CN116316355A - Cabin-based self-adaptive wiring system - Google Patents

Cabin-based self-adaptive wiring system Download PDF

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Publication number
CN116316355A
CN116316355A CN202310397730.9A CN202310397730A CN116316355A CN 116316355 A CN116316355 A CN 116316355A CN 202310397730 A CN202310397730 A CN 202310397730A CN 116316355 A CN116316355 A CN 116316355A
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CN
China
Prior art keywords
cabin
wiring
lines
unit
adaptive
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Pending
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CN202310397730.9A
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Chinese (zh)
Inventor
崔艳
顾雅娟
王云辉
房向前
陈燕
肖红凡
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Shanghai Institute Of Specifications China Classification Society
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Shanghai Institute Of Specifications China Classification Society
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Priority to CN202310397730.9A priority Critical patent/CN116316355A/en
Publication of CN116316355A publication Critical patent/CN116316355A/en
Pending legal-status Critical Current

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    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02GINSTALLATION OF ELECTRIC CABLES OR LINES, OR OF COMBINED OPTICAL AND ELECTRIC CABLES OR LINES
    • H02G3/00Installations of electric cables or lines or protective tubing therefor in or on buildings, equivalent structures or vehicles
    • H02G3/30Installations of cables or lines on walls, floors or ceilings
    • H02G3/34Installations of cables or lines on walls, floors or ceilings using separate protective tubing
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02GINSTALLATION OF ELECTRIC CABLES OR LINES, OR OF COMBINED OPTICAL AND ELECTRIC CABLES OR LINES
    • H02G1/00Methods or apparatus specially adapted for installing, maintaining, repairing or dismantling electric cables or lines
    • H02G1/06Methods or apparatus specially adapted for installing, maintaining, repairing or dismantling electric cables or lines for laying cables, e.g. laying apparatus on vehicle
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02GINSTALLATION OF ELECTRIC CABLES OR LINES, OR OF COMBINED OPTICAL AND ELECTRIC CABLES OR LINES
    • H02G3/00Installations of electric cables or lines or protective tubing therefor in or on buildings, equivalent structures or vehicles
    • H02G3/36Installations of cables or lines in walls, floors or ceilings
    • H02G3/38Installations of cables or lines in walls, floors or ceilings the cables or lines being installed in preestablished conduits or ducts

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Testing Of Short-Circuits, Discontinuities, Leakage, Or Incorrect Line Connections (AREA)

Abstract

The invention discloses a cabin-based self-adaptive wiring system, which relates to the technical field of cabin wiring, solves the technical problem that an original wiring mode consumes a large amount of manpower, simultaneously, when the whole ship body is wired, the technical problem that the workload is too huge is solved, the construction point adjacent to an initial point is acquired, the nearest construction point is positioned on the same plane, the corresponding wiring is directly confirmed, if the construction point is not positioned on the same plane, the construction point is matched with a cabin model, a right-angled triangle is constructed, two right-angle sides of the right-angled triangle are used as the wiring, the self-adaptive wiring master diagram is sequentially generated by connecting lines according to the confirmed plurality of groups of wiring lines, and the self-adaptive wiring master diagram is displayed by a display unit.

Description

Cabin-based self-adaptive wiring system
Technical Field
The invention belongs to the technical field of cabin wiring, and particularly relates to a cabin-based self-adaptive wiring system.
Background
The ship cabin refers to various spaces below the deck, including a ship's hold, a ship's tail hold, a cargo hold, a machine cabin, a boiler cabin, and the like.
The invention discloses a patent publication No. CN108736410A, which relates to an indoor weak current intelligent system comprehensive wiring system. The system comprises a weak current control box; a field safety alarm system; a field personnel attendance system; a field communication system; the field safety alarm system, the field personnel attendance system and the field communication system are respectively connected with the weak current control box through weak electric cables; the weak electric cable comprises a plurality of ground wires; and a plurality of plates connected with the foundation lines; the weak current transmission line in the panel and the weak current transmission line in the baseboard are electrically connected, the weak current control box is connected with the weak current transmission line in the baseboard, the field safety alarm system, the field personnel attendance system and the field communication system are respectively connected with the weak current transmission line in the panel.
In the cabin, a corresponding wiring mode is needed to carry out wiring treatment on the cabin, but in a specific wiring process, an external appointed person is needed to carry out measurement, a corresponding wiring diagram is drawn according to a measurement result, a subsequent constructor arranges a power transmission line according to the wiring diagram, a great amount of manpower is consumed in the mode, and meanwhile, when the whole ship body is wired, the workload is excessively great.
Disclosure of Invention
The present invention aims to solve at least one of the technical problems existing in the prior art; therefore, the invention provides a cabin-based self-adaptive wiring system, which is used for solving the technical problems that an original wiring mode consumes a great deal of manpower and the workload is too huge when the whole ship body is wired.
To achieve the above object, an embodiment according to a first aspect of the present invention proposes a cabin-based adaptive wiring system including a parameter acquisition terminal and a wiring analysis center;
the wiring analysis center comprises a model construction unit, a storage unit, a bus confirmation unit, an adaptive wiring unit, a display unit, a line analysis unit and a line adjustment unit;
the parameter acquisition end is used for acquiring internal parameters of a plurality of different cabins and transmitting the acquired internal parameters into the model construction unit, wherein the internal parameters comprise size parameters and arrangement parameters of the cabins;
the model construction unit is used for receiving the acquired internal parameters of the cabins, constructing cabin models of a plurality of cabins according to the received internal parameters, integrating the cabin models according to the arrangement parameters to obtain an integral model, and transmitting the integral model into the bus confirmation unit and the storage unit for storage;
the bus confirming unit confirms buses of different cabins according to the established overall model, confirms circuit routing initial points in advance, and sequentially arranges the bus directions of the different cabins, and specifically comprises the following steps:
confirming the initial cabin according to the determined initial starting point of the circuit trend, wherein the confirmed initial cabin is nearest to the initial starting point of the trend;
determining upper and lower cabins of the initial cabins, and gradually and uniformly arranging buses upwards and downwards until adjacent cabins are not present on the bottom layer or the top layer;
the left cabin and the right cabin of the bottom cabin or the top cabin are confirmed, wiring is sequentially carried out downwards or upwards, bus arrangement processing of a plurality of cabin models of the whole model is completed, bus arrangement diagram is generated, and the bus arrangement diagram is transmitted into a display unit for display;
the self-adaptive wiring unit performs self-adaptive wiring treatment on the inner space of the cabin according to different cabin models in the whole model and the established construction point positions in the cabin model, and transmits the constructed self-adaptive wiring diagram to the display unit and the line analysis unit, and the specific mode is as follows:
s1, sequentially extracting cabin models from the whole models, determining bus arrangement points in the extracted cabin models from bus arrangement diagrams, and calibrating the bus arrangement points as initial points;
s2, marking the construction points determined in the cabin model in sequence, marking a group of construction points closest to the initial point as to-be-connected points;
s3, analyzing whether the bus arrangement point and the point to be connected are located on the same plane, if so, directly connecting the bus arrangement point and the point to be connected, and marking the connecting line as an arrangement line;
s4, if the two groups of vertical side lines are not located on the same plane, the connected line is marked as an inclined line to be marked, a right triangle is constructed according to the inclined line to be marked as an inclined line of the right triangle, two groups of vertical side lines of the right triangle are determined, the two groups of vertical side lines are matched into the cabin model, and the two groups of vertical side lines are marked as arrangement lines;
s5, marking the marked point to be connected as an initial point, repeating the steps S2-S4 to obtain a plurality of groups of wiring lines, constructing an adaptive wiring total diagram of the cabin model according to the plurality of groups of wiring lines after finishing, and transmitting the constructed adaptive wiring total diagram into a display unit and a line analysis unit;
the line analysis unit is used for carrying out line analysis on the built self-adaptive wiring total diagram, judging whether a plurality of groups of arrangement lines in the self-adaptive wiring total diagram have crossing conditions, marking the arrangement lines with the crossing conditions as abnormal lines, and transmitting the marked self-adaptive wiring total diagram into the line adjustment unit, wherein the specific mode is as follows:
extracting an adaptive wiring total diagram corresponding to the cabin model, determining crossing lines from the extracted adaptive wiring total diagram, marking the determined crossing lines as abnormal lines, and marking the abnormal lines by adopting red;
transmitting the self-adaptive wiring general diagram after the marking processing into a line adjusting unit;
the line adjusting unit is used for receiving the self-adaptive wiring total graph subjected to marking processing, adjusting the line, and transmitting the self-adaptive wiring total graph subjected to line adjustment into the display unit for display, and the specific mode is as follows:
determining mutually crossed abnormal lines from the self-adaptive wiring total graph, determining construction points connected with the abnormal lines, marking the construction points of a first group of abnormal lines as G1 and G2, marking the construction points of a second group of abnormal lines as J1 and J2, acquiring distance parameters of the construction points G1, J1 and J2, acquiring the distance parameters of the construction points G2, J1 and J2, and extracting the minimum value from the four groups of distance parameters;
deleting any one group of abnormal lines in the original crossed abnormal lines according to the minimum value, carrying out connection processing on the two groups of construction points according to the two groups of construction points corresponding to the minimum value, if three groups and multiple groups of crossed abnormal lines exist, processing the two groups of abnormal lines in advance, processing the subsequent abnormal lines, and trimming the crossed abnormal lines;
and transmitting the trimmed self-adaptive wiring general diagram into a display unit for an external operator to check.
Compared with the prior art, the invention has the beneficial effects that:
the method comprises the steps of obtaining the nearest construction point adjacent to an initial point, analyzing whether the construction point is on the same plane, directly confirming the corresponding wiring lines if the construction point is on the same plane, matching with a cabin model if the construction point is not on the same plane, constructing a right triangle, taking the wiring lines as oblique lines of the right triangle, taking two groups of right angle sides of the right triangle as the wiring lines, sequentially connecting lines according to the confirmed groups of wiring lines, generating a self-adaptive wiring general diagram, displaying through a display unit, adopting the mode, carrying out self-adaptive wiring on different cabins, avoiding manual intervention, subsequently processing crossed abnormal lines, avoiding line crossing, simultaneously adjusting the abnormal lines through the nearest points adjacent to the abnormal lines, adjusting line arrangement, saving the lines, and improving the self-adaptive wiring treatment of the whole cabin.
Drawings
Fig. 1 is a schematic diagram of a principle frame of the present invention.
Detailed Description
The technical solutions of the present invention will be clearly and completely described in connection with the embodiments, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the invention without making any inventive effort, are intended to be within the scope of the invention.
Referring to fig. 1, the application provides a cabin-based adaptive wiring system, which comprises a parameter acquisition end and a wiring analysis center, wherein the parameter acquisition end is electrically connected with an input end of the wiring analysis center;
the wiring analysis center comprises a model building unit, a storage unit, a bus confirmation unit, an adaptive wiring unit, a display unit, a line analysis unit and a line adjustment unit, wherein the model building unit is in bidirectional connection with the storage unit, the model building unit is electrically connected with the input end of the bus confirmation unit, the bus confirmation unit is electrically connected with the input end of the adaptive wiring unit, the adaptive wiring unit is electrically connected with the input end of the line analysis unit, the line analysis unit is electrically connected with the input end of the line adjustment unit, and the adaptive wiring unit and the line adjustment unit are electrically connected with the input end of the display unit;
the parameter acquisition end is used for acquiring internal parameters of a plurality of different cabins and transmitting the acquired internal parameters into the model construction unit, wherein the internal parameters comprise size parameters and arrangement parameters of the cabins;
the model construction unit is used for receiving the acquired internal parameters of the cabins, constructing cabin models of a plurality of cabins according to the received internal parameters, integrating the cabin models according to the arrangement parameters to obtain an integral model, transmitting the integral model into the bus confirmation unit and the storage unit for storage, and directly extracting the integral model from the storage unit when the cabins with the same number are constructed;
the bus confirming unit confirms buses of different cabins according to the established overall model, confirms circuit routing initial points in advance, and sequentially arranges the bus directions of the different cabins, wherein the specific mode of arranging is as follows:
confirming the initial cabin according to the determined initial starting point of the circuit trend, wherein the confirmed initial cabin is nearest to the initial starting point of the trend;
determining upper and lower cabins of the initial cabins, and gradually and uniformly arranging buses upwards and downwards until adjacent cabins are not present on the bottom layer or the top layer;
and then, confirming the left and right cabins of the bottom cabin or the top cabin, and then sequentially wiring downwards or upwards to complete bus arrangement processing of a plurality of cabin models of the whole model, generate a bus arrangement diagram and transmit the bus arrangement diagram into the display unit for display.
And combining with the analysis of the actual application scene, confirming the initial cabin according to the confirmed initial point of the circuit wiring, confirming the upper and lower adjacent cabins of the initial cabin according to the confirmed initial cabin, starting from the initial cabin, moving the wiring upwards or downwards until the corresponding cabins do not exist up and down, confirming the cabins on the left side and the right side, moving the wiring again, sequentially confirming the upper and lower cabins according to the confirmed left and right cabins, completing the circuit wiring of the upper and lower cabins, sequentially confirming the bus arrangement of a plurality of cabin models, and generating a bus arrangement diagram.
The self-adaptive wiring unit performs self-adaptive wiring treatment on the inner space of the cabin according to different cabin models in the overall model and the established construction point positions in the cabin model, and transmits the constructed self-adaptive wiring diagram to the display unit and the line analysis unit, wherein the specific mode for performing the self-adaptive wiring treatment is as follows:
s1, sequentially extracting cabin models from the whole models, determining bus arrangement points in the extracted cabin models from bus arrangement diagrams, and calibrating the bus arrangement points as initial points;
s2, sequentially marking the construction points determined in the cabin model, wherein the construction points are points requiring power in the cabin, such as power of a switch, a socket and the like, a group of construction points closest to an initial point are marked as to-be-connected points;
s3, analyzing whether the bus arrangement point and the point to be connected are located on the same plane, if so, directly connecting the bus arrangement point and the point to be connected, and marking the connecting line as an arrangement line;
s4, if the two groups of vertical side lines are not located on the same plane, the connected line is marked as an inclined line to be marked, a right triangle is constructed according to the inclined line to be marked as an inclined line of the right triangle, two groups of vertical side lines of the right triangle are determined, the two groups of vertical side lines are matched into the cabin model, and the two groups of vertical side lines are marked as arrangement lines;
s5, marking the marked point to be connected as an initial point, repeating the steps S2-S4 to obtain a plurality of groups of wiring lines, constructing an adaptive wiring total diagram of the cabin model according to the plurality of groups of wiring lines after the completion, and transmitting the constructed adaptive wiring total diagram into the display unit and the line analysis unit.
Determining bus arrangement points in the confirmed cabin model by combining with actual application scene analysis, marking the bus arrangement points as initial points, and then confirming construction points in the cabin model;
the method comprises the steps of obtaining the nearest construction point adjacent to an initial point, analyzing whether the construction point is on the same plane, directly confirming the corresponding wiring lines if the construction point is on the same plane, matching with a cabin model if the construction point is not on the same plane, constructing a right triangle, taking the wiring lines as oblique lines of the right triangle, taking two groups of right angle sides of the right triangle as the wiring lines, sequentially connecting lines according to the confirmed groups of wiring lines, generating a self-adaptive wiring general diagram, displaying through a display unit, adopting the mode, carrying out self-adaptive wiring on different cabins, avoiding manual intervention, subsequently processing crossed abnormal lines, avoiding line crossing, simultaneously adjusting the abnormal lines through the nearest points adjacent to the abnormal lines, adjusting line arrangement, saving the lines, and improving the self-adaptive wiring treatment of the whole cabin.
The line analysis unit is used for carrying out line analysis on the built self-adaptive wiring total diagram, judging whether a plurality of groups of arrangement lines in the self-adaptive wiring total diagram have crossing conditions, marking the arrangement lines with the crossing conditions as abnormal lines, and transmitting the marked self-adaptive wiring total diagram into the line adjustment unit, wherein the specific mode for carrying out line analysis is as follows:
extracting an adaptive wiring total diagram corresponding to the cabin model, determining crossing lines from the extracted adaptive wiring total diagram, marking the determined crossing lines as abnormal lines, and marking the abnormal lines by adopting red;
and transmitting the self-adaptive wiring general diagram after the marking processing into a line adjusting unit.
The line adjusting unit is used for receiving the self-adaptive wiring total diagram of the marking process, adjusting the line, and transmitting the self-adaptive wiring total diagram after the line adjustment into the display unit for display, wherein the specific mode for the line adjustment is as follows:
determining mutually crossed abnormal lines from the self-adaptive wiring total graph, determining construction points connected with the abnormal lines, marking the construction points of a first group of abnormal lines as G1 and G2, marking the construction points of a second group of abnormal lines as J1 and J2, acquiring distance parameters of the construction points G1, J1 and J2, acquiring the distance parameters of the construction points G2, J1 and J2, and extracting the minimum value from the four groups of distance parameters;
deleting any one group of abnormal lines in the original crossed abnormal lines according to the minimum value, carrying out connection processing on the two groups of construction points according to the two groups of construction points corresponding to the minimum value, if three groups and multiple groups of crossed abnormal lines exist, carrying out processing on the two groups of abnormal lines in advance, carrying out gradual processing on the two groups of abnormal lines, and finishing the crossed abnormal lines;
and transmitting the trimmed self-adaptive wiring general diagram into a display unit for an external operator to check, and if the operator has confusion, the self-adaptive wiring general diagram can be adjusted by the operator.
The partial data in the formula are all obtained by removing dimension and taking the numerical value for calculation, and the formula is a formula closest to the real situation obtained by simulating a large amount of collected data through software; the preset parameters and the preset threshold values in the formula are set by those skilled in the art according to actual conditions or are obtained through mass data simulation.
The working principle of the invention is as follows: confirming an initial cabin according to the confirmed initial point of the circuit wiring, confirming the upper and lower adjacent cabins of the initial cabin according to the confirmed initial cabin, starting from the initial cabin, moving the wiring upwards or downwards until the corresponding cabins do not exist, confirming the cabins at the left side and the right side, moving the wiring again, and then confirming the upper and lower cabins according to the confirmed left and right cabins, so as to finish the circuit wiring of the upper and lower cabins;
the method comprises the steps of obtaining the nearest construction point adjacent to an initial point, analyzing whether the construction point is on the same plane, directly confirming the corresponding wiring lines if the construction point is on the same plane, matching with a cabin model if the construction point is not on the same plane, constructing a right triangle, taking the wiring lines as oblique lines of the right triangle, taking two groups of right angle sides of the right triangle as the wiring lines, sequentially connecting lines according to the confirmed groups of wiring lines, generating a self-adaptive wiring general diagram, displaying through a display unit, adopting the mode, carrying out self-adaptive wiring on different cabins, avoiding manual intervention, subsequently processing crossed abnormal lines, avoiding line crossing, simultaneously adjusting the abnormal lines through the nearest points adjacent to the abnormal lines, adjusting line arrangement, saving the lines, and improving the self-adaptive wiring treatment of the whole cabin.
The above embodiments are only for illustrating the technical method of the present invention and not for limiting the same, and it should be understood by those skilled in the art that the technical method of the present invention may be modified or substituted without departing from the spirit and scope of the technical method of the present invention.

Claims (5)

1. The self-adaptive wiring system based on the cabin is characterized by comprising a parameter acquisition end and a wiring analysis center;
the wiring analysis center comprises a model construction unit, a storage unit, a bus confirmation unit, an adaptive wiring unit, a display unit, a line analysis unit and a line adjustment unit;
the parameter acquisition end is used for acquiring internal parameters of a plurality of different cabins and transmitting the acquired internal parameters into the model construction unit, wherein the internal parameters comprise size parameters and arrangement parameters of the cabins;
the model construction unit is used for receiving the acquired internal parameters of the cabins, constructing cabin models of a plurality of cabins according to the received internal parameters, integrating the cabin models according to the arrangement parameters to obtain an integral model, and transmitting the integral model into the bus confirmation unit and the storage unit for storage;
the bus confirming unit confirms buses of different cabins according to the established overall model, confirms circuit routing initial points in advance, and sequentially arranges the bus directions of the different cabins;
the self-adaptive wiring unit is used for carrying out self-adaptive wiring treatment on the internal space of the cabin according to different cabin models in the overall model and the established construction point positions in the cabin model, and transmitting the constructed self-adaptive wiring diagram into the display unit and the circuit analysis unit;
the line analysis unit is used for carrying out line analysis on the built self-adaptive wiring total diagram, judging whether a plurality of groups of arrangement lines in the self-adaptive wiring total diagram have crossing conditions, marking the arrangement lines with the crossing conditions as abnormal lines, and transmitting the marked self-adaptive wiring total diagram into the line adjustment unit;
the line adjusting unit is used for receiving the self-adaptive wiring total diagram subjected to marking processing, adjusting the line, and transmitting the self-adaptive wiring total diagram subjected to line adjustment to the display unit for display.
2. The cabin-based adaptive wiring system of claim 1, wherein the bus validation unit is configured to route bus trends of different cabins in the following specific manner:
confirming the initial cabin according to the determined initial starting point of the circuit trend, wherein the confirmed initial cabin is nearest to the initial starting point of the trend;
determining upper and lower cabins of the initial cabins, and gradually and uniformly arranging buses upwards and downwards until adjacent cabins are not present on the bottom layer or the top layer;
and then, confirming the left and right cabins of the bottom cabin or the top cabin, and then sequentially wiring downwards or upwards to complete bus arrangement processing of a plurality of cabin models of the whole model, generate a bus arrangement diagram and transmit the bus arrangement diagram into the display unit for display.
3. The cabin-based adaptive wiring system according to claim 2, wherein the adaptive wiring unit performs the adaptive wiring process on the internal space of the cabin in the following specific manner:
s1, sequentially extracting cabin models from the whole models, determining bus arrangement points in the extracted cabin models from bus arrangement diagrams, and calibrating the bus arrangement points as initial points;
s2, marking the construction points determined in the cabin model in sequence, marking a group of construction points closest to the initial point as to-be-connected points;
s3, analyzing whether the bus arrangement point and the point to be connected are located on the same plane, if so, directly connecting the bus arrangement point and the point to be connected, and marking the connecting line as an arrangement line;
s4, if the two groups of vertical side lines are not located on the same plane, the connected line is marked as an inclined line to be marked, a right triangle is constructed according to the inclined line to be marked as an inclined line of the right triangle, two groups of vertical side lines of the right triangle are determined, the two groups of vertical side lines are matched into the cabin model, and the two groups of vertical side lines are marked as arrangement lines;
s5, marking the marked point to be connected as an initial point, repeating the steps S2-S4 to obtain a plurality of groups of wiring lines, constructing an adaptive wiring total diagram of the cabin model according to the plurality of groups of wiring lines after the completion, and transmitting the constructed adaptive wiring total diagram into the display unit and the line analysis unit.
4. The cabin-based adaptive wiring system according to claim 3, wherein the line analysis unit performs line analysis on the built adaptive wiring total map in the following specific manner:
extracting an adaptive wiring total diagram corresponding to the cabin model, determining crossing lines from the extracted adaptive wiring total diagram, marking the determined crossing lines as abnormal lines, and marking the abnormal lines by adopting red;
and transmitting the self-adaptive wiring general diagram after the marking processing into a line adjusting unit.
5. The adaptive wiring system based on the cabin according to claim 4, wherein the line adjusting unit performs the line adjustment in the following specific manner:
determining mutually crossed abnormal lines from the self-adaptive wiring total graph, determining construction points connected with the abnormal lines, marking the construction points of a first group of abnormal lines as G1 and G2, marking the construction points of a second group of abnormal lines as J1 and J2, acquiring distance parameters of the construction points G1, J1 and J2, acquiring the distance parameters of the construction points G2, J1 and J2, and extracting the minimum value from the four groups of distance parameters;
deleting any one group of abnormal lines in the original crossed abnormal lines according to the minimum value, carrying out connection processing on the two groups of construction points according to the two groups of construction points corresponding to the minimum value, if three groups and multiple groups of crossed abnormal lines exist, processing the two groups of abnormal lines in advance, processing the subsequent abnormal lines, and trimming the crossed abnormal lines;
and transmitting the trimmed self-adaptive wiring general diagram into a display unit for an external operator to check.
CN202310397730.9A 2023-04-14 2023-04-14 Cabin-based self-adaptive wiring system Pending CN116316355A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202310397730.9A CN116316355A (en) 2023-04-14 2023-04-14 Cabin-based self-adaptive wiring system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202310397730.9A CN116316355A (en) 2023-04-14 2023-04-14 Cabin-based self-adaptive wiring system

Publications (1)

Publication Number Publication Date
CN116316355A true CN116316355A (en) 2023-06-23

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ID=86779967

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202310397730.9A Pending CN116316355A (en) 2023-04-14 2023-04-14 Cabin-based self-adaptive wiring system

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CN (1) CN116316355A (en)

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