Multi-channel digital quantity acquisition and processing anti-collision method and system of multiple sets of inertial navigation systems
An inertial navigation system and digital quantity technology, applied in the field of data processing, can solve problems such as task conflicts, loss of inertial navigation data frames, failure to complete inertial navigation system testing and verification, etc., to improve the accuracy of data collection and improve the speed of data processing , Improve the effect of testing and production efficiency
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Embodiment 1
[0056] Embodiment 1 Single set of inertial navigation system single channel digital quantity acquisition and processing
[0057] First, set the first-level cache A, the second-level cache B, and the third-level cache C through the cache setting unit, and the size of the first-level cache A can be set to 1024*1024=1048576 BYTE type storage spaces, that is, 1MB storage space; the size of the second-level cache B is set to be 64*1024=65536 BYTE type storage spaces, that is, the storage space of 64KB; the third-level cache C is a two-dimensional array, and the size of the third-level cache C is set to 1024*1024=1048576 storage spaces of BYTE type, that is, 1024 one-dimensional arrays, and the size of each one-dimensional array is 1024 bytes. Here, it is assumed that the total length of each data frame is not greater than 1024 bytes.
[0058] Set the write-read switch WriteReadDataSwitch of the first-level cache A.
[0059] Set the format of the communication frame through the com...
Embodiment 2
[0068] Embodiment 2 Acquisition and processing of multi-channel digital quantities of multiple sets of inertial navigation systems
[0069] Simultaneously test 4 sets of inertial navigation systems, and each set of inertial navigation systems has 2 digital outputs. The difference with embodiment 1 is:
[0070] First, through the cache setting unit, set 8 sets of caches, for each set of caches: set the first level cache A, the second level cache B and the third level cache C, the size of the first level cache A can be set to 1024* 1024=1048576 storage spaces of BYTE type, i.e. a storage space of 1MB; the size of the second-level cache B is set to be 128*1024=131072 storage spaces of a BYTE type, i.e. a storage space of 128KB; the third-level cache C is two Two-dimensional array, set the size of the third-level cache C to 1024*1024=1048576 BYTE type storage space, that is, 1024 one-dimensional arrays, and the size of each one-dimensional array is 1024 bytes, assuming that each ...
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