Network News: With the development of computer technology, communication technology, power system protection and automatic control technology, the level of automated operation in the power industry has been continuously improved. At present, it has been realized that the equipment operation status and related data of the production site can be transmitted to the remote dispatching center. At the same time, the dispatching center can also control and adjust the remote on-site equipment, which is often called "telemetry", "telecommunication", "remote control" and "remote adjustment".
However, for some important power facilities, such as high-voltage transmission lines, it is far from enough to have only "four remotes". Because the dispatching center cannot intuitively understand the on-site situation, the transmission site is damaged and interfered by various man-made or natural disasters, and there is no record of video data, which cannot be timely prevented or effectively traced to the scene of the incident, resulting in immeasurable losses. Undoubtedly, if the fifth remote - "remote viewing" is added on the basis of the "four remotes" to realize remote real-time video monitoring, it can truly solve many problems of intuitive monitoring of power facilities.
For video monitoring of high-voltage transmission lines, due to the wide distribution of lines, long distances, and complex application environments, how to transmit monitoring data back to the dispatching center has become the biggest problem. Recently, Shenzhen Telikang Technology Co., Ltd. has built a multi-hop high-bandwidth wireless transmission network based on the wireless GPRSDEGECDMA3G transmission method and launched a high-voltage transmission line video monitoring system. At present, the high-voltage transmission line video monitoring system has been put into practical use in Jilin and other places. The high
-voltage transmission line video monitoring system is based on the public network wireless (GPRSDEGECDMA3G) data channel as a transmission method, and the transmission includes environmental data information, alarm data information (alarm information such as tower climbing alarm and vibration alarm), video information (line video monitoring, tower base video monitoring, infrared night video monitoring), so as to realize the online real-time monitoring of the high-voltage transmission and transformation line/tower base. At the same time, it has a powerful monitoring center, which can support real-time alarm capture pictures, real-time video, and local storage. It also has a full-duplex voice channel for intercom. At the same time, it is powered by its own solar energy to complete all-weather work and achieve the effect of real-time monitoring.
With the rapid development of the national economy, the demand for electricity in all walks of life is increasing, and the quality of power supply (stability, uninterrupted and accompanying services) provided by the power supply department is also becoming higher and higher. Therefore, the safety of the power grid operation of long-distance high-voltage transmission lines is particularly important. As a fully functional video surveillance system tailored for safe power transmission, the high-voltage transmission line video surveillance system plays an irreplaceable role in ensuring the safe operation of power.
Reference address:High-voltage transmission line video monitoring system creates a "five-remote" power safety protection network
However, for some important power facilities, such as high-voltage transmission lines, it is far from enough to have only "four remotes". Because the dispatching center cannot intuitively understand the on-site situation, the transmission site is damaged and interfered by various man-made or natural disasters, and there is no record of video data, which cannot be timely prevented or effectively traced to the scene of the incident, resulting in immeasurable losses. Undoubtedly, if the fifth remote - "remote viewing" is added on the basis of the "four remotes" to realize remote real-time video monitoring, it can truly solve many problems of intuitive monitoring of power facilities.
For video monitoring of high-voltage transmission lines, due to the wide distribution of lines, long distances, and complex application environments, how to transmit monitoring data back to the dispatching center has become the biggest problem. Recently, Shenzhen Telikang Technology Co., Ltd. has built a multi-hop high-bandwidth wireless transmission network based on the wireless GPRSDEGECDMA3G transmission method and launched a high-voltage transmission line video monitoring system. At present, the high-voltage transmission line video monitoring system has been put into practical use in Jilin and other places. The high
-voltage transmission line video monitoring system is based on the public network wireless (GPRSDEGECDMA3G) data channel as a transmission method, and the transmission includes environmental data information, alarm data information (alarm information such as tower climbing alarm and vibration alarm), video information (line video monitoring, tower base video monitoring, infrared night video monitoring), so as to realize the online real-time monitoring of the high-voltage transmission and transformation line/tower base. At the same time, it has a powerful monitoring center, which can support real-time alarm capture pictures, real-time video, and local storage. It also has a full-duplex voice channel for intercom. At the same time, it is powered by its own solar energy to complete all-weather work and achieve the effect of real-time monitoring.
With the rapid development of the national economy, the demand for electricity in all walks of life is increasing, and the quality of power supply (stability, uninterrupted and accompanying services) provided by the power supply department is also becoming higher and higher. Therefore, the safety of the power grid operation of long-distance high-voltage transmission lines is particularly important. As a fully functional video surveillance system tailored for safe power transmission, the high-voltage transmission line video surveillance system plays an irreplaceable role in ensuring the safe operation of power.
Previous article:Application of 3D Design Technology in Thermal Power Plant Design
Next article:China Power Grid to accelerate strategic layout of international business in the next five years
- Popular Resources
- Popular amplifiers
Latest Industrial Control Articles
- Molex leverages SAP solutions to drive smart supply chain collaboration
- Pickering Launches New Future-Proof PXIe Single-Slot Controller for High-Performance Test and Measurement Applications
- CGD and Qorvo to jointly revolutionize motor control solutions
- Advanced gameplay, Harting takes your PCB board connection to a new level!
- Nidec Intelligent Motion is the first to launch an electric clutch ECU for two-wheeled vehicles
- Bosch and Tsinghua University renew cooperation agreement on artificial intelligence research to jointly promote the development of artificial intelligence in the industrial field
- GigaDevice unveils new MCU products, deeply unlocking industrial application scenarios with diversified products and solutions
- Advantech: Investing in Edge AI Innovation to Drive an Intelligent Future
- CGD and QORVO will revolutionize motor control solutions
MoreSelected Circuit Diagrams
MorePopular Articles
- Innolux's intelligent steer-by-wire solution makes cars smarter and safer
- 8051 MCU - Parity Check
- How to efficiently balance the sensitivity of tactile sensing interfaces
- What should I do if the servo motor shakes? What causes the servo motor to shake quickly?
- 【Brushless Motor】Analysis of three-phase BLDC motor and sharing of two popular development boards
- Midea Industrial Technology's subsidiaries Clou Electronics and Hekang New Energy jointly appeared at the Munich Battery Energy Storage Exhibition and Solar Energy Exhibition
- Guoxin Sichen | Application of ferroelectric memory PB85RS2MC in power battery management, with a capacity of 2M
- Analysis of common faults of frequency converter
- In a head-on competition with Qualcomm, what kind of cockpit products has Intel come up with?
- Dalian Rongke's all-vanadium liquid flow battery energy storage equipment industrialization project has entered the sprint stage before production
MoreDaily News
- Allegro MicroSystems Introduces Advanced Magnetic and Inductive Position Sensing Solutions at Electronica 2024
- Car key in the left hand, liveness detection radar in the right hand, UWB is imperative for cars!
- After a decade of rapid development, domestic CIS has entered the market
- Aegis Dagger Battery + Thor EM-i Super Hybrid, Geely New Energy has thrown out two "king bombs"
- A brief discussion on functional safety - fault, error, and failure
- In the smart car 2.0 cycle, these core industry chains are facing major opportunities!
- Rambus Launches Industry's First HBM 4 Controller IP: What Are the Technical Details Behind It?
- The United States and Japan are developing new batteries. CATL faces challenges? How should China's new energy battery industry respond?
- Murata launches high-precision 6-axis inertial sensor for automobiles
- Ford patents pre-charge alarm to help save costs and respond to emergencies
Guess you like
- Discrete Difference Amplifiers vs. Integrated Solutions
- [ATmega4809 Curiosity Nano Review] Using MCC in MPALB Xpress
- Use a simple field strength meter to test 433 wireless coverage, wireless dead spots, and compare antenna differences
- Will the reset pin of the microcontroller be invalid?
- Received the X-NUCLEO-IKS01A3 sensor kit
- 【Mil MYD-YA15XC-T】- 0: How to power on?
- Xilinx Zynq-7015 SoC Industrial Core Board SOM-XQ7Z15 Cortex-A9 + Artix-7
- ARM Architecture and Programming
- Gigabit RISC-V GD32VF103USB CDC debugging
- Problems encountered in debugging the Southchip SC8721 high-efficiency synchronous buck-boost converter