With the transformation of military tactic to informatization and networking and the need of rapid processing and measurement of mass of data, the measurement system of missile launch system is important to guarantee the operation to be normal. In order to reduce the complexity of the measurement and control system and the time of preparation before launching and increasing the level of combat, the authors build a distributed and autonomous measurement system based on B/S (Browser/Server) mode which combines the technology of virtual instrument, database, embedded system and various communications technologies. In this system, the authors use general development tool Visual C++ to develop the background test program for underlying data collection, and use MyEclipse to design front pages to achieve remote monitoring, data display and output the analyzed statistical results. The system satisfies the technical requirement after the performance testing and data acquisition verification. It provides a platform for the future study of data synchronization and parallel control. At the same time, it is useful for the development of multi-testing nodes and large amount of data communication of complex distributed measurement system.
In order to solve the difficulty in testing space controller, a general measurement system is designed and integrated. Based on LabVIEW, the multi loops model of producer/consumer is chosen to program which makes the interaction and sharing of data came true. Using the structure of state machines, the measurement task is completed by the measurement system efficiently and reliably. Following the MIL-STD-1553B bus protocol, completed 1553B communication test between host computer and space controller. Through the process of the noise reduction, the noise of the experimental data is effectively eliminated or reduced so that the measurement accuracy is improved. The space controller measurement system that is based on LabVIEW makes high-speed data acquisition, real-time processing, synchronous display and parallel control requirements come true, which has generality and extension as well.
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