Operation control unit for electrical equipment

Through questionnaire surveys and multi-dimensional data analysis, we identified the convenience bottlenecks of the electrical operating system and made targeted adjustments to the operating procedures and interface design. This solved the problems of inaccurate user satisfaction assessments and cumbersome operations in the existing system, improved the convenience and reliability of the system, extended the life of the equipment, and enhanced the company's competitiveness.

CN120669581APending Publication Date: 2025-09-19SHANDONG RUIBANG ELECTRIC TECH CO LTD
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202510771151.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-10
Publication Date
2025-09-19

AI Technical Summary

Technical Problem

The existing electrical operating system lacks a systematic understanding of the satisfaction and needs of different groups within the enterprise. The operating procedures are cumbersome, the interface is not intuitive, the user learning cost is high, and there is a lack of effective operation guidance and prompts, resulting in inaccurate evaluation and low operating efficiency.

Method used

Through questionnaire surveys and multi-dimensional data analysis, we assess the group needs of electrical operating systems, identify convenience bottlenecks, and develop targeted adjustment strategies based on the bottleneck level, including simplifying operating processes, increasing intelligence, and redesigning the interface.

Benefits of technology

Accurately judge system applicability, improve operational convenience and reliability, reduce equipment failures, extend equipment life, and enhance user experience and corporate competitiveness.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120669581A_ABST
    Figure CN120669581A_ABST
Patent Text Reader

Abstract

The invention discloses an operation control unit for electrical equipment, and relates to the technical field of electrical equipment operation, questionnaire survey is carried out through an operation system group demand analysis module, and the questionnaire survey covers multiple aspects of contents and faces different post employees. And real opinions and demands of different groups in an enterprise on the electrical operation system can be comprehensively and deeply known. Therefore, whether the electrical operating system meets group requirements or not can be accurately judged, the situation that an enterprise evaluates the system applicability only by subjective assume or one-sided feedback is avoided, a reliable basis is provided for subsequent targeted improvement, data are collected from multiple dimensions of operating parameters and feedback parameters by means of an operating function convenience bottleneck analysis module, and the system adaptability is improved. And the convenience bottleneck evaluation value is obtained through the corresponding analysis model, so that the problem of each operation function in the aspect of convenience can be accurately found out, which functions are the key to be improved urgently is determined, and the improvement work is targeted.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of electrical equipment operation, and in particular to an electrical equipment operating control unit. Background Art

[0002] With the continuous improvement of industrial automation, electrical equipment plays an increasingly important role in corporate production processes. Enterprises' requirements for operating control units for electrical equipment are gradually shifting from simple functional implementation to a pursuit of operational convenience, efficiency, and high adaptability to user needs. Traditional electrical operating systems tend to focus on basic equipment control and monitoring functions, with less attention paid to human-machine interaction and operational experience. Therefore, there is a need for electrical devices that can serve as operating control units for electrical equipment.

[0003] Prior art, such as the invention application patent with publication number: CN117687728A, discloses an operating system optimization device and optimization method. The optimization device includes: an operation information acquisition module, configured to collect actual operation information; a demand library, configured to respectively obtain and process theoretical operation information and research information to obtain target theoretical operation information and target research information; a data warehouse, configured to process the actual operation information to obtain target actual operation information; a conversion module, configured to generate functional requirement information based on the target actual operation information, target theoretical operation information and target research information; a framework file generation module, configured to generate an information framework file based on the functional requirement information; an optimization module, configured to optimize the operating system based on the information framework file. This application can realize optimization iteration within the operating system based on actual operation information, meeting the user's demand for convenient operating of the operating system.

[0004] In response to the above-mentioned solution, the inventors of this application have found that the above-mentioned technology has at least the following technical problems: 1. The existing technology may lack a systematic and comprehensive way to understand the satisfaction and needs of different groups within the enterprise for the electrical operating system. It is often judged only through feedback from a few people or simple communication, which can easily lead to a one-sided understanding of the needs. It may only focus on the technical staff's views on the system functions, while ignoring the convenience needs of front-line operators in the actual operation process, or not considering the managers' expectations for the system monitoring and management functions. When evaluating whether the electrical operating system meets the needs of the group, the existing technology may rely more on subjective judgment, and does not conduct scientific evaluations through detailed questionnaire design, multi-dimensional content surveys and objective data statistics like the above-mentioned solution. This makes the company's evaluation of the system less accurate, and may overestimate or underestimate the system's applicability to users.

[0005] 2. The operating procedures of existing electrical operating systems may be relatively cumbersome. Calling operating functions may require multiple complex steps, such as searching for specific function options in a multi-level menu, which increases the time cost and error probability of user operation. For operating scenarios that require quick response, such as emergency troubleshooting, this complex process may lead to serious consequences. The operating interface may not be intuitive and user-friendly enough. The operating interface of some equipment may use a large amount of text and abstract icons, and does not fully utilize graphical and visual design concepts. This makes it difficult for users to understand the operating intentions and functional status, especially for new employees or people with non-technical backgrounds, and the learning cost is high. During the operation process, existing technologies rarely provide effective operating guidance and prompt information. When users encounter unfamiliar operations or errors in operations, they may not know how to solve them, which increases users' confusion and anxiety and is not conducive to improving work efficiency. Summary of the Invention

[0006] In view of the above technical deficiencies, an object of the present invention is to provide an operation control unit electrical device for electrical equipment.

[0007] In order to solve the above technical problems, the present invention adopts the following technical solutions: The present invention provides an operation control unit electrical equipment for electrical equipment, including: an operating system group demand analysis module: used to conduct a questionnaire survey on the satisfaction level corresponding to the target enterprise's electrical operating system, and to evaluate whether the target enterprise's electrical operating system meets group needs.

[0008] Operation function convenience bottleneck analysis module: used when the target enterprise's electrical operating system does not meet group needs, so as to analyze the convenience bottleneck corresponding to each operation function in the target enterprise's electrical operating system, and analyze the bottleneck level of the convenience of each operation function in the target enterprise's electrical operating system.

[0009] Operation function adjustment module: used to determine the bottleneck level according to the convenience of each operation function in the target enterprise's electrical operating system, and then adjust each operation function in the target enterprise's electrical operating system.

[0010] Preferably, a questionnaire survey is conducted on the satisfaction level of the target enterprise's electrical operating system. The specific survey process is as follows: A1. A questionnaire link is sent to respondents through the enterprise's internal network platform. The respondents cover employees from different departments and positions, including front-line operators, technicians and managers.

[0011] A2. The questionnaire includes basic identity information, electrical equipment operation experience, covering operation interface design, visual effects, operation response and operation process, functional module satisfaction involves equipment monitoring, fault diagnosis, data management and remote control, performance includes operating speed, energy consumption and stability, safety and reliability include safety protection, safety certification, security vulnerabilities and equipment reliability, training and support include training methods, training results, technical support and problem feedback, and score setting is set for each questionnaire content.

[0012] A3. Collect questionnaires within the specified time and set up automatic reminder function to urge respondents to fill out the questionnaires in time.

[0013] Preferably, the evaluation of whether the electrical operating system of the target enterprise meets the needs of the group is carried out in the following specific evaluation process: the scores of each respondent on all questionnaire content items are summarized to obtain the total score of each respondent, and the total score of each respondent is divided into different intervals, including excellent partitions and poor partitions, and the proportion of respondents in each interval is counted. If the proportion of respondents in the excellent partition reaches 80% or above, it means that the electrical operating system of the target enterprise meets the needs of the group. Conversely, if the proportion of respondents in the excellent partition does not reach 80%, it means that the electrical operating system of the target enterprise does not meet the needs of the group.

[0014] Preferably, the operation function convenience bottleneck analysis module further includes a convenience bottleneck data acquisition unit and a convenience bottleneck data analysis unit.

[0015] The convenience bottleneck data acquisition unit is used to obtain the operating parameters and feedback parameters corresponding to each operating function in the target enterprise's electrical operating system. The operating parameters include the average operation time, the function call path length and the error operation recovery time. The feedback parameters include the user help frequency, the question repetition rate and the function abandonment rate.

[0016] The convenience bottleneck data analysis unit is used to analyze the operation parameters and feedback parameters corresponding to each operation function in the electrical operating system of the target enterprise, and then obtain the operation evaluation value and feedback evaluation value corresponding to each operation function in the electrical operating system of the target enterprise.

[0017] Preferably, the analysis obtains the operation evaluation value and feedback evaluation value corresponding to each operation function in the electrical operating system of the target enterprise. The specific analysis process is as follows: B1. The average operation time, function call path length and error operation recovery time corresponding to each operation function in the electrical operating system of the target enterprise are input into the operation evaluation value analysis model, and the operation evaluation value corresponding to each operation function in the electrical operating system of the target enterprise is output.

[0018] B2. Input the user help request frequency, question repetition rate and function abandonment rate corresponding to each operating function in the target enterprise's electrical operating system into the feedback evaluation value analysis model, and output the feedback evaluation value corresponding to each operating function in the target enterprise's electrical operating system.

[0019] Preferably, the convenience bottleneck corresponding to each operating function in the electrical operating system of the target enterprise is analyzed, and the specific analysis process is as follows: C1. The operation evaluation value and feedback evaluation value corresponding to each operating function in the electrical operating system of the target enterprise are input into the convenience bottleneck evaluation value analysis model, and the convenience bottleneck evaluation value result corresponding to each operating function in the electrical operating system of the target enterprise is output.

[0020] C2. The convenience bottleneck evaluation value results include values ​​of 1 and -1. When the convenience bottleneck evaluation value result corresponding to each operating function in the target enterprise's electrical operating system is 1, it indicates that the convenience bottleneck corresponding to each operating function in the target enterprise's electrical operating system is high. Conversely, when the convenience bottleneck evaluation value result corresponding to each operating function in the target enterprise's electrical operating system is -1, it indicates that the convenience bottleneck corresponding to each operating function in the target enterprise's electrical operating system is low.

[0021] Preferably, the expression of the convenience bottleneck evaluation value analysis model is:

[0022] In the formula, π h 、Θ h They represent the operation evaluation value and feedback evaluation value corresponding to the h-th operation function in the electrical operating system of the target enterprise, respectively. h represents the number corresponding to each operation function, h=1,2……g, g is any integer greater than 2, Λ h It represents the convenience bottleneck evaluation value result corresponding to the h-th operation function in the electrical operating system of the target enterprise, Ι′ is the set convenience bottleneck evaluation value threshold, among which π1 and π2 are the weight factors corresponding to the operation evaluation value and feedback evaluation value of the operation function in the electrical operating system of the target enterprise, respectively, and e represents a natural constant.

[0023] Preferably, the bottleneck level analysis of the convenience of each operating function in the target enterprise's electrical operating system is performed, and the specific analysis process is as follows: if the convenience bottleneck corresponding to each operating function in the target enterprise's electrical operating system is high, then the convenience bottleneck evaluation value corresponding to each operating function in the target enterprise's electrical operating system is compared with the convenience bottleneck evaluation value interval corresponding to each bottleneck level in the database; if the convenience bottleneck evaluation value corresponding to each operating function in the target enterprise's electrical operating system is within the convenience bottleneck evaluation value interval corresponding to a bottleneck level in the database, then the bottleneck level in the database is used as the bottleneck level corresponding to the convenience of the operating function in the target enterprise's electrical operating system. In this way, the bottleneck level of the convenience of each operating function in the target enterprise's electrical operating system is analyzed.

[0024] Preferably, the adjustment of each operating function in the electrical operating system of the target enterprise is carried out, and the specific adjustment process is as follows: D1. If the bottleneck level of the convenience of each operating function in the electrical operating system of the target enterprise is a first-level bottleneck level, the design of the operation button is simplified to make it easier to operate, the operation steps are optimized, the redundancy of the operation steps is reduced, the memory or processor resources of the device are increased, and the response speed of the operation function is improved. At the same time, through training videos and operation manuals, users can understand the correct use of the operation functions.

[0025] D2. If the bottleneck level of the convenience of various operating functions in the target enterprise's electrical operating system is level 2, the intelligence of the operating functions should be increased so that they can automatically identify the user's operating intentions, provide more efficient operating methods, and integrate the equipment monitoring system with the operating functions to achieve data sharing and linkage.

[0026] D3. If the bottleneck level of the convenience of each operating function in the target enterprise's electrical operating system is the second bottleneck level, redesign the layout of the operating functions to make it more in line with the user's operating habits and redesign the interface of the operating functions.

[0027] Preferably, the database is used to store the convenience bottleneck evaluation value interval corresponding to each bottleneck level.

[0028] The beneficial effects of the present invention are: 1. The embodiment of the present invention conducts a questionnaire survey through the operating system group demand analysis module, which covers many aspects and is aimed at employees in different positions, and can fully and deeply understand the real views and needs of different groups within the enterprise on the electrical operating system. This helps to accurately judge whether the electrical operating system meets the needs of the group, avoids the enterprise from evaluating the applicability of the system based solely on subjective conjecture or one-sided feedback, and provides a reliable basis for subsequent targeted improvements. With the help of the operation function convenience bottleneck analysis module, data is collected from multiple dimensions of operation parameters and feedback parameters, and the convenience bottleneck evaluation value is obtained through the corresponding analysis model. It can accurately find out the problems of each operation function in terms of convenience, clarify which functions are the key to be improved, and make the improvement work more targeted.

[0029] 2. In the embodiment of the present invention, different bottleneck levels are divided according to the convenience bottleneck evaluation value. Enterprises can reasonably allocate resources such as human resources, material resources and time for improvement work according to the level of each operating function. For operating functions with higher levels and more serious problems, more energy and resources are invested to focus on breakthroughs; while for functions with relatively lower levels, the optimization order can be reasonably arranged according to importance and urgency to avoid waste of resources and improve improvement efficiency. Specific and targeted operating function adjustment strategies are formulated for different bottleneck levels. For example, the first-level bottleneck level focuses on simplifying operating procedures, optimizing resource allocation and strengthening user training, which can quickly solve basic convenience problems such as cumbersome operations and slow responses, and improve the smoothness of users' daily operations; the second-level bottleneck level focuses on intelligent functional upgrades and system integration, further improving operational efficiency and coordination, and meeting users' needs for more efficient operations; the third-level bottleneck level fundamentally reshapes the operating functions through redesign and introduction of new technologies, making a qualitative leap in accuracy, reliability and ease of use, and overall improving the quality of the electrical operating system and user experience.

[0030] 3. The embodiments of the present invention continuously optimize the electrical operating system to ensure the convenience and reliability of operational functions, reduce equipment failures or abnormal operations caused by operational problems, help extend the service life of electrical equipment, ensure the stable operation of an enterprise's production and operation activities, and lay a solid foundation for the sustainable development of the enterprise. High-quality electrical operating systems can help enterprises stand out from their peers, especially in business scenarios that require high equipment operating efficiency and accuracy. In addition, a good user experience also helps attract and retain outstanding talent, further enhance the overall competitiveness of the enterprise, and put it in a more advantageous position in the market competition. BRIEF DESCRIPTION OF THE DRAWINGS

[0031] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0032] Figure 1 This is a schematic diagram of the system module connection of the present invention. DETAILED DESCRIPTION

[0033] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0034] The present invention is implemented as follows Figure 1 As shown, an operation control unit electrical device for electrical equipment includes: an operating system group demand analysis module: used to conduct a questionnaire survey on the satisfaction level corresponding to the target enterprise's electrical operating system, and to evaluate whether the target enterprise's electrical operating system meets group needs.

[0035] In a specific embodiment, a questionnaire survey is conducted on the satisfaction level of the target enterprise's electrical operating system. The specific survey process is as follows: A1. A questionnaire link is sent to the respondents through the enterprise's internal network platform. The respondents cover employees from different departments and positions, including front-line operators, technicians and managers.

[0036] A2. The questionnaire includes basic identity information, electrical equipment operation experience, covering operation interface design, visual effects, operation response and operation process, functional module satisfaction involves equipment monitoring, fault diagnosis, data management and remote control, performance includes operating speed, energy consumption and stability, safety and reliability include safety protection, safety certification, security vulnerabilities and equipment reliability, training and support include training methods, training results, technical support and problem feedback, and score setting is set for each questionnaire content.

[0037] A3. Collect questionnaires within the specified time and set up automatic reminder function to urge respondents to fill out the questionnaires in time.

[0038] In another specific embodiment, the evaluation of whether the electrical operating system of the target enterprise meets the needs of the group is carried out in the following specific evaluation process: the scores of each respondent on all questionnaire content items are summarized to obtain the total score of each respondent, and the total score of each respondent is divided into different intervals, including excellent partitions and poor partitions, and the proportion of respondents in each interval is counted. If the proportion of respondents in the excellent partition reaches 80% or above, it means that the electrical operating system of the target enterprise meets the needs of the group. Conversely, if the proportion of respondents in the excellent partition does not reach 80%, it means that the electrical operating system of the target enterprise does not meet the needs of the group.

[0039] In the embodiment of the present invention, a questionnaire survey is conducted through the operating system group demand analysis module, covering multiple aspects and targeting employees in different positions. This can fully and deeply understand the real views and needs of different groups within the enterprise on the electrical operating system. This helps to accurately determine whether the electrical operating system meets the needs of the group, avoid the enterprise evaluating the applicability of the system based solely on subjective assumptions or one-sided feedback, and provide a reliable basis for subsequent targeted improvements. With the help of the operation function convenience bottleneck analysis module, data is collected from multiple dimensions of operation parameters and feedback parameters, and the convenience bottleneck evaluation value is derived through the corresponding analysis model. It can accurately identify the problems with the convenience of each operation function, clarify which functions are the key to improvement, and make the improvement work more targeted.

[0040] Operation function convenience bottleneck analysis module: used when the target enterprise's electrical operating system does not meet group needs, so as to analyze the convenience bottleneck corresponding to each operation function in the target enterprise's electrical operating system, and analyze the bottleneck level of the convenience of each operation function in the target enterprise's electrical operating system.

[0041] In a specific embodiment, the operation function convenience bottleneck analysis module further includes a convenience bottleneck data acquisition unit and a convenience bottleneck data analysis unit.

[0042] The convenience bottleneck data acquisition unit is used to obtain the operating parameters and feedback parameters corresponding to each operating function in the target enterprise's electrical operating system. The operating parameters include the average operation time, the function call path length and the error operation recovery time. The feedback parameters include the user help frequency, the question repetition rate and the function abandonment rate.

[0043] It should be noted that a detailed operation log function is set up in the electrical operating system to record the start time and end time of each operation function. By analyzing these timestamps, the duration of each operation is obtained, and then the average operation time of each operation function is calculated within a certain period of time. The operating interface of the electrical operating system is mapped in detail, and each operation function is associated with its entrance on the interface. The length of the function call path is determined by recording the interface elements required to reach each operation function entrance from the system main interface or the commonly used operation interface. An error capture mechanism is set up in the electrical operating system. When the user performs an erroneous operation, the system can immediately detect and record the error type. At the same time, start recording the time it takes from the occurrence of the error to the user restoring the system to the correct state or resuming the correct operation.

[0044] It should also be noted that when handling user issues related to electrical operating systems, the company's customer service department or technical support team records each user's request and the corresponding operating function in detail. By categorizing and counting these records, they determine the number of times each operating function receives user assistance within a certain period, thereby determining the frequency of user assistance requests. This allows them to establish a problem tracking system that records and numbers all user-reported issues related to the electrical operating system. When a new issue is received, the system first determines whether it is similar to an already recorded issue. For each operating function, the number of similar issues encountered is counted and compared with the total number of issues for that function to determine the recurrence rate. The function abandonment rate is then calculated by monitoring the usage of each operating function in the electrical operating system. The system records the number of times each operating function is used within a certain period. For functions with extremely low or zero usage, the system analyzes the function's importance and expected frequency of use. If a function is designed to be frequently used but is rarely used in practice, it can be preliminarily determined to be potentially abandoned by users. The function abandonment rate can be calculated using the formula: Function abandonment rate = (expected number of uses - actual number of uses) / expected number of uses × 100%.

[0045] The convenience bottleneck data analysis unit is used to analyze the operation parameters and feedback parameters corresponding to each operation function in the electrical operating system of the target enterprise, and then obtain the operation evaluation value and feedback evaluation value corresponding to each operation function in the electrical operating system of the target enterprise.

[0046] In a specific embodiment, the analysis obtains the operation evaluation value and feedback evaluation value corresponding to each operation function in the electrical operating system of the target enterprise. The specific analysis process is as follows: B1. The average operation time, function call path length and error operation recovery time corresponding to each operation function in the electrical operating system of the target enterprise are input into the operation evaluation value analysis model, and the operation evaluation value corresponding to each operation function in the electrical operating system of the target enterprise is output.

[0047] It should be noted that the analysis process of the operation evaluation value corresponding to each operation function in the electrical operating system of the target enterprise is as follows: the average operation time, function call path length and error operation recovery time corresponding to each operation function in the electrical operating system of the target enterprise are normalized, and the average operation time, function call path length and error operation recovery time corresponding to each operation function in the electrical operating system of the target enterprise after processing are recorded as Q h 、H h and K h , substitute into the analytical formula Get the operation evaluation value π corresponding to each operation function in the target enterprise's electrical operating system h , where h represents the number corresponding to each operation function, h=1,2......g, and g is any integer greater than 2.

[0048] B2. Input the user help request frequency, question repetition rate and function abandonment rate corresponding to each operating function in the target enterprise's electrical operating system into the feedback evaluation value analysis model, and output the feedback evaluation value corresponding to each operating function in the target enterprise's electrical operating system.

[0049] It should be noted that the feedback evaluation value corresponding to each operation function in the target enterprise electrical operating system is obtained by analyzing according to the above-mentioned analysis process of the operation evaluation value corresponding to each operation function in the target enterprise electrical operating system.

[0050] In a specific embodiment, the convenience bottleneck corresponding to each operating function in the electrical operating system of the target enterprise is analyzed, and the specific analysis process is as follows: C1. The operation evaluation value and feedback evaluation value corresponding to each operating function in the electrical operating system of the target enterprise are input into the convenience bottleneck evaluation value analysis model, and the convenience bottleneck evaluation value result corresponding to each operating function in the electrical operating system of the target enterprise is output.

[0051] C2. The convenience bottleneck evaluation value results include values ​​of 1 and -1. When the convenience bottleneck evaluation value result corresponding to each operating function in the target enterprise's electrical operating system is 1, it indicates that the convenience bottleneck corresponding to each operating function in the target enterprise's electrical operating system is high. Conversely, when the convenience bottleneck evaluation value result corresponding to each operating function in the target enterprise's electrical operating system is -1, it indicates that the convenience bottleneck corresponding to each operating function in the target enterprise's electrical operating system is low.

[0052] In a specific embodiment, the convenience bottleneck evaluation value analysis model is expressed as:

[0053] In the formula, π h 、Θ hThey represent the operation evaluation value and feedback evaluation value corresponding to the h-th operation function in the electrical operating system of the target enterprise, respectively. h represents the number corresponding to each operation function, h=1,2……g, g is any integer greater than 2, Λ h It represents the convenience bottleneck evaluation value result corresponding to the h-th operation function in the electrical operating system of the target enterprise, Ι′ is the set convenience bottleneck evaluation value threshold, among which π1 and π2 are the weight factors corresponding to the operation evaluation value and feedback evaluation value of the operation function in the electrical operating system of the target enterprise, respectively, and e represents a natural constant.

[0054] It should be noted that π1 and π2 are both greater than 0 and less than 1.

[0055] It should also be noted that, based on the expertise and research of domain experts, and after discussion and confirmation with industry organizations or professional institutions, the experts, based on their own experience and knowledge, set the weighting factors corresponding to the operational function evaluation values ​​and the weighting factors corresponding to the feedback evaluation values ​​in the target enterprise's electrical operating system.

[0056] In the embodiment of the present invention, different bottleneck levels are divided according to the convenience bottleneck evaluation value. Enterprises can reasonably allocate resources such as manpower, material resources and time for improvement work according to the level of each operating function. For operating functions with higher levels and more serious problems, more energy and resources are invested to focus on breakthroughs; while for functions with relatively low levels, the optimization order can be reasonably arranged according to importance and urgency to avoid waste of resources and improve improvement efficiency. Specific and targeted operating function adjustment strategies are formulated for different bottleneck levels. For example, the first-level bottleneck level focuses on simplifying operating procedures, optimizing resource allocation and strengthening user training, which can quickly solve basic convenience problems such as cumbersome operations and slow responses, and improve the smoothness of users' daily operations; the second-level bottleneck level focuses on intelligent functional upgrades and system integration, further improving operational efficiency and coordination, and meeting users' needs for more efficient operations; the third-level bottleneck level fundamentally reshapes the operating functions through redesign and introduction of new technologies, making a qualitative leap in accuracy, reliability and ease of use, and overall improving the quality of the electrical operating system and user experience.

[0057] Operation function adjustment module: used to determine the bottleneck level according to the convenience of each operation function in the electrical operating system of the target enterprise, and then adjust the operation functions in the electrical operating system of the target enterprise.

[0058] In a specific embodiment, the bottleneck level analysis of the convenience of each operating function in the target enterprise's electrical operating system is performed, and the specific analysis process is as follows: if the convenience bottleneck corresponding to each operating function in the target enterprise's electrical operating system is high, the convenience bottleneck evaluation value corresponding to each operating function in the target enterprise's electrical operating system is compared with the convenience bottleneck evaluation value interval corresponding to each bottleneck level in the database. If the convenience bottleneck evaluation value corresponding to each operating function in the target enterprise's electrical operating system is within the convenience bottleneck evaluation value interval corresponding to a bottleneck level in the database, the bottleneck level in the database is used as the bottleneck level corresponding to the convenience of the operating function in the target enterprise's electrical operating system. In this way, the bottleneck level of the convenience of each operating function in the target enterprise's electrical operating system is analyzed.

[0059] In a specific embodiment, the operating functions in the target enterprise's electrical operating system are adjusted, and the specific adjustment process is as follows: D1. If the bottleneck level of the convenience of each operating function in the target enterprise's electrical operating system is a first-level bottleneck level, the design of the operation button is simplified to make it easier to operate, optimize the operation steps, reduce the redundancy of the operation steps, increase the memory or processor resources of the device, and improve the response speed of the operation function. At the same time, through training videos and operation manuals, let users understand the correct use of the operation functions.

[0060] D2. If the bottleneck level of the convenience of various operating functions in the target enterprise's electrical operating system is level 2, the intelligence of the operating functions should be increased so that they can automatically identify the user's operating intentions, provide more efficient operating methods, and integrate the equipment monitoring system with the operating functions to achieve data sharing and linkage.

[0061] D3. If the bottleneck level of the convenience of each operating function in the target enterprise's electrical operating system is the second bottleneck level, redesign the layout of the operating functions to make it more in line with the user's operating habits and redesign the interface of the operating functions.

[0062] In a specific embodiment, the database is used to store the convenience bottleneck evaluation value intervals corresponding to each bottleneck level.

[0063] The embodiments of the present invention continuously optimize the electrical operating system to ensure the convenience and reliability of operating functions, reduce equipment failures or abnormal operations caused by operational problems, help extend the service life of electrical equipment, ensure the stable development of the company's production and operation activities, and lay a solid foundation for the company's sustainable development. High-quality electrical operating systems can enable companies to stand out from their peers, especially in business scenarios with high requirements for equipment operating efficiency and accuracy. In addition, a good user experience also helps attract and retain outstanding talents, further enhance the overall competitiveness of the company, and put it in a more advantageous position in the market competition.

[0064] The above content is merely an example and explanation of the concept of the present invention. Those skilled in the art may make various modifications or additions to the described specific embodiments or replace them in a similar manner. As long as they do not deviate from the concept of the invention or exceed the scope defined in this specification, they should all fall within the scope of protection of the present invention.

Claims

1. An operation control unit for an electrical device, characterized in that: include: Operating system group demand analysis module: used to conduct questionnaire surveys on the target enterprise's electrical operating system satisfaction and evaluate whether the target enterprise's electrical operating system meets group needs; Operational Function Convenience Bottleneck Analysis Module: This module is used to analyze the convenience bottlenecks corresponding to each operation function in the target enterprise's electrical operating system when the target enterprise's electrical operating system does not meet group needs, and to analyze the bottleneck level of the convenience of each operation function in the target enterprise's electrical operating system: Operation function adjustment module: used to determine the bottleneck level according to the convenience of each operation function in the target enterprise's electrical operating system, and then adjust each operation function in the target enterprise's electrical operating system.

2. An operation control unit for an electrical device according to claim 1, characterized in that: The questionnaire survey on the satisfaction with the target enterprise's electrical operating system is conducted. The specific survey process is as follows: A1. Send a questionnaire link to respondents via the company's internal network platform. The respondents cover employees from different departments and positions, including front-line operators, technicians, and managers. A2. The questionnaire includes basic identity information, electrical equipment operating experience, covering interface design, visual effects, operational response, and operational procedures. Functional module satisfaction involves equipment monitoring, fault diagnosis, data management, and remote control. Performance includes operating speed, energy consumption, and stability. Safety and reliability include security protection, security certification, security vulnerabilities, and equipment reliability. Training and support include training methods, training effectiveness, technical support, and problem feedback. Each questionnaire item is scored. A3. Collect questionnaires within the specified time and set up automatic reminder function to urge respondents to fill out the questionnaires in time.

3. An operation control unit for an electrical device according to claim 2, characterized in that: The specific evaluation process for whether the electrical operating system of the enterprise meets the needs of the group is as follows: The scores of each respondent on all questionnaire items are summarized to obtain the total score of each respondent, and the total score of each respondent is divided into different intervals, including excellent intervals and poor intervals. The proportion of respondents in each interval is counted. If the proportion of respondents in the excellent interval reaches 80% or above, it means that the electrical operating system of the standard enterprise meets the needs of the group. Conversely, if the proportion of respondents in the excellent interval does not reach 80%, it means that the electrical operating system of the standard enterprise does not meet the needs of the group.

4. An operation control unit for an electrical device according to claim 1, characterized in that: The operation function convenience bottleneck analysis module further includes a convenience bottleneck data acquisition unit and a convenience bottleneck data analysis unit; The convenience bottleneck data acquisition unit is used to obtain the operation parameters and feedback parameters corresponding to each operation function in the target enterprise's electrical operating system. The operation parameters include the average operation time, the function call path length, and the error operation recovery time. The feedback parameters include the user help frequency, the problem repetition rate, and the function abandonment rate. The convenience bottleneck data analysis unit is used to analyze the operation parameters and feedback parameters corresponding to each operation function in the electrical operating system of the target enterprise, and then obtain the operation evaluation value and feedback evaluation value corresponding to each operation function in the electrical operating system of the target enterprise.

5. An operation control unit for an electrical device according to claim 4, characterized in that: The analysis obtains the operation evaluation value and feedback evaluation value corresponding to each operation function in the target enterprise's electrical operating system. The specific analysis process is as follows: B1. Input the average operation duration, function call path length, and error operation recovery time corresponding to each operation function in the target enterprise's electrical operating system into the operation evaluation value analysis model, and output the operation evaluation value corresponding to each operation function in the target enterprise's electrical operating system; B2. Input the user help request frequency, question repetition rate and function abandonment rate corresponding to each operating function in the target enterprise's electrical operating system into the feedback evaluation value analysis model, and output the feedback evaluation value corresponding to each operating function in the target enterprise's electrical operating system.

6. An operation control unit for an electrical device according to claim 5, characterized in that: The convenience bottlenecks corresponding to each operating function in the target enterprise's electrical operating system are analyzed. The specific analysis process is as follows: C1. Input the operation evaluation value and feedback evaluation value corresponding to each operation function in the target enterprise's electrical operating system into the convenience bottleneck evaluation value analysis model, and output the convenience bottleneck evaluation value result corresponding to each operation function in the target enterprise's electrical operating system; C2. The convenience bottleneck evaluation value results include values ​​of 1 and -1. When the convenience bottleneck evaluation value result corresponding to each operating function in the target enterprise's electrical operating system is 1, it indicates that the convenience bottleneck corresponding to each operating function in the target enterprise's electrical operating system is high. Conversely, when the convenience bottleneck evaluation value result corresponding to each operating function in the target enterprise's electrical operating system is -1, it indicates that the convenience bottleneck corresponding to each operating function in the target enterprise's electrical operating system is low.

7. An operation control unit for an electrical device according to claim 6, characterized in that: The expression of the convenience bottleneck evaluation value analysis model is: In the formula, π h 、Θ h They represent the operation evaluation value and feedback evaluation value corresponding to the h-th operation function in the electrical operating system of the target enterprise, respectively. h represents the number corresponding to each operation function, h=1,2……g, g is any integer greater than 2, Λ h It represents the convenience bottleneck evaluation value result corresponding to the h-th operation function in the electrical operating system of the target enterprise, Ι′ is the set convenience bottleneck evaluation value threshold, among which π1 and π2 are the weight factors corresponding to the operation evaluation value and feedback evaluation value of the operation function in the electrical operating system of the target enterprise, respectively, and e represents a natural constant.

8. An operation control unit for an electrical device according to claim 7, characterized in that: The bottleneck level analysis of the convenience of each operating function in the target enterprise's electrical operating system is carried out as follows: If the convenience bottleneck corresponding to each operating function in the target enterprise's electrical operating system is high, the convenience bottleneck evaluation value corresponding to each operating function in the target enterprise's electrical operating system will be compared with the convenience bottleneck evaluation value interval corresponding to each bottleneck level in the database. If the convenience bottleneck evaluation value corresponding to each operating function in the target enterprise's electrical operating system is within the convenience bottleneck evaluation value interval corresponding to a certain bottleneck level in the database, the bottleneck level in the database will be used as the bottleneck level corresponding to the convenience of the operating function in the target enterprise's electrical operating system. In this way, the bottleneck level of the convenience of each operating function in the target enterprise's electrical operating system is analyzed.

9. An operation control unit for an electrical device according to claim 8, characterized in that: The specific adjustment process for adjusting the various operating functions in the target enterprise's electrical operating system is as follows: D1. If the bottleneck level for the convenience of various operating functions in the target enterprise's electrical operating system is level 1, simplify the design of operating buttons to make them easier to operate, optimize operating steps, reduce redundant operating steps, increase the device's memory or processor resources, and improve the response speed of operating functions. At the same time, use training videos and operating manuals to let users understand the correct use of operating functions. D2. If the bottleneck level of the convenience of various operating functions in the target enterprise's electrical operating system is level 2, the intelligent level of the operating functions should be increased to enable them to automatically identify the user's operating intentions and provide more efficient operation methods. The equipment monitoring system should be integrated with the operating functions to achieve data sharing and linkage. D3. If the bottleneck level of the convenience of each operating function in the target enterprise's electrical operating system is the second bottleneck level, redesign the layout of the operating functions to make it more in line with the user's operating habits and redesign the interface of the operating functions.

10. An operation control unit for an electrical device according to claim 9, characterized in that: It also includes a database, which is used to store the convenience bottleneck evaluation value intervals corresponding to each bottleneck level.

Citation Information

Patent Citations

  • Optimization device and optimization method of operating system

    CN117687728A