KR-20260063926-A - INDUSTRIAL COMPLEX RENEWABLE ENERGY USAGE DATA COLLECTION AND ANALYSIS SYSTEM
Abstract
The present invention comprises an edge server (110) equipped with an energy consumption collection unit (112) that collects information on the amount of power consumed by each process and line of production facilities (11) and indirect facilities (12) in each factory within an industrial complex through an IoT-based smart meter (111), and a power generation collection unit (113) that collects information on the amount of power generated from renewable energy power generation facilities (13); an analysis server (120) that receives and stores information on the amount of power consumed and the amount of power generated from the edge server (110), provides location information of the factory and renewable energy power generation facilities (13), company name, each power usage amount, and each power production amount through a dashboard for monitoring, analyzes past energy consumption patterns for each process, line, and indirect facilities (12), and predicts future energy consumption patterns; and controls the amount of renewable energy supplied from the power generation facilities (13) to the production facilities (11) or indirect facilities (12) according to the analysis of energy consumption patterns, and checks for abnormalities in the production facilities (11), indirect facilities (12), and power generation facilities (13). An industrial complex renewable energy usage data collection and analysis system is disclosed, which includes an integrated management platform (130) that identifies and propagates warning information, and collects, analyzes, and monitors power usage for each individual factory constituting the industrial complex.
Inventors
- 김정엽
- 지경현
- 박태관
Assignees
- 주식회사 티허브
Dates
- Publication Date
- 20260507
- Application Date
- 20241031
Claims (7)
- An edge server equipped with a power consumption collection unit that collects information on power consumption by process and line of production facilities and indirect facilities for each factory within an industrial complex, respectively, through an IoT-based smart meter, and a power generation collection unit that collects information on power generation from renewable energy generation facilities; An analysis server that receives and stores the power consumption information and power generation information from the edge server, provides location information, company name, and each power usage and each power production amount of the factory and the renewable energy generation facility through a dashboard for monitoring, and predicts future energy consumption patterns by analyzing past energy consumption patterns for each process, line, and indirect facility; and An integrated management platform comprising: controlling the amount of renewable energy supplied from the power generation facility to the production facility or the indirect facility according to the analysis of the energy consumption pattern, and identifying abnormalities in the production facility, the indirect facility, and the power generation facility to propagate warning information; Industrial complex renewable energy usage data collection and analysis system.
- In Article 1, The above-mentioned power generation collection unit is characterized by including a receiving meter that measures and collects the amount of electricity transmitted from a renewable energy generation facility, excluding a solar power generation facility, to a distribution panel, and a reverse meter that measures and collects the amount of electricity transmitted back from the distribution panel to the solar power generation facility. Industrial complex renewable energy usage data collection and analysis system.
- In Article 1, The above analysis server analyzes whether the current month's maximum demand power consumption for each production facility or indirect facility within the industrial complex exceeds the preset maximum allowable power usage, and The above integrated management platform is characterized by displaying through the dashboard or providing warning information to an administrator terminal in accordance with the excess of the above power consumption. Industrial complex renewable energy usage data collection and analysis system.
- In Paragraph 3, The analysis server is characterized by generating load data from the power consumption information and the power generation information and storing it in a DB, periodically processing the primary load data to load statistical data into the DB, and analyzing the statistical data to calculate the power consumption and power generation for a specific period. Industrial complex renewable energy usage data collection and analysis system.
- In Article 1, The analysis server is characterized by visualizing and providing, through the dashboard, the current month's electricity usage and the increase/decrease amount compared to the previous month, the current month's maximum demand power and the increase/decrease amount compared to the previous month, the current month's total energy usage and the increase/decrease amount compared to the previous month, the current month's greenhouse gas emissions and the increase/decrease amount compared to the previous month, the electricity usage and increase/decrease amount by production facility and indirect facility, the electricity usage and maximum demand power by time of day, and the monthly electricity usage and maximum demand power over the past 12 months. Industrial complex renewable energy usage data collection and analysis system.
- In Article 5, Characterized by the ability to access information provided through the above dashboard via an administrator app, Industrial complex renewable energy usage data collection and analysis system.
- In Article 1, The above analysis server analyzes the maximum demand power of a specific period and the time period in which the maximum demand power occurs, provides information on load power and average power factor before and after the time period, and analyzes the power consumption information and power generation information of the specific period to identify the trend of active power, the trend of average power factor, and the trend of current imbalance rate over time, thereby analyzing whether power quality is maintained at a certain level. Industrial complex renewable energy usage data collection and analysis system.
Description
Industrial Complex Renewable Energy Usage Data Collection and Analysis System The present invention relates to a renewable energy usage data collection and analysis system for industrial complexes that collects, analyzes, and monitors electricity usage for each individual factory constituting the industrial complex. As is well known, factories of a certain size or larger that make up industrial complexes consume a significant amount of electricity, and as factory facilities are modernized, electricity consumption is increasing. Meanwhile, electricity users, energy suppliers, and regulatory authorities are conducting various studies on Factory Energy Management Systems (FEMS) for the efficient production and use of energy. Accordingly, there is a need to further advance FEMS to establish an energy data collection system for each industrial complex and to build a system capable of monitoring and managing energy usage status by product and process. Figure 1 illustrates a configuration diagram of an industrial complex renewable energy usage data collection and analysis system according to an embodiment of the present invention. Figure 2 illustrates the energy and data flows, respectively, in the industrial complex renewable energy usage data collection and analysis system of Figure 1. Figure 3 illustrates a dashboard of the industrial complex renewable energy usage data collection and analysis system of Figure 1. Hereinafter, embodiments of the present invention having the aforementioned features will be described in more detail with reference to the attached drawings. An industrial complex renewable energy usage data collection and analysis system according to an embodiment of the present invention comprises: an edge server (110) equipped with an energy consumption collection unit (112) that collects information on the amount of power consumed by each process and line of production facilities (11) and indirect facilities (12) in each factory within the industrial complex through an IoT-based smart meter (111); an energy generation collection unit (113) that collects information on the amount of power generated from renewable energy generation facilities (13); an analysis server (120) that receives and stores information on the amount of power consumed and the amount of power generated from the edge server (110), provides location information of the factory and renewable energy generation facilities (13), company name, each power usage amount, and each power production amount through a dashboard for monitoring, analyzes past energy consumption patterns for each process, line, and indirect facilities (12), and predicts future energy consumption patterns; and controls the amount of renewable energy supplied from the power generation facilities (13) to the production facilities (11) or indirect facilities (12) according to the analysis of energy consumption patterns, and the production facilities (11) and The gist of the invention is to collect, analyze, and monitor power consumption for each individual factory constituting an industrial complex, including an integrated management platform (130) that identifies abnormalities in indirect facilities (12) and power generation facilities (13) and transmits warning information. Hereinafter, with reference to the drawings, the industrial complex renewable energy usage data collection and analysis system with the aforementioned configuration will be described in detail as follows. First, the edge server (110), with reference to FIGS. 1 and 2, is equipped with an energy consumption collection unit (112) that collects information on the amount of power consumed by each process, line, and utility of each production facility (11) in each factory within the industrial complex and the amount of power consumed by indirect facilities (12) such as warehouses and offices through IoT-based smart meters (111) and AMI (Advanced Metering Intrastructure) placed at each collection point (A), and a power generation collection unit (113) that collects information on the amount of power generated from renewable energy generation facilities (13) such as solar power plants and wind power plants through an inverter (113a) and an RTU (Remote Terminal Unit). Here, as illustrated in FIG. 2, the power generation collection unit (113) may include a receiving meter (113c) that measures and collects the amount of power transmitted from a renewable energy power generation facility (13), excluding a solar power generation facility, to a distribution board (113b), and a reverse flow meter (113d) that measures and collects the amount of power transmitted back from the distribution board (113b) to a solar power generation facility. For example, the reverse meter (113d) measures the first amount of power that is reverse-transmitted from the distribution panel (113b) to the power grid of the renewable energy generation facility (13), the receiving meter (113c) measures the second amount of power supplied f