Self-Healing Grid Is Widely Being Adopted Across Several Regions as the Focus on Grid Modernization and Cost Reduction Is Increasing
Self-Healing Grid |
A Self-Healing Grid is a network of electric infrastructures that
responds to physical damages. The network's sensors and control technology
enable it to isolate a damaged area and restore the system to normal. This
feature also prevents damage from spreading through the entire grid. This
ability is critical for ensuring grid stability.
Increasing focus on grid modernization and cost reduction is driving the
need for Self-Healing Grid technology. Along with ensuring the
safety and reliability of the power network, Self-Healing Grids can also help
improve energy flow. These systems are designed to detect and correct any
faults, and to redistribute network resources as required to ensure a
continuous service. This is the main objective of Smart Grids.
With more electric vehicles hitting the road, the demand for power
distribution systems is increasing worldwide. Self-Healing
Grid use sensors, automated controls, and advanced
software to monitor and repair distribution network errors. The system can also
monitor and reconfigure itself to achieve grid stability and reliability.
Further, these systems can be governed by government regulations and technological
innovations.
While some damage to physical infrastructure is inevitable in natural
disasters, Smart Grid technology can isolate damage and expedite recovery.
Moreover, the current power grid is facing a number of critical challenges.
Increasing demand is outstripping current capacity. Moreover, the lack of centralized
ownership of the infrastructure in many regions has made it difficult to make
upgrades to improve its reliability. Countries such as India and China in Asia
Pacific region are increasing investing in advanced grid infrastructure, which
is driving the demand for self-healing technology. In March 2022, Analog
Devices, Inc. collaborated with Gridspertise for advancement of quality and
resiliency of smart grids across the globe and this collaboration supports the
development of software and hardware supporting distribution grid self-healing
and adaptation.
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