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Based on the characteristics of the energy industry, WideIOT utilizes advanced technologies such as the Internet of Things, big data, and artificial intelligence. With the collection and analysis of data from various energy sources (including water, electricity, heat, and gas) as its foundation, it provides one-stop energy digitalization solutions covering energy data collection, equipment supervision, energy consumption monitoring, optimized scheduling, energy-saving analysis, energy control, and safety early warning management. These solutions help energy enterprises improve energy utilization efficiency, reduce operating costs, and drive the digital transformation and green development of the energy industry.
It is applicable to various energy-consuming scenarios such as factories, parks, residential communities, power facilities, buildings, and public facilities.

WideIOT takes energy collection gateways and industrial data acquisition terminals as core sensing devices, covering data collection from energy and power equipment across multiple scenarios. Through various network methods such as 5G/4G/WiFi/Ethernet/LoRa, energy consumption data is securely uploaded to the energy management platform. The platform enables remote monitoring of energy-consuming equipment status and real-time data management, building an energy digitalization chain of "terminal collection - data transmission - cloud-based management and control" for users, helping them accurately grasp energy consumption situations.

From hardware devices to software platforms, build a smart energy system.
5G/4G networking
WiFi networking
VPN networking
Reconnect after disconnection
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Data Transmission
High-Speed Performance
Network Redundancy
Integrated Security
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IP Address Translation
Cross-Segment Access
Network Isolation Protection
VPN Networking
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Equipment access
Efficient data collection
Configuration Control
Data analysis
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Remote configuration
Remote debugging
Remote upload and download
Remote maintenance
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Project monitoring
Device interconnection
No public IP required
Fast and low cost access
View details→For different application scenarios of Energy Digitalization, provide customized solutions.
The role of microgrids in ensuring safe and reliable power supply in the region has been highly recognized by the industry and society. Distributed microgrids have outstanding advantages, but their control is difficult. Therefore, smart microgrids are widely promoted and applied. According to the project characteristics of distributed sites, WideIOT has many successful cases and a complete set of solutions from on-site data collection to platform application.
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With the continuous increase in distributed photovoltaic power stations, their operation and management face numerous challenges. For instance, the scattered distribution of stations makes manual inspections difficult and costly; real-time monitoring of equipment status is challenging, leading to delayed fault detection and resolution. To enhance the power generation efficiency of distributed photovoltaic power stations, reduce operational and maintenance costs, and ensure stable system operation, an advanced photovoltaic monitoring and management system is required.
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Wind farms are typically located in remote areas, featuring numerous wind turbines spread across vast expanses. Traditional management methods struggle to provide real-time, comprehensive monitoring and maintenance for these turbines. Turbine operation is influenced by various factors, including weather conditions, and equipment failures can lead to power generation interruptions and economic losses. To enhance operational efficiency, reduce maintenance costs, and maximize the utilization of wind energy resources, a comprehensive wind farm monitoring and management system is essential.
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As a critical component of the power supply chain, the safe and stable operation of distribution substations is of paramount importance. With the continuous growth in electricity demand and the expansion of grid scale, the increasing number and complex structure of substation equipment make traditional manual inspection and monitoring methods inadequate for real-time, comprehensive surveillance. Equipment failures can lead to power outages, disrupting normal electricity supply to users. To enhance the reliability and safety of distribution substations, an intelligent monitoring system is required.
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In order to realize real-time dynamic monitoring of oilfields, provide accurate data basis for production operation and management decisions, and comprehensively improve the level of safety management, many customers urgently need to build oilfield IoT systems.WideIOT focuses on the overall solution of the Internet of Things, and has corresponding independent research and development products from on-site data collection to the platform, which can meet the various needs of customers for building oilfield systems.
View details →Numerous enterprises choose WideIOT to jointly promote enterprise digital transformation.
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