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Free Expert Guides on Power Systems, Circuit Design & Electrical Troubleshooting

Access free engineering resources from IEE Business—covering power design, circuit layout, equipment selection, and troubleshooting. Expert-developed guides help engineers, procurement, and project teams make better decisions. Stay ahead on smart grids, renewables, efficiency, and AI tools. Improve reliability, reduce downtime, and enhance outcomes with real-world solutions. Explore our knowledge hub today.
High-Voltage Technology: Can a high-voltage circuit breaker motion characteristic tester measure with dual-ended grounding?
Can dual-ended grounding be measured?Dual-ended grounding can be measured, but traditional high-voltage circuit breaker motion characteristic testers cannot perform such measurements. The conditions for dual-ended grounding are relatively complex; measurement accuracy must be ensured while simultaneously dealing with numerous electromagnetic interferences such as impedance and high-frequency currents. Therefore, a high-voltage circuit breaker tester specifically designed for dual-ended grounding
11/14/2025
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Infrared temperature sensors applied in temperature monitoring of high-voltage switchgear contacts
High-voltage switchgear refers to electrical equipment operating within a voltage range of 3.6 kV to 550 kV, used in power generation, transmission, distribution, energy conversion, and consumption systems for switching, control, or protection purposes. It primarily includes high-voltage circuit breakers, high-voltage disconnectors and earthing switches, high-voltage load switches, high-voltage auto-reclosers and sectionalizers, high-voltage operating mechanisms, high-voltage explosion-proof swi
11/14/2025
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Measures to Ensure Zero Busbar Voltage Loss in Substations
I. IntroductionSubstations serve as critical hubs in power systems, responsible for transmitting electrical energy from power plants to end users. Busbars, as a key component of substations, play an essential role in power distribution and transmission. However, busbar voltage loss incidents occur from time to time, posing a serious threat to the safe and stable operation of power systems. Therefore, ensuring zero busbar voltage loss in substations has become a crucial issue in power system oper
11/14/2025
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Advantages and Disadvantages of Double-Busbar Configuration in Substations
Advantages and Disadvantages of Double-Busbar Configuration in SubstationsA substation with double-busbar configuration employs two sets of busbars. Each power source and each outgoing line is connected to both busbars via one circuit breaker and two disconnectors, allowing either busbar to serve as the working or standby busbar. The two busbars are interconnected through a bus tie circuit breaker (referred to as the bus coupler, QFL), as shown in the figure below.I. Advantages of Double Busbar
11/14/2025
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Development of a Lifting Device for High-Voltage Disconnectors in Complex Environments
In power systems, high-voltage disconnectors in substations have suffered from aging infrastructure, severe corrosion, increasing defects, and insufficient current-carrying capacity of the main conductive circuit, significantly compromising power supply reliability. There is an urgent need to carry out technical retrofits on these long-in-service disconnectors. During such retrofits, to avoid interrupting customer power supply, the common practice is to place only the retrofit bay under maintena
11/13/2025
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Hitachi Energy to deliver the world’s first 550kV SF6-free eco-efficient GIS.
Hitachi Energy recently announced it will supply State Grid Corporation of China’s Central China Branch with the world’s first 550 kV SF₆-free GIS. This groundbreaking innovation marks a significant milestone in grid decarbonization and contributes to China’s commitment to achieving carbon neutrality by 2060.State Grid Corporation of China is the world’s largest power grid operator, serving 88% of China’s territory and over 1.1 billion people. As a leader in the energy sector, State Grid activel
11/13/2025
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Corrosion and Protective Practices of High-Voltage Disconnectors
High-voltage disconnectors are extremely widely used, and therefore people pay great attention to potential problems that may arise with them. Among various faults, corrosion of high-voltage disconnectors is a major concern. In light of this situation, this article analyzes the composition of high-voltage disconnectors, types of corrosion, and faults caused by corrosion. It also investigates the causes of disconnector corrosion and studies theoretical foundations and practical techniques for cor
11/13/2025
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Faults and Handling Measures for 220 kV Outgoing Circuit Breakers and Disconnectors
1. Significance of Enhancing Fault Handling for 220 kV Outgoing Circuit Breakers and Disconnectors220 kV transmission lines are highly efficient and energy-saving high-voltage power transmission systems that significantly benefit daily life. A fault in a circuit breaker can severely compromise the safety and reliability of the entire power grid. As critical components of high-voltage transmission systems, circuit breakers and disconnectors play essential roles in power flow control and fault pro
11/13/2025
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Rockwill Unveils New AI Strategy to Drive Industrial AI Innovation and Accelerate Real-World Deployment
Rockwill Accelerates AI Innovation to Empower the Future of Automation and ElectrificationArtificial intelligence (AI) is reshaping industries at an unprecedented pace. As a global technology leader in electrification and automation, Rockwill is deeply integrating AI across its entire portfolio, actively advancing more than 100 AI initiatives that span both analytical AI and generative AI—accelerating the development of intelligent solutions for tomorrow.At a recent strategic launch event in Zhe
11/13/2025
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Why Do Disconnectors Overheat? Diagnosis & Fixes
Causes of Heating in Disconnectors Incomplete closing: This significantly reduces the current-carrying cross-sectional area, leading to increased contact resistance. Loose fasteners or degraded springs: Corrosion or overheating of the blade or contact springs reduces spring pressure; improper operating force may also cause misalignment of contact surfaces. Poor contact closure: Results in oxidation and contamination of contact surfaces; contacts may also be damaged by arcing during operation, an
11/13/2025
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