). It resides in the workstation (PC) to manages the fully reconfigurable hardware that constitute the transmitting/receiving stations. The system is based on the Software Defined Radio technology. Among the various techniques the USRP or Universal Software Radio Peripheral of Ettus has been employed. DSVP contains routine for internet check, activation/deactivation of the network and frequency management. SWING Final Meeting | CNIT - Pisa, Italy
USRP SWING Final Meeting | CNIT - Pisa, Italy
Internet control SWING Final Meeting | CNIT - Pisa, Italy
Frequency selection SWING Final Meeting | CNIT - Pisa, Italy
DSVP SWING Final Meeting | CNIT - Pisa, Italy
DSVF Distributed Supervision Function SWING Final Meeting | CNIT - Pisa, Italy
DSVP flow chart SWING Final Meeting | CNIT - Pisa, Italy
DSVP flow chart-2 SWING Final Meeting | CNIT - Pisa, Italy
SWING HF network point SWING Final Meeting | CNIT - Pisa, Italy
FINAL REPORT Introduction • Identification of Critical Infrastructures in the Mediterranean Sea context and communications’ criticalities. 2. Determination of the topology of high survival HF radio communication network. • Internet criticalities and activation/deactivation of HF network. 4. High survival HF radio network . 5. HF management communication system and link optimization. 6. Design and realization of HF station prototype. • SWING system’s generalities . • Conclusions. References SWING Final Meeting | CNIT - Pisa, Italy
CriticalInfrastructures SWING Final Meeting | CNIT - Pisa, Italy
ECI CGA Link ECI CGA Link ECI-CGA Token logical ring NETWORK TOPOLOGY Contention based scenario (DCHF). Local HFTP Every transmitting node senses the channel and then establishes a connection with the receiver Each node that needs to transmit waits for token reception. Upon receiving the token, it is allowed to try to transmit its packet for a limited time interval before releasing the token. SWING Final Meeting | CNIT - Pisa, Italy
Activation/deactivationof Net SWING Final Meeting | CNIT - Pisa, Italy
High survival HF network Example of implementation: Block diagram of an OFDM transceiver SWING Final Meeting | CNIT - Pisa, Italy
Frequency management Spectrum analysis directly implemented in USRP SWING Final Meeting | CNIT - Pisa, Italy
Demonstrator SWING Final Meeting | CNIT - Pisa, Italy
SVP-DSVP SWING Final Meeting | CNIT - Pisa, Italy
SWING deliverables 18 TR Thanks SWING Final Meeting | CNIT - Pisa, Italy