Interactive design system and method based on new energy business scenario visualized large screen
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-10
- Publication Date
- 2026-08-11
AI Technical Summary
[0003]目前新能源业务已进入快速发展阶段,业务涵盖光伏、风力、地热、氢能等多个领域,积累了一定的数据资源,但是缺少综合展示平台,无法从全局角度展示业务发展情况
[0015] The technical solution of this invention comprehensively displays the current development status of the new energy business by collecting, cleaning, organizing, and applying new energy business data from multiple sources, including the new energy structure module, new energy production module, new energy overview module, new energy operation module, and new energy consumption module, providing strong support for new energy business management and scientific decision-making.
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Figure CN122547262A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of data visualization technology, and in particular to an interactive design system and method for a large-screen visualization system based on new energy business scenarios. Background Technology
[0002] Visual dashboards are a crucial form of data presentation. Using a large screen as the primary medium, they display complex and fragmented data in a more intuitive and easily understandable way. Compared to traditional web pages and tables, visual dashboards can more vividly express the hidden information, patterns, and characteristics of data, allowing for deeper data analysis and offering a variety of presentation formats to meet diverse business needs.
[0003] The new energy business has entered a stage of rapid development, covering multiple fields such as photovoltaics, wind power, geothermal energy, and hydrogen energy. It has accumulated certain data resources, but lacks a comprehensive display platform, making it impossible to showcase the business development from a holistic perspective. Summary of the Invention
[0004] This invention provides an interactive design system and method based on a large-screen visualization of new energy business scenarios. It comprehensively displays the current development status of new energy business from the new energy structure module, new energy production module, new energy overview module, new energy operation module and new energy consumption module, providing strong support for new energy business management and scientific decision-making.
[0005] According to one aspect of the present invention, an interactive design system based on a large-screen visualization of new energy business scenarios is provided. The system includes: a company name module, a new energy structure module, a new energy production module, a new energy overview module, a new energy operation module, and a new energy consumption module; the company name module contains multiple company name buttons; wherein,
[0006] The company name module is used to determine the new energy business data corresponding to the company name button in response to the company name button click operation;
[0007] The new energy structure module is connected to the company name module and is used to display the monthly power generation status of various new energy projects in the new energy business data;
[0008] The new energy production module is connected to the company name module and is used to display project information and project power generation status in the new energy business data;
[0009] The new energy overview module is connected to the company name module and is used to display the geographical distribution and data statistics of new energy projects in the new energy business data;
[0010] The new energy operation module is connected to the company name module and is used to display the electricity price, power generation cost and power generation data in the new energy business data;
[0011] The new energy consumption module is connected to the company name module and is used to display electricity consumption-related data in the new energy business data.
[0012] According to another aspect of the present invention, an interactive design method for a large-screen visualization based on new energy business scenarios is provided, the method comprising:
[0013] In response to the click of the company name button, confirm the new energy business data corresponding to the company name button;
[0014] The data on the new energy business will be displayed.
[0015] The technical solution of this invention comprehensively displays the current development status of the new energy business by collecting, cleaning, organizing, and applying new energy business data from multiple sources, including the new energy structure module, new energy production module, new energy overview module, new energy operation module, and new energy consumption module, providing strong support for new energy business management and scientific decision-making.
[0016] It should be understood that the description in this section is not intended to identify key or essential features of the embodiments of the present invention, nor is it intended to limit the scope of the invention. Other features of the invention will become readily apparent from the following description. Attached Figure Description
[0017] To more clearly illustrate the technical solutions in the embodiments of the present invention, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0018] Figure 1 This is a schematic diagram of an interactive design system based on a large-screen visualization of new energy business scenarios according to Embodiment 1 of the present invention;
[0019] Figure 2 The flowchart shows the interactive design method for a large-screen visualization of new energy business scenarios provided in Embodiment 2 of the present invention. Detailed Implementation
[0020] To enable those skilled in the art to better understand the present invention, the technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort should fall within the scope of protection of the present invention.
[0021] It should be noted that the terms "first," "second," etc., in the specification, claims, and accompanying drawings of this invention are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. It should be understood that such data can be interchanged where appropriate so that the embodiments of the invention described herein can be implemented in orders other than those illustrated or described herein. Furthermore, the terms "comprising" and "having," and any variations thereof, are intended to cover a non-exclusive inclusion; for example, a process, method, system, product, or apparatus that comprises a series of steps or units is not necessarily limited to those steps or units explicitly listed, but may include other steps or units not explicitly listed or inherent to such processes, methods, products, or apparatus.
[0022] Example 1
[0023] Figure 1 This is a schematic diagram of an interactive design system for a large-screen visualization system based on new energy business scenarios according to Embodiment 1 of the present invention. This embodiment is applicable to situations where new energy business data is visualized. Figure 1 As shown, the system includes:
[0024] The module includes a company name module 110, a new energy structure module 120, a new energy production module 130, a new energy overview module 140, a new energy operation module 150, and a new energy consumption module 160; the company name module 110 contains multiple company name buttons; among them,
[0025] The company name module 110 is used to determine the new energy business data corresponding to the company name button in response to the company name button selection operation;
[0026] The new energy structure module 120 is connected to the company name module 110 and is used to display the monthly power generation status of various new energy projects in the new energy business data;
[0027] The new energy production module 130 is connected to the company name module 110 and is used to display project information and project power generation status in the new energy business data.
[0028] The new energy overview module 140 is connected to the company name module 110 and is used to display the geographical distribution and data statistics of new energy projects in the new energy business data.
[0029] The new energy operation module 150 is connected to the company name module 110 and is used to display the electricity price, power generation cost and power data in the new energy business data.
[0030] The new energy consumption module 160 is connected to the company name module 110 and is used to display electricity consumption-related data in the new energy business data.
[0031] In this solution, the company name module 110 contains multiple company name buttons. For example, the company name module 110 includes buttons for Company A, Company B, Company C, etc. These multiple company name buttons can be displayed in rows, columns, or multiple rows and columns. These multiple companies can be at the same level or at different levels. For example, the company hierarchy can include a headquarters level and a branch office level.
[0032] In this embodiment, the selected company name button is presented in a style that is significantly different from the other company name buttons. For example, the selected company name button has a different color than the other company name buttons; the selected company name button has a different button shape than the other company name buttons, etc.
[0033] Specifically, the interactive design system based on the large-screen visualization of new energy business scenarios displays the following modules on its interface: Company Name (110), New Energy Structure (120), New Energy Production (130), New Energy Overview (140), New Energy Operation (150), and New Energy Consumption (160). The Company Name module (110) allows users to select a company name. When a user selects a company name, the system responds by determining the corresponding new energy business data. This data is then displayed in the New Energy Structure module (120), New Energy Production module (130), New Energy Overview module (140), New Energy Operation module (150), and New Energy Consumption module (160). In other words, the display of new energy business data is uniformly switched via buttons according to user needs. After a user clicks a company name button, all data in the New Energy Structure module (120), New Energy Production module (130), New Energy Overview module (140), New Energy Operation module (150), and New Energy Consumption module (160) are switched to the selected company's new energy business data.
[0034] Optionally, the new energy structure module 120 uses indicators, line charts, and pie charts to display the monthly power generation of various new energy projects in the new energy business data; the new energy production module 130 uses line charts, lists, and indicators to display project information and power generation in the new energy business data; the new energy overview module 140 uses map plotting, mouse hovering, and indicators to display the geographical distribution and data statistics of new energy projects in the new energy business data; the new energy operation module 150 uses line charts, bar charts, bar chart comparisons, and indicators to display electricity prices, power generation costs, and electricity data in the new energy business data; and the new energy consumption module 160 uses line charts, bar chart comparisons, circular percentages, and indicators to display electricity consumption-related data in the new energy business data.
[0035] Among these, indicator-based data presentation uses specific indicators to convey information more intuitively and clearly, revealing the characteristics and trends of the data; line charts are graphs formed by connecting data points sequentially with line segments, used to show the trend of data changes over time or other continuous variables; pie charts use the entire circle to represent the whole, and the size of each sector within the circle represents the percentage of each part to the total. By dividing a circle into different sectors according to the proportion of each part, it intuitively shows the proportional relationship between each part and the whole; a list is a finite sequence of data items, that is, a collection of data items arranged in a certain linear order; map plotting refers to the operation of marking specific locations on a map; mouse hover refers to the behavior of a user moving the mouse pointer to an element and holding it for a period of time without clicking or performing other operations; pie charts (also called circular percentage charts) usually refer to using a circular chart (also called a pie chart) to show the percentage relationship of each part to the whole.
[0036] In this solution, the New Energy Structure Module 120 primarily displays the monthly power generation status of various new energy projects, including indicators, line charts, and pie charts, intuitively showing the power generation and proportion of each type of new energy project. The New Energy Production Module 130 primarily displays project information and power generation status, including indicators, line charts, and lists, intuitively showing basic information about new energy projects and changes in daily power generation over the past month. The New Energy Overview Module 140 primarily displays the geographical distribution and statistical data of new energy projects, including indicators, mouse hover views, and map point displays, highlighting project type statistics and annual output data. The New Energy Operation Module 150 primarily displays electricity prices, power generation costs, and power volume data, including indicators, line charts, and bar charts, showing time-of-use pricing, changes in power generation costs over the past year, and grid-connected power volume, among other operation-related data. The new energy consumption module 160 mainly displays electricity consumption-related data, including three display methods: indicators, line charts, and bar charts. It intuitively displays monthly electricity consumption data and classification statistics, changes in electricity consumption data over the past year, and the proportion of green electricity consumption.
[0037] Specifically, the New Energy Structure Module 120 mainly displays monthly statistics on the power generation of various new energy projects, including photovoltaic power generation, wind power, gas power, green electricity generation, and other indicators. It uses three display methods—indicators, line charts, and pie charts—to intuitively show the power generation and proportion of various new energy projects, and provides data comparisons of power generation for each type over the past year.
[0038] In this embodiment, the new energy production module 130 mainly displays project information and project power generation status, including indicators such as project name, oilfield, project type, construction status, commissioning time, designed power generation, project location, installed capacity, number of projects, daily power generation, daily carbon emission reduction, monthly power generation, monthly carbon emission reduction, annual power generation, annual carbon emission reduction, annual clean energy utilization, cumulative power generation, and cumulative carbon emission reduction. The daily power generation change of new energy projects in the past month is displayed as a line chart; basic project information is displayed in a scrolling list format; all other indicators are displayed as indicators; and the system can intuitively display project data statistical analysis and new energy power generation data statistical analysis.
[0039] The New Energy Overview module 140 primarily displays indicators such as project name, project type, designed power generation, project location, installed capacity, number of projects, daily power generation, annual power generation, annual carbon emission reduction, and annual clean energy utilization. Project location information is displayed as map points; project name, project type, and designed power generation are displayed by hovering the mouse, providing a clear visual representation of the geographical distribution of new energy projects; other statistical data are presented in indicator form, highlighting project statistics and annual production analysis data.
[0040] In this embodiment, the new energy operation module 150 mainly displays electricity price, generation cost, and electricity data, including indicators such as peak electricity price, mid-peak electricity price, flat-peak electricity price, off-peak electricity price, comprehensive electricity price, generation cost, grid-connected electricity (green electricity), and grid-connected electricity. The generation cost data is displayed as a line chart showing monthly data for the past year, intuitively illustrating changes in generation cost data, and compared with the oilfield comprehensive electricity price using a bar chart. Monthly generation data and grid-connected electricity data are also displayed as bar charts comparing the operation of new energy projects. Other indicators are displayed in indicator form.
[0041] In this solution, the new energy consumption module 160 mainly displays electricity consumption-related data, including total electricity consumption, year-on-year increase / decrease in electricity consumption, year-on-year increase / decrease in electricity consumption percentage, total green electricity consumption, year-on-year increase / decrease in green electricity consumption percentage, green electricity percentage, enterprise external purchase electricity, year-on-year increase / decrease in enterprise external purchase electricity, year-on-year increase / decrease in enterprise external purchase electricity, enterprise internal purchase electricity, year-on-year increase / decrease in enterprise internal purchase electricity, and self-generated and self-consumed electricity, year-on-year increase / decrease in self-generated and self-consumed electricity, and year-on-year increase / decrease in self-generated and self-consumed electricity. Monthly electricity consumption data is displayed as a line chart comparing monthly data over the past year; green electricity consumption and total electricity consumption for each company are displayed as a bar chart; the overall green electricity consumption percentage is displayed as a circular percentage; all other data are displayed as indicators, providing a clear and intuitive presentation of monthly electricity consumption data and statistical analysis.
[0042] The system comprehensively showcases the current development status of the new energy business through modules on new energy structure, new energy production, new energy overview, new energy operation, and new energy consumption, providing strong support for new energy business management and scientific decision-making.
[0043] Optionally, the new energy structure module 120 includes multiple first query buttons; the new energy production module 130 includes multiple second query buttons; the new energy overview module 140 includes multiple third query buttons; the new energy operation module 150 includes multiple fourth query buttons; and the new energy consumption module 160 includes multiple fifth query buttons.
[0044] The first query button is used to query the monthly power generation status of various new energy projects in the new energy business data; the second query button is used to query project information and power generation status in the new energy business data; the third query button is used to query the geographical distribution and data statistics of new energy projects in the new energy business data; the fourth query button is used to query electricity price, power generation cost and power generation data in the new energy business data; and the fifth query button is used to query electricity consumption related data in the new energy business data.
[0045] In this solution, the query buttons include queries for new energy project location information, basic information of new energy projects, text descriptions of new energy overview, new energy production data, new energy structure data, new energy operation data, and new energy consumption data, which are remotely invoked in real time by the interactive design system based on the new energy business scenario visualization screen.
[0046] Specifically, in response to the user clicking the query button, the data corresponding to that query button is displayed.
[0047] The system comprehensively showcases the current development status of the new energy business through modules on new energy structure, new energy production, new energy overview, new energy operation, and new energy consumption, providing strong support for new energy business management and scientific decision-making.
[0048] Optionally, the company name module 110 is arranged in the upper screen area of the interactive design system based on the new energy business scenario visualization screen; the new energy structure module 120, the new energy production module 130, the new energy overview module 140, the new energy operation module 150 and the new energy consumption module 160 are arranged in the lower screen area of the interactive design system based on the new energy business scenario visualization screen.
[0049] The new energy structure module 120, new energy production module 130, new energy overview module 140, new energy operation module 150, and new energy consumption module 160 can be arranged in rows, columns, or multiple rows and columns in the lower screen area of the interactive design system based on the visualization screen of new energy business scenarios. In other words, the arrangement order of the new energy structure module 120, new energy production module 130, new energy overview module 140, new energy operation module 150, and new energy consumption module 160 can be designed according to requirements.
[0050] Specifically, the interactive design system for the new energy business scenario visualization screen is divided into an upper screen area and a lower screen area. The company name module 110 is located in the upper screen area of the interactive design system. The new energy structure module 120, new energy production module 130, new energy overview module 140, new energy operation module 150, and new energy consumption module 160 are located in the lower screen area of the interactive design system.
[0051] Optionally, the new energy structure module 120, the new energy production module 130, the new energy overview module 140, the new energy operation module 150, and the new energy consumption module 160 are arranged from left to right in the lower screen area of the interactive design system based on the new energy business scenario visualization screen.
[0052] Specifically, the new energy structure module 120, new energy production module 130, new energy overview module 140, new energy operation module 150, and new energy consumption module 160 are arranged in rows from left to right in the lower screen area of the interactive design system based on the new energy business scenario visualization screen.
[0053] The technical solution of this invention comprehensively displays the current development status of the new energy business by collecting, cleaning, organizing, and applying new energy business data from multiple sources, including the new energy structure module, new energy production module, new energy overview module, new energy operation module, and new energy consumption module, providing strong support for new energy business management and scientific decision-making.
[0054] Example 2
[0055] Figure 2 The flowchart is as follows: This is a flowchart of the interactive design method for a large-screen visualization of new energy business scenarios provided in Embodiment 2 of the present invention. Figure 2 As shown, the method includes:
[0056] S110. In response to the click operation of the company name button, confirm the new energy business data corresponding to the company name button.
[0057] In this solution, the company name module 110 in the interactive design system of the visualization screen for new energy business scenarios contains multiple company name buttons. For example, the company name module 110 includes buttons for Company A, Company B, Company C, etc. These multiple company name buttons can be displayed in rows, columns, or multiple rows and columns. These multiple companies can be at the same level or at different levels. For example, the company hierarchy can include a headquarters level and a branch office level.
[0058] In this embodiment, the selected company name button is presented in a style that is significantly different from the other company name buttons. For example, the selected company name button has a different color than the other company name buttons; the selected company name button has a different button shape than the other company name buttons, etc.
[0059] Specifically, the interactive design system based on the large-screen visualization of new energy business scenarios displays a company name module 110 on its interface. This module allows users to select company names using buttons. When a user selects a company name button, the system responds by determining the corresponding new energy business data.
[0060] Optionally, before determining the new energy business data corresponding to the company name button in response to the company name button click operation, the method further includes:
[0061] Obtain new energy business indicators related to production and operation in new energy business scenarios;
[0062] The aforementioned new energy business indicators are processed to obtain new energy business data.
[0063] Among them, the new energy business indicators are based on projects as the basic unit, selecting basic information related to the project such as project name, oilfield, project type, construction status, commissioning time, designed power generation (installed capacity of a single project), project location, installed capacity, and number of projects; indicators related to project production such as daily power generation, daily carbon emission reduction, monthly power generation, monthly carbon emission reduction, annual power generation, annual carbon emission reduction, annual clean energy utilization, cumulative power generation, cumulative carbon emission reduction, photovoltaic, wind power, gas power, green electricity, and others; and indicators related to operation such as peak electricity price, peak electricity price, and flat-rate electricity price. The indicators include electricity price, off-peak electricity price, comprehensive electricity price, generation cost, grid-connected electricity (green electricity), and download electricity; the indicators related to consumption include total electricity consumption, year-on-year increase / decrease in electricity consumption, year-on-year increase / decrease in electricity consumption, total green electricity consumption, year-on-year increase / decrease in green electricity consumption, year-on-year increase / decrease in green electricity consumption, green electricity ratio, enterprise external purchase electricity, year-on-year increase / decrease in enterprise external purchase electricity, year-on-year increase / decrease in enterprise external purchase electricity, enterprise internal purchase electricity, year-on-year increase / decrease in enterprise internal purchase electricity, self-generated and self-consumed electricity, year-on-year increase / decrease in self-generated and self-consumed electricity, and year-on-year increase / decrease in self-generated and self-consumed electricity.
[0064] In this solution, an interactive design system based on a large visualization screen for new energy business scenarios can acquire new energy business indicators related to production and operation within these scenarios. Specifically, these indicators are categorized according to their type and time granularity (daily / monthly) and then compiled into structured tables. The interactive design system based on the large visualization screen for new energy business scenarios collects and organizes these indicators based on a comprehensive analysis of their classification and data sources (oilfield reporting / calculation).
[0065] In this embodiment, new energy business indicators can be processed according to preset calculation rules to obtain new energy business data. These calculation rules may include classification and summarization, year-on-year calculation, time-based statistics, and formula conversion.
[0066] By acquiring data on new energy businesses, we can showcase the current state of development of these businesses from different angles and dimensions.
[0067] Optionally, the new energy business indicators include a first indicator; wherein the first indicator includes indicators related to basic project information, indicators related to production, indicators related to operation, and indicators related to consumption.
[0068] Accordingly, the new energy business indicators are processed to obtain new energy business data, including:
[0069] The first indicator will be used as data for new energy business.
[0070] Specifically, the first indicator includes indicators related to basic project information, production, operation, and consumption. Indicators related to basic project information include project name, oilfield, project type, construction status, commissioning time, designed power generation, and project location; production-related indicators include photovoltaic, wind power, gas power, green electricity generation, others, daily power generation, and cumulative power generation; operation-related indicators include peak electricity price, off-peak electricity price, flat-peak electricity price, low-peak electricity price, comprehensive electricity price, power generation cost, and electricity generation; and consumption-related indicators include electricity purchased by the enterprise.
[0071] By acquiring data on new energy businesses, we can showcase the current state of development of these businesses from different angles and dimensions.
[0072] Optionally, the new energy business indicators include a second indicator; wherein the second indicator is other indicators besides the first indicator among the new energy business indicators;
[0073] Accordingly, the new energy business indicators are processed to obtain new energy business data, including:
[0074] The first indicator is calculated using a preset calculation rule to obtain the second indicator, which is then used as new energy business data.
[0075] In this scheme, the calculation rules include categorized summarization, year-on-year calculation, time-of-use statistics, and formula conversion. For example, the year-on-year increase or decrease in electricity consumption is calculated as (Total electricity consumption (this month) - Total electricity consumption (last month)) / Total electricity consumption (last month) * 100. This part of the rules exists in the form of a stored procedure.
[0076] By acquiring data on new energy businesses, we can showcase the current state of development of these businesses from different angles and dimensions.
[0077] S120. Display the new energy business data.
[0078] Specifically, the interactive design system based on the large-screen visualization of new energy business scenarios displays the company name module 110, new energy structure module 120, new energy production module 130, new energy overview module 140, new energy operation module 150, and new energy consumption module 160 on its interface. The new energy business data is displayed based on these modules. That is, according to user needs, the display of new energy business data is uniformly switched via buttons. After the user clicks the company name button, all data in the new energy structure module 120, new energy production module 130, new energy overview module 140, new energy operation module 150, and new energy consumption module 160 are switched to the new energy business data of the selected company.
[0079] Optionally, the new energy business data may be displayed, including:
[0080] The monthly power generation data of various new energy projects is displayed based on the new energy structure module.
[0081] The new energy production module displays project information and power generation status from the new energy business data.
[0082] The New Energy Overview module displays the geographical distribution and statistical data of new energy projects within the new energy business data.
[0083] The new energy operation module displays the electricity price, power generation cost, and power volume data from the new energy business data.
[0084] The new energy consumption module displays electricity consumption-related data from the new energy business data.
[0085] In this solution, the New Energy Structure Module 120 primarily displays the monthly power generation status of various new energy projects, including indicators, line charts, and pie charts, intuitively showing the power generation and proportion of each type of new energy project. The New Energy Production Module 130 primarily displays project information and power generation status, including indicators, line charts, and lists, intuitively showing basic information about new energy projects and changes in daily power generation over the past month. The New Energy Overview Module 140 primarily displays the geographical distribution and statistical data of new energy projects, including indicators, mouse hover views, and map point displays, highlighting project type statistics and annual output data. The New Energy Operation Module 150 primarily displays electricity prices, power generation costs, and power volume data, including indicators, line charts, and bar charts, showing time-of-use pricing, changes in power generation costs over the past year, and grid-connected power volume, among other operation-related data. The new energy consumption module 160 mainly displays electricity consumption-related data, including three display methods: indicators, line charts, and bar charts. It intuitively displays monthly electricity consumption data and classification statistics, changes in electricity consumption data over the past year, and the proportion of green electricity consumption.
[0086] Among these, indicator-based data presentation uses specific indicators to convey information more intuitively and clearly, revealing the characteristics and trends of the data; line charts are graphs formed by connecting data points sequentially with line segments, used to show the trend of data changes over time or other continuous variables; pie charts use the entire circle to represent the whole, and the size of each sector within the circle represents the percentage of each part to the total. By dividing a circle into different sectors according to the proportion of each part, it intuitively shows the proportional relationship between each part and the whole; a list is a finite sequence of data items, that is, a collection of data items arranged in a certain linear order; map plotting refers to the operation of marking specific locations on a map; mouse hover refers to the behavior of a user moving the mouse pointer to an element and holding it for a period of time without clicking or performing other operations; pie charts (also called circular percentage charts) usually refer to using a circular chart (also called a pie chart) to show the percentage relationship of each part to the whole.
[0087] Specifically, the New Energy Structure Module 120 mainly displays monthly statistics on the power generation of various new energy projects, including photovoltaic power generation, wind power, gas power, green electricity generation, and other indicators. It uses three display methods—indicators, line charts, and pie charts—to intuitively show the power generation and proportion of various new energy projects, and provides data comparisons of power generation for each type over the past year.
[0088] In this embodiment, the new energy production module 130 mainly displays project information and project power generation status, including indicators such as project name, oilfield, project type, construction status, commissioning time, designed power generation, project location, installed capacity, number of projects, daily power generation, daily carbon emission reduction, monthly power generation, monthly carbon emission reduction, annual power generation, annual carbon emission reduction, annual clean energy utilization, cumulative power generation, and cumulative carbon emission reduction. The daily power generation change of new energy projects in the past month is displayed as a line chart; basic project information is displayed in a scrolling list format; all other indicators are displayed as indicators; and the system can intuitively display project data statistical analysis and new energy power generation data statistical analysis.
[0089] The New Energy Overview module 140 primarily displays indicators such as project name, project type, designed power generation, project location, installed capacity, number of projects, daily power generation, annual power generation, annual carbon emission reduction, and annual clean energy utilization. Project location information is displayed as map points; project name, project type, and designed power generation are displayed by hovering the mouse, providing a clear visual representation of the geographical distribution of new energy projects; other statistical data are presented in indicator form, highlighting project statistics and annual production analysis data.
[0090] In this embodiment, the new energy operation module 150 mainly displays electricity price, generation cost, and electricity data, including indicators such as peak electricity price, mid-peak electricity price, flat-peak electricity price, off-peak electricity price, comprehensive electricity price, generation cost, grid-connected electricity (green electricity), and grid-connected electricity. The generation cost data is displayed as a line chart showing monthly data for the past year, intuitively illustrating changes in generation cost data, and compared with the oilfield comprehensive electricity price using a bar chart. Monthly generation data and grid-connected electricity data are also displayed as bar charts comparing the operation of new energy projects. Other indicators are displayed in indicator form.
[0091] In this solution, the new energy consumption module 160 mainly displays electricity consumption-related data, including total electricity consumption, year-on-year increase / decrease in electricity consumption, year-on-year increase / decrease in electricity consumption percentage, total green electricity consumption, year-on-year increase / decrease in green electricity consumption percentage, green electricity percentage, enterprise external purchase electricity, year-on-year increase / decrease in enterprise external purchase electricity, year-on-year increase / decrease in enterprise external purchase electricity, enterprise internal purchase electricity, year-on-year increase / decrease in enterprise internal purchase electricity, and self-generated and self-consumed electricity, year-on-year increase / decrease in self-generated and self-consumed electricity, and year-on-year increase / decrease in self-generated and self-consumed electricity. Monthly electricity consumption data is displayed as a line chart comparing monthly data over the past year; green electricity consumption and total electricity consumption for each company are displayed as a bar chart; the overall green electricity consumption percentage is displayed as a circular percentage; all other data are displayed as indicators, providing a clear and intuitive presentation of monthly electricity consumption data and statistical analysis.
[0092] The system comprehensively showcases the current development status of the new energy business through modules on new energy structure, new energy production, new energy overview, new energy operation, and new energy consumption, providing strong support for new energy business management and scientific decision-making.
[0093] The technical solution of this invention, in response to the selection of a company name button, determines the new energy business data corresponding to the company name button and then displays the new energy business data. By executing this technical solution, the current development status of the new energy business is comprehensively displayed from the new energy structure module, new energy production module, new energy overview module, new energy operation module, and new energy consumption module, providing strong support for new energy business management and scientific decision-making.
[0094] It should be understood that the various forms of processes shown above can be used, with steps reordered, added, or deleted. For example, the steps described in this invention can be executed in parallel, sequentially, or in different orders, as long as the desired result of the technical solution of this invention can be achieved, and this is not limited herein.
[0095] The specific embodiments described above do not constitute a limitation on the scope of protection of this invention. Those skilled in the art should understand that various modifications, combinations, sub-combinations, and substitutions can be made according to design requirements and other factors. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this invention should be included within the scope of protection of this invention.
Claims
1. An interactive design system based on a new energy business scenario visualization large screen, characterized in that, include: The module includes a company name module, a new energy structure module, a new energy production module, a new energy overview module, a new energy operation module, and a new energy consumption module; the company name module contains multiple company name buttons; among them, The company name module is used to determine the new energy business data corresponding to the company name button in response to the company name button click operation; The new energy structure module is connected to the company name module and is used to display the monthly power generation status of various new energy projects in the new energy business data; The new energy production module is connected to the company name module and is used to display project information and project power generation status in the new energy business data; The new energy overview module is connected to the company name module and is used to display the geographical distribution and data statistics of new energy projects in the new energy business data; The new energy operation module is connected to the company name module and is used to display the electricity price, power generation cost and power generation data in the new energy business data; The new energy consumption module is connected to the company name module and is used to display electricity consumption-related data in the new energy business data.
2. The system of claim 1, wherein, The new energy structure module uses indicators, line charts, and pie charts to display the monthly power generation of various new energy projects in the new energy business data; the new energy production module uses line charts, lists, and indicators to display project information and power generation in the new energy business data; the new energy overview module uses map plotting, mouse hovering, and indicators to display the geographical distribution and data statistics of new energy projects in the new energy business data; the new energy operation module uses line charts, bar charts, bar chart comparisons, and indicators to display electricity prices, power generation costs, and power generation data in the new energy business data; and the new energy consumption module uses line charts, bar chart comparisons, circular percentages, and indicators to display electricity consumption-related data in the new energy business data.
3. The system of claim 1, wherein, The new energy structure module includes multiple first query buttons; the new energy production module includes multiple second query buttons; the new energy overview module includes multiple third query buttons; the new energy operation module includes multiple fourth query buttons; and the new energy consumption module includes multiple fifth query buttons. The first query button is used to query the monthly power generation status of various new energy projects in the new energy business data; the second query button is used to query project information and power generation status in the new energy business data; the third query button is used to query the geographical distribution and data statistics of new energy projects in the new energy business data; the fourth query button is used to query electricity price, power generation cost and power generation data in the new energy business data; and the fifth query button is used to query electricity consumption related data in the new energy business data.
4. The system of claim 1, wherein, The company name module is located on the upper screen area of the interactive design system based on the new energy business scenario visualization screen; the new energy structure module, the new energy production module, the new energy overview module, the new energy operation module, and the new energy consumption module are located on the lower screen area of the interactive design system based on the new energy business scenario visualization screen.
5. The system of claim 4, wherein, The new energy structure module, the new energy production module, the new energy overview module, the new energy operation module, and the new energy consumption module are arranged from left to right in the lower screen area of the interactive design system based on the new energy business scenario visualization screen.
6. An interactive design method for a large-screen visualization platform based on new energy business scenarios, characterized in that: include: In response to the click of the company name button, confirm the new energy business data corresponding to the company name button; The data on the new energy business will be displayed.
7. The method according to claim 6, characterized in that, The data on the new energy business will be displayed, including: The monthly power generation data of various new energy projects is displayed based on the new energy structure module. The new energy production module displays project information and power generation status from the new energy business data. The New Energy Overview module displays the geographical distribution and statistical data of new energy projects within the new energy business data. The new energy operation module displays the electricity price, power generation cost, and power volume data from the new energy business data. The new energy consumption module displays electricity consumption-related data from the new energy business data.
8. The method of claim 6, wherein, Before determining the new energy business data corresponding to the company name button in response to the click operation of the company name button, the method further includes: Obtain new energy business indicators related to production and operation in new energy business scenarios; The aforementioned new energy business indicators are processed to obtain new energy business data.
9. The method of claim 8, wherein, The new energy business indicators include a first indicator; wherein the first indicator includes indicators related to basic project information, production-related indicators, operation-related indicators, and consumption-related indicators. Accordingly, the new energy business indicators are processed to obtain new energy business data, including: The first indicator will be used as data for new energy business.
10. The method of claim 9, wherein, The new energy business indicators include a second indicator; wherein, the second indicator is other indicators in the new energy business indicators besides the first indicator; Accordingly, the new energy business indicators are processed to obtain new energy business data, including: The first indicator is calculated using a preset calculation rule to obtain the second indicator, which is then used as new energy business data.