Aircraft cleaning management system

文档序号:1036054 发布日期:2020-10-30 浏览:21次 中文

阅读说明:本技术 一种航空器清洁管理系统 (Aircraft cleaning management system ) 是由 徐强清 于 2020-07-10 设计创作,主要内容包括:本发明涉及航空器清洁技术领域,公开了一种航空器清洁管理系统,包括:控制端、清洁端、检查端、航空器、图像数据库以及处理端,控制端用于生成清洁任务以及检查任务,处理端,连接于图像数据库,并配置有图像比对模块;处理端接收到待比对图像信息时,根据对应的检查定位信号从图像数据库中筛选对应的基准图像信息,图像比对模块配置有第一比对策略,第一比对策略包括第一比对阈值,第一比对策略计算待比对图像信息和基准图像信息的图像相似值,当所述图像相似值大于比第一对阈值时,输出比对通过的比对结果,当图像相似值小于比第一对阈值时,输出比对不通过的比对结果,并将该比对结果发送至清洁端。(The invention relates to the technical field of aircraft cleaning, and discloses an aircraft cleaning management system, which comprises: the system comprises a control end, a cleaning end, an inspection end, an aircraft, an image database and a processing end, wherein the control end is used for generating a cleaning task and an inspection task, and the processing end is connected with the image database and is provided with an image comparison module; when the processing end receives the image information to be compared, corresponding reference image information is screened from the image database according to the corresponding checking and positioning signals, the image comparison module is configured with a first comparison strategy, the first comparison strategy comprises a first comparison threshold, the first comparison strategy calculates an image similarity value of the image information to be compared and the reference image information, when the image similarity value is larger than the first comparison threshold, a comparison result which is passed through the comparison is output, when the image similarity value is smaller than the first comparison threshold, a comparison result which is not passed through the comparison is output, and the comparison result is sent to the cleaning end.)

1. An aircraft cleaning management system, characterized by:

the method comprises the following steps:

the control end is used for generating a cleaning task and an inspection task, wherein the cleaning task is associated with a cleaning item, and the inspection task is associated with an inspection item;

the cleaning end is used for receiving a cleaning task and generating a cleaning request according to a cleaning project related to the cleaning task;

the inspection terminal is used for receiving the inspection task and generating an inspection request according to the inspection items related to the inspection task; the inspection end is also provided with an image acquisition device, and the image acquisition device is used for generating image information to be compared;

The system comprises an aircraft, a plurality of cleaning areas are defined in the aircraft, a positioning device is installed in each cleaning area, a positioning response module is configured on each positioning device, the positioning response module responds to a cleaning end and an inspection end, the positioning response module is used for receiving a cleaning request, generating a cleaning positioning signal and sending the cleaning positioning signal to a control end, the control end generates an inspection task according to the cleaning positioning signal and sends the inspection task to the inspection end, the inspection end generates an inspection request according to an inspection item related to the inspection task, and the positioning response module receives the inspection request and generates an inspection positioning signal;

the image database is preset with reference image information and an examination positioning signal corresponding to each reference image information corresponding to the cleaning area;

the processing end is connected with the image database and is provided with an image comparison module; when the processing end receives the image information to be compared, corresponding reference image information is screened from the image database according to a corresponding checking and positioning signal, the image comparison module is configured with a first comparison strategy, the first comparison strategy comprises a first comparison threshold, the first comparison strategy calculates an image similarity value of the image information to be compared and the reference image information, when the image similarity value is greater than the first comparison threshold, a comparison result which is passed through the comparison is output, when the image similarity value is smaller than the first comparison threshold, a comparison result which is not passed through the comparison is output, and the comparison result is sent to the cleaning end.

2. An aircraft cleaning management system according to claim 1, characterized in that: the processing end is provided with a feature identification module, the feature identification module can identify pixel points in image information to be compared, the feature identification module is provided with an identification strategy, the identification strategy comprises an identification threshold, and the identification strategy is provided with an identification step;

a first identification step: the identification strategy calculates the error value between the pixel point in the image information to be compared and the pixel point of the reference image information;

and a second identification step: the identification strategy screens pixel points corresponding to error values smaller than an identification threshold value as identification points, and generates the error area according to the identification points;

and a third identification step: and the error area determines an error image block from the image information to be compared, generates a compensation task according to the error image block, and sends the compensation task to a cleaning end.

3. An aircraft cleaning management system according to claim 2, characterized in that: the identification threshold values of the image information to be compared corresponding to different positioning devices are different.

4. An aircraft cleaning management system according to claim 3, wherein: and the identification threshold value of the image information to be compared is generated according to the cleaning positioning signal.

5. An aircraft cleaning management system according to claim 2, characterized in that: the image database also comprises a plurality of characteristic image blocks and characteristic classes corresponding to the characteristic image blocks, when the characteristic recognition module determines an error image block, the characteristic recognition module calls the characteristic image block closest to the error image block from the image database according to the error image block and sends the corresponding characteristic class to the cleaning end.

6. An aircraft cleaning management system according to claim 5, wherein: the image database is configured with a pattern block comparison module, the pattern block comparison module is configured with a second comparison strategy, the second comparison strategy comprises a second comparison threshold, the second comparison strategy calculates a pattern block similarity value of an error pattern block and a characteristic pattern block closest to the error pattern block, when the image similarity value is smaller than the second comparison threshold, a comparison result which is not passed through in comparison is output, the error pattern block is defined as an abnormal pattern block, and a characteristic class is newly established according to the abnormal pattern block and is stored in the image database in a correlation mode.

7. An aircraft cleaning management system according to claim 1, characterized in that: the processing end comprises a cleaning effect evaluation module, and the cleaning effect evaluation module is used for evaluating the cleaned cleaning area and storing the evaluation result.

Technical Field

The invention relates to the technical field of aircraft cleaning, in particular to an aircraft cleaning management system.

Background

An aircraft refers to an aircraft capable of controlled flight in the atmosphere, wherein an aircraft is a common aircraft, and as an important civil vehicle, the aircraft is polluted from the aspects of the ground, the sea, industrial waste gas and the like during the flight and the parking, and pollutants such as halogen salt, dust, oil stain, sand and the like are inevitably deposited on various parts of the exterior of the aircraft. In addition, to provide a good riding environment for passengers, there is also a need for thorough cleaning of the aircraft interior before aircraft take-off or after aircraft landing.

At present, a special cleaning worker is arranged at an airport to clean each part of an airplane, and an inspector is arranged to inspect the cleanness of the airplane, however, the work of the cleaning worker and the work of the inspector are carried out independently, and the cleaning worker and the inspector are lack of cooperation, so that the overall working efficiency is low.

Disclosure of Invention

The invention aims to provide an aircraft cleaning management system to overcome the problem of low efficiency of cleaning an aircraft in the prior art.

In order to achieve the above purpose, the basic scheme of the invention is as follows:

an aircraft cleaning management system comprising:

the control end is used for generating a cleaning task and an inspection task, wherein the cleaning task is associated with a cleaning item, and the inspection task is associated with an inspection item;

The cleaning end is used for receiving a cleaning task and generating a cleaning request according to a cleaning project related to the cleaning task;

the inspection terminal is used for receiving the inspection task and generating an inspection request according to the inspection items related to the inspection task; the inspection end is also provided with an image acquisition device, and the image acquisition device is used for generating image information to be compared;

the system comprises an aircraft, a plurality of cleaning areas are defined in the aircraft, a positioning device is installed in each cleaning area, a positioning response module is configured on each positioning device, the positioning response module responds to a cleaning end and an inspection end, the positioning response module is used for receiving a cleaning request, generating a cleaning positioning signal and sending the cleaning positioning signal to a control end, the control end generates an inspection task according to the cleaning positioning signal and sends the inspection task to the inspection end, the inspection end generates an inspection request according to an inspection item related to the inspection task, and the positioning response module receives the inspection request and generates an inspection positioning signal;

the image database is preset with reference image information and an examination positioning signal corresponding to each reference image information corresponding to the cleaning area;

the processing end is connected with the image database and is provided with an image comparison module; when the processing end receives the image information to be compared, corresponding reference image information is screened from the image database according to a corresponding checking and positioning signal, the image comparison module is configured with a first comparison strategy, the first comparison strategy comprises a first comparison threshold, the first comparison strategy calculates an image similarity value of the image information to be compared and the reference image information, when the image similarity value is greater than the first comparison threshold, a comparison result which is passed through the comparison is output, when the image similarity value is smaller than the first comparison threshold, a comparison result which is not passed through the comparison is output, and the comparison result is sent to the cleaning end.

Further, the processing end is configured with a feature identification module, the feature identification module can identify pixel points in the image information to be compared, the feature identification module is configured with an identification strategy, the identification strategy comprises an identification threshold, and the identification strategy is configured with an identification step;

a first identification step: the identification strategy calculates the error value between the pixel point in the image information to be compared and the pixel point of the reference image information;

and a second identification step: the identification strategy screens pixel points corresponding to error values smaller than an identification threshold value as identification points, and generates the error area according to the identification points;

and a third identification step: and the error area determines an error image block from the image information to be compared, generates a compensation task according to the error image block, and sends the compensation task to a cleaning end.

Furthermore, the identification threshold values of the image information to be compared corresponding to different positioning devices are different.

Further, the identification threshold of the image information to be compared is generated according to the cleaning positioning signal.

Further, the image database also comprises a plurality of characteristic image blocks and characteristic classes corresponding to the characteristic image blocks, when the characteristic recognition module determines an error image block, the characteristic recognition module calls the characteristic image block closest to the error image block from the image database according to the error image block and sends the corresponding characteristic class to the cleaning terminal.

Further, the image database is configured with a tile comparison module, the tile comparison module is configured with a second comparison strategy, the second comparison strategy comprises a second comparison threshold, the second comparison strategy calculates a tile similarity value between an error tile and a feature tile closest to the error tile, when the image similarity value is smaller than the second comparison threshold, a comparison result that comparison is not passed is output, the error tile is defined as an abnormal tile, a feature class is newly established according to the abnormal tile and is stored in the image database in a correlated manner.

Further, the processing end comprises a cleaning effect evaluation module, and the cleaning effect evaluation module is used for evaluating the cleaned cleaning area and storing the evaluation result.

Compared with the prior art, the scheme has the beneficial effects that:

1. the control end generates a cleaning task and sends the cleaning task to the cleaning end, the cleaning end configures the cleaning task and generates a cleaning request according to a cleaning project related to the cleaning task, the positioning response module receives the cleaning request and generates a cleaning positioning signal at the same time and sends the cleaning positioning signal to the control end, the control end generates an inspection task according to the cleaning positioning signal and sends the inspection task to the inspection end, the cleaning end and the inspection end are related to each other, and the overall working efficiency is improved.

2. The reference image information corresponding to each clean area of the aircraft is stored in an image database in a pre-input mode, so that the accuracy and reliability of the reference image information are guaranteed; the processing end receives the image information to be compared, screens corresponding reference image information from the image database according to corresponding checking and positioning signals, calculates image similarity values of the image information to be compared and the reference image information according to a comparison strategy in the image comparison module, and outputs a comparison result; the completion quality of cleaning tasks executed by the cleaning personnel can be obtained according to the comparison result, and the inspection accuracy is improved.

3. The method comprises the steps that a characteristic identification module configured at a processing end can identify pixel points in image information to be compared, an error image block is determined from the image information to be compared according to an identification strategy configured by the characteristic identification module, a compensation task is generated according to the error image block, and the compensation task is sent to a cleaning end; when error image blocks exist in the image information to be compared, the cleaning effect is not expected, a compensation task is generated through the error image blocks and is sent to the cleaning end, the cleaning work can be compensated according to the compensation task, and therefore the cleaning effect and the cleaning efficiency can be improved.

4. Calculating a block similarity value of the error block and a feature block closest to the error block by a second comparison strategy, outputting a comparison result which is not passed in comparison when the image similarity value is smaller than a second pair of threshold values, defining the error block as an abnormal block, establishing a feature class according to the abnormal block, and storing the feature class in an image database in a correlated manner; background staff can identify the abnormal image blocks through naked eyes and define the newly-built feature classes, so that the purpose of updating the feature classes in time is achieved.

Drawings

FIG. 1 is a system architecture diagram of the present invention;

FIG. 2 is a flow chart of cleaning management of the present invention;

FIG. 3 is a flow chart of feature identification of the present invention.

Reference numerals in the drawings of the specification include: the device comprises a control end 1, a cleaning end 2, a positioning device 3, an aircraft 4, an image acquisition device 5, an inspection end 6, a processing end 7 and an image database 8.

Detailed Description

The invention will be described in further detail by means of specific embodiments with reference to the accompanying drawings:

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