• Product
  • Suppliers
  • Manufacturers
  • Solutions
  • Free tools
  • Knowledges
  • Experts
  • Communities
Search


Does the cable tail protection block autorecloser?

Encyclopedia
Encyclopedia
Field: Encyclopedia
0
China

The relationship between the tail protection of the cable and the automatic reclosing.

The problem of reclosing in cable line protection

In cable line protection, the application of automatic reclosing has certain limitations. Automatic reclosing is usually used for overhead line transmission and power supply lines as an effective accident prevention measure. However, for cable lines, due to their characteristics, the application of automatic reclosing is not common.

The characteristics of cable lines

The cable line has the following characteristics compared to the overhead line:

  • Less affected by external forces: Cable lines buried underground or laid in cable ducts are less influenced by external environments (such as wind and lightning strikes).

  • Fewer Instantaneous Failures: Due to less influence from external forces, there are relatively few instantaneous failures in cable lines.

  • Mostly permanent faults: Faults in cable lines are mostly permanent faults due to insulation breakdown, such as construction digging and connector burning.

The Challenges of Automatic Reclosing in Cable Lines

Since cable line faults are mostly permanent, the success rate of automatic reclosing is low in these cases. Moreover, reclosing may aggravate the degree of insulation damage, further expanding the impact range of the fault and making the working environment of the circuit breaker more severe, causing another impact on the system.

The function of the cable tail protection

Cable tail protection is mainly a protective measure for the end of the cable, aiming to prevent insulation breakdown and other forms of damage at the end of the cable. This protection usually includes insulation monitoring, overcurrent protection and other means.

The relationship between the tail protection of the cable and the automatic reclosing.

The protection at the tail of the cable does not directly prevent the execution of automatic reclosing. However, since faults in cable lines are mostly permanent, the success rate of automatic reclosing is still low, even with tail protection measures in place. Therefore, in practical engineering, protective measures for cable lines usually do not employ automatic reclosing.

Conclusion

To sum up, the protection at the end of the cable will not directly prevent the execution of automatic reclosing. However, since most faults in cable lines are permanent faults, the success rate of automatic reclosing in such cases is low. Therefore, automatic reclosing is generally not adopted in practical engineering.

Give a tip and encourage the author!
Recommended
THD Measurement Error Standards for Power Systems
THD Measurement Error Standards for Power Systems
Error Tolerance of Total Harmonic Distortion (THD): A Comprehensive Analysis Based on Application Scenarios, Equipment Accuracy, and Industry StandardsThe acceptable error range for Total Harmonic Distortion (THD) must be evaluated based on specific application contexts, measurement equipment accuracy, and applicable industry standards. Below is a detailed analysis of key performance indicators in power systems, industrial equipment, and general measurement applications.1. Harmonic Error Standar
Edwiin
11/03/2025
How Vacuum Tech Replaces SF6 in Modern Ring Main Units
How Vacuum Tech Replaces SF6 in Modern Ring Main Units
Ring main units (RMUs) are used in secondary power distribution, directly connecting to end-users such as residential communities, construction sites, commercial buildings, highways, etc.In a residential substation, the RMU introduces 12 kV medium voltage, which is then stepped down to 380 V low voltage through transformers. The low-voltage switchgear distributes electrical energy to various user units. For a 1250 kVA distribution transformer in a residential community, the medium-voltage ring m
James
11/03/2025
Why Monitoring Accuracy Matters in Power Quality Systems
Why Monitoring Accuracy Matters in Power Quality Systems
The Critical Role of Monitoring Accuracy in Power Quality Online DevicesThe measurement accuracy of online power quality monitoring devices is the core of the power system’s “perception capability,” directly determining the safety, economy, stability, and reliability of power supply to users. Inadequate accuracy leads to misjudgment, incorrect control, and flawed decision-making—potentially causing equipment damage, economic losses, or even grid failures. Conversely, high accuracy enables precis
Oliver Watts
10/30/2025
How Does Power Dispatching Ensure Grid Stability and Efficiency?
How Does Power Dispatching Ensure Grid Stability and Efficiency?
Electric Power Dispatching in Modern Power SystemsThe power system is a critical infrastructure of modern society, providing essential electrical energy for industrial, commercial, and residential use. As the core of power system operation and management, electric power dispatching aims to meet electricity demand while ensuring grid stability and economic efficiency.1. Basic Principles of Electric Power DispatchingThe fundamental principle of power dispatching is to balance supply and demand by
Echo
10/30/2025
Related Products
Send inquiry
Download
Get the IEE Business Application
Use the IEE-Business app to find equipment, obtain solutions, connect with experts, and participate in industry collaboration anytime, anywhere—fully supporting the development of your power projects and business.