Accident procedure criterion judgment method and device, storage medium and terminal

By using automatic logic calculation and color display methods, the problem of relying on manual operation for judging nuclear power plant accident procedures has been solved, realizing automated, fast and accurate judgment, reducing operator stress and power plant risks.

CN116821706BActive Publication Date: 2026-02-17CHINA NUCLEAR POWER DESIGN COMPANY +1
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Patent Information

Application Number
CN202310791973.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-06-29
Publication Date
2026-02-17
Estimated Expiration
2043-06-29

AI Technical Summary

Technical Problem

The existing nuclear power plant accident procedure judgment criteria rely on operators manually querying and calculating, which leads to long query times, high pressure, and is prone to human error, increasing the risk to the power plant.

Method used

An automatic logic calculation method is adopted. By judging the activation signal to enter the state, the input signal is received to perform logic calculation, the results are compared and the judgment result is output. The status of the judgment module is displayed by color change, reducing manual operation by the operator.

Benefits of technology

It enables automated judgment, reduces the operator's workload, avoids human error, and improves the accuracy and safety of accident handling.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The present application relates to the method, device, storage medium and terminal for judging the criterion of accident procedure, comprising the following steps: judging whether the activation signal of upstream output is received; if yes, judging whether to enter the activation state according to the activation signal; if entering the activation state, receiving the input signal; performing logical calculation according to the input signal to obtain the logical calculation result; comparing the logical calculation result with the reference result, and outputting the judgment result according to the comparison result. The present application can automatically perform logical calculation according to the input signal, without manual query and calculation by the operator, greatly reducing the pressure of the operator, avoiding human error, and improving the safety of the power plant. In addition, the present application can automatically, intelligently and accurately judge the unit parameter information of the operator under the accident condition through automatic calculation and dynamic judgment, quickly diagnose the unit state, and timely execute the accident relief measures.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of nuclear power plants, and more particularly to an accident procedure criterion judgment method and device, a storage medium and a terminal. BACKGROUND

[0002] Currently, the accident handling mode of CPR1000 units mainly adopts paper procedures and supporting pictures to execute accident mitigation strategies. During the execution of the accident procedure, the parameter and information criteria (such as RRA being connected, three main pumps running, shutdown or shutdown requirement, power > 10% PN, at least one injection light being on, etc.) need to be manually searched for parameters and calculated by the operator, and the procedure execution path is determined according to whether the criterion condition is met, and then recorded in the paper procedure by the operator.

[0003] The existing method requires the operator to manually query a large amount of criterion information and the screen information is more, which takes a long time to query and is not convenient for accident handling and control. In addition, the operator needs to manually calculate the queried information to determine whether the criterion meets the condition, and in the case of an accident, the operator's pressure and task load are high, which is prone to judgment errors and increases the risk of human error in the power plant. SUMMARY

[0004] The technical problem to be solved by the present application is to provide an accident procedure criterion judgment method, device, storage medium and terminal.

[0005] The technical solution adopted by the present application to solve the technical problem is: constructing an accident procedure criterion judgment method, comprising the following steps:

[0006] determining whether an activation signal output from an upstream is received;

[0007] if yes, determining whether to enter an activated state according to the activation signal;

[0008] if entering the activated state, receiving an input signal;

[0009] performing logical calculation according to the input signal to obtain a logical calculation result;

[0010] comparing the logical calculation result with a reference result, and outputting a judgment result according to the comparison result.

[0011] In the accident procedure criterion judgment method, the logical calculation result includes a first calculation result and an Nth calculation result; N is an integer greater than or equal to 2; the first calculation result is the reference result.

[0012] The method further comprises:

[0013] If the logic calculation result is a first calculation result, a judgment result is output according to the first calculation result, and the first calculation result is maintained as the reference result.

[0014] In the accident procedure criterion judgment method, the method further comprises:

[0015] If it is judged according to the activation signal that the activation state is not entered, the unactivated state is maintained.

[0016] In the accident procedure criterion judgment method, the comparison of the logic calculation result with the reference result and the output of a judgment result according to the comparison result comprises:

[0017] The logic calculation result is compared with the reference result.

[0018] The judgment result is output in a color change mode according to the comparison result.

[0019] In the accident procedure criterion judgment method, the output of the judgment result in the color change mode according to the comparison result comprises:

[0020] If the logic calculation result is consistent with the reference result, the icon of the hand automatic criterion module is filled with green color.

[0021] If the logic calculation result is not consistent with the reference result, the icon of the hand automatic criterion module is filled with yellow color.

[0022] In the accident procedure criterion judgment method, the method further comprises:

[0023] After the icon of the hand automatic criterion module is filled with yellow color, it is judged whether a hand selection instruction input by an operator is received.

[0024] If yes, the icon of the hand criterion module is filled with blue color according to the hand selection instruction.

[0025] In the accident procedure criterion judgment method, the method further comprises:

[0026] After the input signal is received, it is judged whether the input signal is abnormal.

[0027] If the input signal is abnormal, the outer frame of the icon of the hand automatic criterion module is switched to red color.

[0028] In the accident procedure criterion judgment method, the icon of the hand automatic criterion module is displayed in a variable length and / or variable width mode.

[0029] In the accident procedure criterion judgment method, the method further comprises:

[0030] The manual criterion module, after entering the active state, judges whether a manual selection instruction input by the operator is received.

[0031] If yes, the icon of the manual criterion module is filled with blue according to the manual selection instruction.

[0032] In the accident procedure criterion judgment method, the icon of the manual criterion module is displayed by variable length and / or variable width.

[0033] The application further provides an accident procedure criterion judgment device applied to the above-mentioned accident procedure criterion judgment method, comprising a hand-automatic criterion module and a manual criterion module.

[0034] The hand-automatic criterion module performs the following steps during the accident procedure execution process.

[0035] It is judged whether an active signal output by an upstream is received.

[0036] If yes, it is judged whether to enter an active state according to the active signal.

[0037] If the active state is entered, an input signal is received.

[0038] Logical calculation is performed according to the input signal, and a logical calculation result is obtained.

[0039] The logical calculation result is compared with a reference result, and a judgment result is output according to the comparison result.

[0040] The manual criterion module performs the following steps during the accident procedure execution process.

[0041] After entering the active state, it is judged whether a manual selection instruction input by the operator is received.

[0042] If yes, the icon of the manual criterion module is filled with blue according to the manual selection instruction.

[0043] In the accident procedure criterion judgment device, the icon of the hand-automatic criterion module is an icon with variable length and variable width, and the icon of the manual criterion module is an icon with variable length and variable width.

[0044] In the accident procedure criterion judgment device, the manual criterion module is provided with an identification tag, and the identification tag is used for identifying the manual criterion module.

[0045] The accident procedure criterion judgment device further comprises a manual selection control, which is used to receive a manual selection instruction input by the operator.

[0046] The manual selection control comprises a control with a true judgment result and a control with a false judgment result.

[0047] The manual selection control is displayed when the manual criterion module or the manual-automatic criterion module receives a trigger operation signal of the operator.

[0048] The manual-automatic criterion module comprises a criterion operation unit and a logic calculation unit.

[0049] The criterion operation unit is used to perform criterion operation according to the input signal and output a logic calculation result.

[0050] The logic calculation unit is connected with the criterion operation unit and is used to perform logic operation according to the logic calculation result and output a judgment result.

[0051] The logic calculation unit comprises a first AND gate, a second AND gate, a third AND gate, a fourth AND gate, a fifth AND gate, a sixth AND gate, a seventh AND gate, a first OR gate, a second OR gate, a third OR gate, a fourth OR gate, a fifth OR gate, a first RS flip-flop, a second RS flip-flop and a NOT gate.

[0052] A first input end of the first AND gate is connected with a first output end of a subsequent calculation result of the criterion operation unit, a second input end of the first AND gate is connected with an output end of the first RS flip-flop, an output end of the first AND gate is connected with a first input end of the first OR gate, a first input end of the second AND gate is connected with a second output end of the subsequent calculation result of the criterion operation unit, a second input end of the second AND gate is connected with an output end of the second RS flip-flop, an output end of the second AND gate is connected with a second input end of the first OR gate, a first output end of the first OR gate is connected with the third AND gate, and a second output end of the first OR gate is connected with the fourth AND gate.

[0053] A first input end of the second OR gate is connected with a first output end of the manual selection control, a second input end of the second OR gate is connected with a third output end of the manual selection control, an output end of the second OR gate is connected with a second input end of the second RS flip-flop, a first input end of the third OR gate is connected with the third output end of the manual selection control, a second input end of the third OR gate is connected with a second output end of the manual selection control, and an output end of the third OR gate is connected with a second input end of the first RS flip-flop.

[0054] The first input end of the first RS flip-flop is connected with the first output end of the first calculation result of the criterion operation unit, the output end of the first RS flip-flop is connected with the first input end of the fourth OR gate and the second input end of the first AND gate respectively, the first input end of the second RS flip-flop is connected with the second output end of the first calculation result of the criterion operation unit, the output end of the second RS flip-flop is connected with the first input end of the fifth OR gate and the second input end of the second AND gate respectively, the second input end of the fourth OR gate is connected with the first output end of the manual selection control, the output end of the fourth OR gate is connected with the second input end of the sixth AND gate, the second input end of the fifth OR gate is connected with the second output end of the manual selection control, the output end of the fifth OR gate is connected with the second input end of the seventh AND gate, the first input end of the sixth AND gate and the first input end of the seventh AND gate are connected with an activation signal.

[0055] The third output end of the manual selection control is also connected with the fifth AND gate, the third AND gate, the fourth AND gate and the NOT gate respectively, and the third AND gate, the fourth AND gate, the fifth AND gate and the NOT gate are also connected with the activation signal.

[0056] The application further provides a storage medium, which stores a computer program, and the computer program is suitable for being loaded by a processor to execute the steps of the accident procedure criterion judgment method.

[0057] The application further provides a terminal, which comprises a memory and a processor, and the memory stores a computer program, and the processor executes the steps of the accident procedure criterion judgment method by calling the computer program stored in the memory.

[0058] The accident procedure criterion judgment method, device, storage medium and terminal of the application have the following beneficial effects: comprising the following steps: judging whether an activation signal output by an upstream is received; if yes, judging whether an activation state is entered according to the activation signal; if the activation state is entered, receiving an input signal; performing a logic calculation according to the input signal to obtain a logic calculation result; comparing the logic calculation result with a reference result, and outputting a judgment result according to a comparison result. The application can automatically perform a logic calculation according to an input signal, without manual query and calculation by an operator, so that the pressure of the operator is greatly reduced, human errors are avoided, and the safety of a power plant is improved. In addition, the application automatically, intelligently and accurately provides the operator with judgment information of unit parameters in an accident situation by automatic calculation and dynamic judgment, rapidly diagnoses a unit state, and timely executes an accident relief measure. BRIEF DESCRIPTION OF DRAWINGS

[0059] The application will be further described below with reference to the drawings and embodiments.

[0060] Figure 1 is a flowchart of the method for determining the accident procedure criterion provided by the present application, embodiment one;

[0061] Figure 2 is a schematic diagram of the hand-automatic criterion module provided by the present application, not activated;

[0062] Figure 3 is a schematic diagram of the hand-automatic criterion module provided by the present application, automatic determination, embodiment one;

[0063] Figure 4 is a schematic diagram of the hand-automatic criterion module provided by the present application, automatic determination, embodiment two;

[0064] Figure 5 is a schematic diagram of the hand-automatic criterion module provided by the present application, automatic determination, embodiment three;

[0065] Figure 6 is a schematic diagram of the hand-automatic criterion module provided by the present application, automatic determination, embodiment four;

[0066] Figure 7 is a flowchart of the method for determining the accident procedure criterion provided by the present application, embodiment two;

[0067] Figure 8 is a schematic diagram of the hand-automatic criterion module provided by the present application, not activated;

[0068] Figure 9 is a schematic diagram of the hand-automatic criterion module provided by the present application, manual selection;

[0069] Figure 10 is a schematic diagram of the hand-automatic criterion module provided by the present application, icon shape;

[0070] Figure 11 is a logic diagram of the logic calculation unit provided by the present application. DETAILED DESCRIPTION

[0071] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the protection scope of the present application.

[0072] Figure 1A flow chart of a preferred embodiment of the method for determining the criteria of the accident procedure provided by the present application is shown. The method for determining the criteria of the accident procedure provided by the present application can be applied in the main control room of a nuclear power plant, and can automatically determine the criteria of the accident procedure during the execution of the accident procedure based on the method for automatically determining the criteria of the accident procedure provided by the present application.

[0073] In this embodiment, the method for automatically determining the criteria of the accident procedure is realized by a hand-automatic criterion module.

[0074] Specifically, during the execution of the accident procedure, the hand-automatic criterion module performs the following steps:

[0075] Step S101: determining whether an activation signal of an upstream output is received.

[0076] Step S102: if yes, determining whether to enter an activation state according to the activation signal.

[0077] In this embodiment, the activation signal of the upstream output is a logic signal, for example, can be logic "0" and logic "1". When the activation signal of the upstream output is "0", the hand-automatic criterion module is not activated; when the activation signal of the upstream output is "1", the hand-automatic criterion module is activated, and the hand-automatic criterion module enters an automatic mode. Therefore, whether to enter the activation state can be determined by judging the input activation signal.

[0078] Step S103: if the activation state is entered, receiving an input signal.

[0079] In this embodiment, the input signal is the input signal of the hand-automatic criterion module itself, which can be the relevant information of the hand-automatic criterion module itself. For example, if the hand-automatic criterion module is that the pressure of a pressure stabilizer is high, the input signal is the real-time pressure signal of the pressure stabilizer, wherein the real-time pressure signal can be collected by a sensing device through any existing manner and transmitted from the site to the main control room. For another example, if the hand-automatic criterion module is that at least one main pump is stopped, the input signal is the start-stop monitoring signal of each main pump. Similarly, the start-stop monitoring signal of each main pump can be collected by a sensing device through any existing manner and transmitted from the site to the main control room.

[0080] In this embodiment, if it is determined according to the activation signal that the activation state is not entered, the unactivated state is maintained. Specifically, if the activation signal is logic "0", the hand-automatic criterion module maintains the unactivated state.

[0081] Step S104: performing a logic calculation according to the input signal to obtain a logic calculation result.

[0082] In this embodiment, the logical calculation result includes: the first calculation result and the Nth calculation result; N is an integer greater than or equal to 2. If the logical calculation result is the first calculation result, then a judgment result is output based on the first calculation result, and the first calculation result is kept as a reference result.

[0083] Specifically, when the logical calculation result is the initial calculation result of the manual / automatic criterion module, this initial calculation result is used as a reference result for comparison with subsequent calculation results. It should be noted that in this embodiment, the manual / automatic criterion module has a logic retention function; that is, after the initial logical calculation is completed, the manual / automatic criterion module retains the initial calculation result. It should also be noted that when the manual / automatic criterion module performs its first logical calculation, the initial calculation result is directly used as the judgment result without the need for comparison.

[0084] Step S105: Compare the logical calculation result with the reference result, and output the judgment result based on the comparison result.

[0085] In this step, the logical calculation result is the result of the Nth calculation. Specifically, in this embodiment, comparing the logical calculation result with the reference result and outputting a judgment result based on the comparison result includes: comparing the logical calculation result with the reference result; and outputting the judgment result using a color change based on the comparison result.

[0086] The method of outputting the judgment result by color change based on the comparison result includes: if the logical calculation result is consistent with the reference result, the icon of the manual / automatic judgment module is filled with green; if the logical calculation result is inconsistent with the reference result, the icon of the manual / automatic judgment module is filled with yellow.

[0087] Furthermore, in this embodiment, the accident procedure criterion judgment method further includes: after filling the icon of the manual / automatic criterion module with yellow, determining whether a manual selection instruction input by the operator has been received; if so, filling the icon of the manual criterion module with blue according to the manual selection instruction.

[0088] Furthermore, in this embodiment, the accident procedure criterion judgment method also includes: after receiving the input signal, judging whether the input signal is abnormal; if the input signal is abnormal, then switching the icon frame of the manual / automatic criterion module to red.

[0089] Specifically, such as Figure 2 As shown, when the upstream output activation signal is logic "0", the manual / automatic criterion module is not activated, and its background color is filled with gray. Moreover, when the upstream output activation signal is logic "0", the output of both the manual and automatic criterion modules is 0.

[0090] like Figure 3As shown in the figure, when the activation signal of the upstream output is logic "1", the hand automatic criterion module enters the activated state, and its function is activated. The hand automatic criterion module is in the automatic mode. Since it has a logic retention function, if it has completed the first logic calculation, it retains the first calculation result as the reference result. The results of any subsequent logic calculations are compared with the first calculation result. If the results of any subsequent logic calculations are consistent with the first calculation result, the icon of the hand automatic criterion module is filled with green.

[0091] As shown in the figure, when the activation signal of the upstream output is logic "1", the hand automatic criterion module enters the activated state, and its function is activated. The hand automatic criterion module is in the automatic mode. Since it has a logic retention function, if it has completed the first logic calculation, it retains the first calculation result as the reference result. The results of any subsequent logic calculations are compared with the first calculation result. If the results of any subsequent logic calculations are consistent with the first calculation result, the icon of the hand automatic criterion module is filled with green. Figure 4 As shown in the figure, when the activation signal of the upstream output is logic "1", the hand automatic criterion module enters the activated state, and its function is activated. The hand automatic criterion module is in the automatic mode. Since it has a logic retention function, if it has completed the first logic calculation, it retains the first calculation result as the reference result. The results of any subsequent logic calculations are compared with the first calculation result. If the results of any subsequent logic calculations are inconsistent with the first calculation result, the icon of the hand automatic criterion module is filled with yellow. By filling the icon of the hand automatic criterion module with yellow, the operator can be reminded to pay attention.

[0092] As shown in the figure, when the activation signal of the upstream output is logic "1", the hand automatic criterion module enters the activated state, and its function is activated. The hand automatic criterion module is in the automatic mode. Since it has a logic retention function, if it has completed the first logic calculation, it retains the first calculation result as the reference result. The results of any subsequent logic calculations are compared with the first calculation result. If the results of any subsequent logic calculations are inconsistent with the first calculation result, the icon of the hand automatic criterion module is filled with yellow. By filling the icon of the hand automatic criterion module with yellow, the operator can be reminded to pay attention. Figure 5 As shown in the figure, when the activation signal of the upstream output is logic "1", if the results of any subsequent logic calculations of the hand automatic criterion module are inconsistent with the first calculation result, and the icon of the hand automatic criterion module has been filled with yellow, the operator can change the hand automatic criterion module to the manual mode after the evaluation operation, and manually select the output judgment result. When the operator completes the manual selection, the icon of the hand automatic criterion module is filled with blue. The specific selection operation of the operator on the hand automatic criterion module is: clicking the icon of the hand automatic criterion module, and the hand automatic criterion module receives the trigger operation signal of the operator. Then, the hand automatic criterion module outputs the manual selection control according to the trigger operation signal of the operator, and then the operator continues to input the manual selection instruction based on the output manual selection control.

[0093] As shown in the figure, when the activation signal of the upstream output is logic "1", the hand automatic criterion module enters the activated state, and its function is activated. The hand automatic criterion module is in the automatic mode. Since it has a logic retention function, if it has completed the first logic calculation, it retains the first calculation result as the reference result. The results of any subsequent logic calculations are compared with the first calculation result. If the results of any subsequent logic calculations are inconsistent with the first calculation result, the icon of the hand automatic criterion module is filled with yellow. By filling the icon of the hand automatic criterion module with yellow, the operator can be reminded to pay attention. Figure 6 As shown in the figure, when the activation signal of the upstream output is logic "1", the hand automatic criterion module enters the activated state, and its function is activated. The hand automatic criterion module is in the automatic mode. Since it has a logic retention function, if it has completed the first logic calculation, it retains the first calculation result as the reference result. The results of any subsequent logic calculations are compared with the first calculation result. If the results of any subsequent logic calculations are inconsistent with the first calculation result, the icon of the hand automatic criterion module is filled with yellow. By filling the icon of the hand automatic criterion module with yellow, the operator can be reminded to pay attention.

[0094] Figure 7A flowchart of an embodiment of the accident procedure criterion judgment method provided by the present application is shown. In this embodiment, the accident procedure criterion judgment method is realized by a manual criterion module.

[0095] Specifically, as shown in Figure 7 During the accident procedure execution process, the manual criterion module executes the following steps:

[0096] Step S201, after the manual criterion module enters the active state, it judges whether a manual selection instruction input by the operator is received.

[0097] Step S202, if so, the icon of the manual criterion module is filled with blue according to the manual selection instruction.

[0098] Specifically, in this embodiment, the manual criterion module judges whether to enter the active state according to the upstream activation signal, and after entering the active state, it receives the manual selection instruction input by the operator and switches the icon color of the manual criterion module according to the manual selection instruction of the operator to output the judgment result.

[0099] As shown in Figure 8 When the upstream output activation signal is logic "0", the manual criterion module is not activated, and its background color is filled with gray. Moreover, when the upstream output activation signal is logic "0", the output of the manual criterion module is all 0.

[0100] As shown in Figure 9 When the upstream output activation signal is logic "1", the manual criterion module enters the active state, its function is activated, the manual criterion module is in manual mode, the manual criterion module directly outputs the judgment result according to the manual selection instruction input by the operator, and fills the icon color of the manual criterion module with blue. Among them, the specific selection operation of the operator on the manual criterion module is: clicking the icon of the manual criterion module, the manual criterion module receives the trigger operation signal of the operator, and then the manual criterion module outputs the manual selection control according to the trigger operation signal of the operator, and then the operator continues to input the manual selection instruction based on the output manual selection control. It should be noted that when the operator does not perform the clicking operation on the manual criterion module, the manual selection control is not displayed (i.e. hidden), and when the operator performs the clicking operation on the manual criterion module, the manual selection control is displayed.

[0101] Among them, the icons of the manual criterion module and the manual-automatic criterion module are displayed by variable length and / or variable width, i.e. the icons of the manual criterion module and the manual-automatic criterion module are variable-length and / or variable-width icons, and if the icon is a circle, it is a variable-radius icon. That is, the manual criterion module and the manual-automatic criterion module can automatically adjust their shapes according to the size of the text, specifically as shown in Figure 10As shown.

[0102] The application also provides an accident procedure criterion judgment device, which specifically comprises a manual-automatic criterion module and a manual criterion module.

[0103] In the accident procedure execution process of the manual-automatic judgment module, the following steps are executed: judging whether an activation signal output by an upstream is received; if yes, judging whether an activation state is entered according to the activation signal; if the activation state is entered, receiving an input signal;

[0104] performing logical calculation according to the input signal to obtain a logical calculation result; comparing the logical calculation result with a reference result, and outputting a judgment result according to a comparison result.

[0105] In the accident procedure execution process of the manual criterion module, the following steps are executed: after the activation state is entered, judging whether a manual selection instruction input by a pilot is received; if yes, filling a figure of the manual criterion module with blue according to the manual selection instruction.

[0106] In the accident procedure execution process of the manual-automatic criterion module, the following steps are executed: judging whether an activation signal output by an upstream is received; if yes, judging whether an activation state is entered according to the activation signal; if the activation state is entered, receiving an input signal; Figure 11 As shown, in a preferred embodiment, the figures of the manual criterion module and the manual-automatic criterion module can be set as ellipses, so that the figures can be consistent with shapes in the procedure, text can be input in the figures and displayed in a configuration picture. Of course, the figures of the manual criterion module and the manual-automatic criterion module can also be set as other shapes, such as squares, triangles, circles and the like.

[0107] Further, the manual criterion module is provided with an identification label, which is used for identifying the manual criterion module. For example, as shown, “M” is an identification label of the manual criterion module, and the identification label can be distinguished from the manual-automatic criterion module by being set. Figure 8

[0108] Further, in the embodiment, the manual criterion module and the manual-automatic criterion module both comprise a manual selection control, wherein the manual selection control is used for receiving a manual selection instruction input by the pilot.

[0109] In the embodiment, the manual selection control comprises a control with a true judgment result (i.e., a “YES” button) and a control with a false judgment result (i.e., a “NO” button); the manual selection control is displayed when the manual criterion module or the manual-automatic criterion module receives a trigger operation signal of the pilot.

[0110] ​The hand automatic criterion module in the embodiment includes a criterion operation unit and a logic calculation unit; the criterion operation unit is configured to perform criterion operation according to an input signal and output a logic calculation result; the logic calculation unit is connected with the criterion operation unit and is configured to perform logic operation according to the logic calculation result and output a judgment result.

[0111] Further, in the embodiment, as shown in Figure 11 the first AND gate, the second AND gate, the third AND gate, the fourth AND gate, the fifth AND gate, the sixth AND gate, the seventh AND gate, the first OR gate, the second OR gate, the third OR gate, the fourth OR gate, the fifth OR gate, the first RS flip-flop, the second RS flip-flop, and the NOT gate. Among them, Figure 11 wherein &_1 is the first AND gate, &_2 is the second AND gate, &_3 is the third AND gate, &_4 is the fourth AND gate, &_5 is the fifth AND gate, &_6 is the sixth AND gate, &_7 is the seventh AND gate, ≥(#1) is the first OR gate, ≥(#2) is the second OR gate, ≥(#3) is the third OR gate, ≥(#4) is the fourth OR gate, ≥(#5) is the fifth OR gate, R_S_01 is the first RS flip-flop, R_S_02 is the second RS flip-flop, and #01 is the NOT gate.

[0112] The first input end of the first AND gate is connected with the first output end of the subsequent calculation result of the criterion operation unit, the second input end of the first AND gate is connected with the output end of the first RS flip-flop, the output end of the first AND gate is connected with the first input end of the first OR gate, the first input end of the second AND gate is connected with the second output end of the subsequent calculation result of the criterion operation unit, the second input end of the second AND gate is connected with the output end of the second RS flip-flop, the output end of the second AND gate is connected with the second input end of the first OR gate, the first output end of the first OR gate is connected with the third AND gate, and the second output end of the first OR gate is connected with the fourth AND gate;

[0113] The first input end of the second OR gate is connected with the first output end of the manual selection control, the second input end of the second OR gate is connected with the third output end of the manual selection control, the output end of the second OR gate is connected with the second input end of the second RS flip-flop, the first input end of the third OR gate is connected with the third output end of the manual selection control, the second input end of the third OR gate is connected with the second output end of the manual selection control, and the output end of the third OR gate is connected with the second input end of the first RS flip-flop;

[0114] The first input of the first RS flip-flop is connected to the first output of the initial calculation result of the criterion arithmetic unit. The output of the first RS flip-flop is connected to the first input of the fourth OR gate and the second input of the first AND gate, respectively. The first input of the second RS flip-flop is connected to the second output of the initial calculation result of the criterion arithmetic unit. The output of the second RS flip-flop is connected to the first input of the fifth OR gate and the second input of the second AND gate, respectively. The second input of the fourth OR gate is connected to the first output of the manual selection control. The output of the fourth OR gate is connected to the second input of the sixth AND gate. The second input of the fifth OR gate is connected to the second output of the manual selection control. The output of the fifth OR gate is connected to the second input of the seventh AND gate. The first inputs of the sixth AND gate and the first inputs of the seventh AND gate are connected to the activation signal.

[0115] The third output of the manual selection control is also connected to the fifth AND gate, the third AND gate, and the fourth AND gate, and the third AND gate, the fourth AND gate, and the fifth AND gate are all connected to the activation signal.

[0116] Specifically, such as Figure 11 As shown, Figure 11 The manual controls in the text refer to manual selection controls, where "Yes" is the "YES" button and "No" is the "NO" button. For example... Figure 11 As shown, the manual selection control includes a "YES" button, a "NO" button, and an "Auto" button. When the operator clicks the "YES" button, the judgment result is "consistent"; when the operator clicks the "NO" button, the judgment result is "inconsistent". It should be noted that the manual selection control is not displayed (i.e., hidden) when the operator does not click on the manual automatic judgment module; it only appears when the operator clicks on the module. Figure 11As shown, if the first calculation result (the first calculation result) is yes, the result is kept as yes, if the subsequent any time logical calculation result (the subsequent calculation result) is also yes, the first OR gate output is 1, at this time, the output of the first AND gate is also 1, therefore, the icon of the hand automatic criterion module is filled with green color; if the first calculation result is no, the result is kept as no, if the subsequent any time logical calculation result is also no, the output of the first AND gate is also 1, at this time, the output of the first OR gate is 1, therefore, the icon of the hand automatic criterion module is filled with green color; if the first calculation result is yes, the result is kept as yes, the second input end of the first AND gate inputs 1, if the subsequent any time logical calculation result is no, the first input end of the second AND gate inputs 0, therefore, the output of the first AND gate is 0, the first input end of the second AND gate is 1, the second input end of the second AND gate is 0, therefore, the output of the second AND gate is also 0, so the output of the first OR gate is 0, the output of the third AND gate is also 0, since the fourth AND gate takes the inverse of the input of the first OR gate, the output of the fourth AND gate is 1, therefore, the icon of the hand automatic criterion module is filled with yellow color; if it is the manual mode, when the operator operates the "yes" or "no" key, the third output end of the manual selection control is 0, the output of the fifth AND gate is 1, therefore, at this time, the icon of the hand automatic criterion module is filled with blue color.

[0117] Specifically, the specific cooperation operation process between each unit in the accident procedure criterion judgment device can refer to the above-mentioned accident procedure criterion judgment method, which will not be described here.

[0118] In addition, a terminal of the present application comprises a memory and a processor; the memory is used to store a computer program; the processor is used to execute the computer program to realize the accident procedure criterion judgment method of any one of the above. Specifically, according to the embodiments of the present application, the process described above with reference to the flow chart can be realized as a computer software program. For example, the embodiments of the present application include a computer program product comprising a computer program carried on a computer readable medium, the computer program comprising program code for executing the method shown in the flow chart. In such embodiments, the computer program can be downloaded and installed by the terminal and executed to perform the above-mentioned functions defined in the method of the embodiments of the present application. The terminal in the present application can be a notebook, a desktop, a tablet computer, a smart phone, etc., and can also be a server.

[0119] In addition, the present application also provides a storage medium storing a computer program, which is executed by a processor to implement the accident procedure criterion judgment method according to any one of the preceding embodiments. Specifically, it should be noted that the storage medium of the present application can be a computer readable signal medium or a computer readable storage medium or any combination of the two. The computer readable storage medium may, for example, but is not limited to, an electrical, magnetic, optical, electromagnetic, infrared, or semiconductor system, device or apparatus, or any combination of the above. More specific examples of the computer readable storage medium can include, but are not limited to, an electrical connection having one or more wires, a portable computer diskette, a hard disk, a random access memory (RAM), a read-only memory (ROM), an erasable programmable read-only memory (EPROM or flash memory), an optical fiber, a portable compact disk read-only memory (CD-ROM), an optical storage device, a magnetic storage device, or any suitable combination of the above. In the present application, the computer readable storage medium can be any tangible medium containing or storing a program that can be used by or in conjunction with an instruction execution system, device or apparatus. In the present application, the computer readable signal medium can include a data signal carried in a baseband or as a part of a carrier wave, which carries computer readable program code. Such a propagated data signal can take various forms, including but not limited to an electromagnetic signal, an optical signal or any suitable combination of the above. The computer readable signal medium can also be any computer readable medium other than the computer readable storage medium, which can send, propagate or transmit a program for use by or in conjunction with an instruction execution system, device or apparatus. The program code contained in the computer readable medium can be transmitted by any suitable medium, including but not limited to a wire, a cable, an RF (radio frequency) or the like, or any suitable combination of the above.

[0120] The computer readable medium described above can be contained in the terminal described above, or can exist separately and not be assembled into the terminal.

[0121] The embodiments in the specification are described in a progressive manner, and each embodiment focuses on the differences from other embodiments. The same or similar parts between the embodiments can be referred to each other. For the device disclosed in the embodiments, since it corresponds to the method disclosed in the embodiments, the description is relatively simple, and the relevant parts can be referred to the method part.

[0122] Those skilled in the art will further realize that the mere conception of the examples described herein is not inducing the patentable subject matter recited in each claim. The combinations and / or sequences of various example elements, steps, operations, actions, and / or functions described in each example are not necessarily the only possible combinations and / or sequences for practicing the claimed subject matter. Those skilled in the art will further realize that the mechanisms of the various examples described herein are for implementing the several embodiments and are not meant to be limiting as to the scope of the claimed subject matter. That is, the protection afforded to the claimed subject matter is not limited to the mechanisms of practicing the described examples. Therefore, the claimed subject matter should be understood to encompass a variety of subject matter, and equally obvious to those in the art, including but not limited to the following:

[0123] The steps of a method or algorithm described in connection with the examples disclosed herein can be embodied directly in hardware, in a software module executed by a processor, or in a combination of the two. A software module can reside in RAM, flash memory, ROM, electrically programmable ROM (EPROM or EEPROM), registers, hard disk, a removable disk, a CD-ROM, or any other form of storage medium known in the art. An exemplary storage medium is coupled to the processor such that the processor can read information from, and write information to, the storage medium. In the alternative, the storage medium can be integral to the processor. The processor and the storage medium can reside in an ASIC.

[0124] The examples described herein are only intended to illustrate the technical concepts and features of the present application, and the purpose is to enable those skilled in the art to understand the content of the present application and to implement it accordingly, and cannot limit the protection scope of the present application. Any equivalent changes and modifications made within the scope of the claims of the present application shall be included in the scope of the claims of the present application.

Claims

1. An accident procedure criterion determination method characterized by comprising: The method comprises the following steps: determining whether an activation signal of an upstream output is received; if yes, determining whether to enter an activation state according to the activation signal; if yes, receiving an input signal; performing a logical calculation according to the input signal to obtain a logical calculation result; the logical calculation result comprises a first calculation result and an Nth calculation result; N is an integer greater than or equal to 2; the first calculation result is a reference result; if the logical calculation result is the first calculation result, a judgment result is output according to the first calculation result, and the first calculation result is maintained as the reference result; if the logical calculation result is the Nth calculation result, the logical calculation result is compared with the reference result, and a judgment result is output according to a comparison result.

2. The method of claim 1, wherein, The method further comprises: if it is determined according to the activation signal that the activation state is not entered, an inactivation state is maintained.

3. The method of claim 1, wherein, The comparison of the logical calculation result with the reference result and the output of the judgment result according to the comparison result comprise: comparing the logical calculation result with the reference result; outputting the judgment result in a color change mode according to the comparison result.

4. The method of claim 3, wherein, The output of the judgment result in the color change mode according to the comparison result comprises: if the logical calculation result is consistent with the reference result, a figure of a hand automatic criterion module is filled with green; if the logical calculation result is not consistent with the reference result, the figure of the hand automatic criterion module is filled with yellow.

5. The method of claim 4, wherein, The method further comprises: after the figure of the hand automatic criterion module is filled with yellow, it is determined whether a hand selection instruction input by an operator is received; if yes, a figure of a hand criterion module is filled with blue according to the hand selection instruction.

6. The method of claim 1, wherein, The method further comprises: after the input signal is received, it is determined whether the input signal is abnormal; if the input signal is abnormal, an outer frame of the figure of the hand automatic criterion module is switched to red.

7. The method of claim 4-6, wherein the method further comprises: The figure of the hand automatic criterion module is displayed by variable length and / or variable width.

8. The method of claim 1, wherein, The method further comprises: after the hand criterion module enters the activation state, it is determined whether a hand selection instruction input by an operator is received; if yes, the figure of the hand criterion module is filled with blue according to the hand selection instruction.

9. The method of claim 8, wherein, The figure of the hand criterion module is displayed by variable length and / or variable width.

10. An accident procedure criterion judging device for use in the accident procedure criterion judging method according to any one of claims 1 to 9, characterized by The method comprises: a hand automatic criterion module and a hand criterion module; the hand automatic criterion module performs the following steps in an accident procedure execution process: determining whether an activation signal of an upstream output is received; if yes, determining whether to enter an activation state according to the activation signal; if yes, receiving an input signal; performing a logical calculation according to the input signal to obtain a logical calculation result; the logical calculation result comprises a first calculation result and an Nth calculation result; N is an integer greater than or equal to 2; the first calculation result is the reference result; if the logical calculation result is the first calculation result, a judgment result is output according to the first calculation result, and the first calculation result is maintained as the reference result; If the logic calculation result is the Nth calculation result, the logic calculation result is compared with a reference result, and a judgment result is output according to the comparison result; The manual criterion module performs the following steps during the accident procedure execution process: After entering the active state, it is judged whether a manual selection instruction input by the operator is received; If yes, the icon of the manual criterion module is filled with blue according to the manual selection instruction.

11. The accident procedure criterion judging apparatus according to claim 10, characterized by The icon of the manual criterion module is a variable-length and / or variable-width icon.

12. The accident procedure criterion judging apparatus according to claim 10, characterized by The manual criterion module is provided with an identification tag for identifying the manual criterion module.

13. The accident procedure criterion judging apparatus according to claim 10, characterized by Further comprising: A manual selection control; the manual selection control is used for receiving a manual selection instruction input by the operator; The manual selection control comprises: a control with a true judgment result and a control with a false judgment result; The manual selection control is displayed when the manual criterion module or the manual-automatic criterion module receives a trigger operation signal of the operator.

14. The accident protocol criterion determination apparatus according to claim 13, characterized by The manual-automatic criterion module comprises: a criterion operation unit and a logic calculation unit; The criterion operation unit is used for performing criterion operation according to the input signal and outputting a logic calculation result; The logic calculation unit is connected with the criterion operation unit, and is used for performing logic operation according to the logic calculation result and outputting a judgment result.

15. The accident protocol criterion determination apparatus according to claim 14, characterized by The logic calculation unit comprises: a first AND gate, a second AND gate, a third AND gate, a fourth AND gate, a fifth AND gate, a sixth AND gate, a seventh AND gate, a first OR gate, a second OR gate, a third OR gate, a fourth OR gate, a fifth OR gate, a first RS flip-flop, a second RS flip-flop and a NOT gate; The first input end of the first AND gate is connected with the first output end of the subsequent calculation result of the criterion operation unit, the second input end of the first AND gate is connected with the output end of the first RS flip-flop, the output end of the first AND gate is connected with the first input end of the first OR gate, the first input end of the second AND gate is connected with the second output end of the subsequent calculation result of the criterion operation unit, the second input end of the second AND gate is connected with the output end of the second RS flip-flop, the output end of the second AND gate is connected with the second input end of the first OR gate, the first output end of the first OR gate is connected with the third AND gate, and the second output end of the first OR gate is connected with the fourth AND gate; The first input end of the second OR gate is connected with the first output end of the manual selection control, the second input end of the second OR gate is connected with the third output end of the manual selection control, the output end of the second OR gate is connected with the second input end of the second RS flip-flop, the first input end of the third OR gate is connected with the third output end of the manual selection control, the second input end of the third OR gate is connected with the second output end of the manual selection control, and the output end of the third OR gate is connected with the second input end of the first RS flip-flop; The first input end of the first RS flip-flop is connected to the first output end of the first calculation result of the criterion operation unit, the output end of the first RS flip-flop is connected to the first input end of the fourth OR gate and the second input end of the first AND gate respectively, the first input end of the second RS flip-flop is connected to the second output end of the first calculation result of the criterion operation unit, the output end of the second RS flip-flop is connected to the first input end of the fifth OR gate and the second input end of the second AND gate respectively, the second input end of the fourth OR gate is connected to the first output end of the manual selection control, the output end of the fourth OR gate is connected to the second input end of the sixth AND gate, the second input end of the fifth OR gate is connected to the second output end of the manual selection control, the output end of the fifth OR gate is connected to the second input end of the seventh AND gate, the first input end of the sixth AND gate and the first input end of the seventh AND gate are connected to an activation signal. The third output end of the manual selection control is also connected to the fifth AND gate, the third AND gate, the fourth AND gate and the NOT gate respectively, and the third AND gate, the fourth AND gate, the fifth AND gate and the NOT gate are also connected to the activation signal.

16. A storage medium, characterized by The storage medium stores a computer program, and the computer program is suitable for being loaded by the processor to execute the steps of the accident procedure criterion judgment method according to any one of claims 1 to 9.

17. A terminal, characterized by The device comprises a memory and a processor, the memory stores a computer program, and the processor executes the steps of the accident procedure criterion judgment method according to any one of claims 1 to 9 by calling the computer program stored in the memory.

Citation Information

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