Realizing method for nuclear safety-level intelligent simulation verification platform based on FPGA technology
A simulation verification, safety-level technology, applied in the field of nuclear safety-level intelligent simulation verification platform, can solve problems such as the inability to meet the intelligent requirements of nuclear power plant simulation verification platform, and the intelligence of the unseen verification platform, so as to achieve intelligent simulation verification and reduce problems. Probability, the effect of satisfying stability
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Embodiment 1
[0023] Such as figure 1 Shown, a kind of implementation method of the nuclear safety level intelligent simulation verification platform based on FPGA technology described in the present invention, its implementation steps are as follows:
[0024] Step 1: Based on FPGA technology, build a simulation verification platform according to the hardware equipment of the safety-level instrument and control system of the nuclear power plant, and assign unique station numbers and slot numbers to all boards;
[0025] The second step: according to the assigned station number and slot number of the board, configure the parameters and input vectors of each board, and the simulation verification platform can simulate the operation of one board or multiple boards in the safety level instrument and control system of the actual nuclear power plant. situation, so as to realize the intelligent and independent simulation verification of each board software;
[0026] Step 3: Build the waveform wind...
Embodiment 2
[0029] Such as figure 1 Shown, a kind of implementation method of the nuclear safety level intelligent simulation verification platform based on FPGA technology described in the present invention, its specific implementation steps are as follows:
[0030] Step 1: Based on FPGA technology, assign station numbers and slot numbers to all boards in the control station in accordance with the safety-level nuclear instrument and control system of nuclear power plants. Each board in each control station has only one slot number, and set a unified station The number is 1 (it can be assigned according to the actual situation), and each board has only one slot number i (1~15), as shown in Table 1.
[0031] Table 1 Slot number allocation
[0032]
[0033] Step 2: According to the assigned station number and slot number, intelligently configure the parameters of each board and test the input vector, and each board is independent of each other, which can simulate the existence of a boar...
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