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Addressing Climate Change Impacts on Maternal and Child Health

The intersection of climate change and maternal, newborn, and child health (MNCH) was at the heart of the fourth dialogue in PMNCH's Ready, Set, Implement Dialogue Series, held on February 27, 2025. This virtual gathering brought together over 300 global health and climate leaders, decision-makers, and advocates. The dialogue focused on the severe and often overlooked impacts of climate change on pregnant women, newborns, children, and adolescents, urging greater action to build climate-resilient societies.

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New England’s 100-Hour Battery Boosts Offshore Wind

New England is setting ambitious goals to enhance its offshore wind energy capacity with the introduction of a groundbreaking 100-hour battery storage system. This innovative approach is part of a broader strategy to address the intermittency of renewable energy sources and ensure a reliable and...


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Climate Change News

FERC Proposes Ride-Through Standards for Renewables

The Federal Energy Regulatory Commission (FERC) is seeking public input on proposed "ride-through" reliability standards for inverter-based resources (IBRs), including wind, solar, and battery systems. These standards aim to ensure that IBRs can maintain operation during grid disturbances, such as...

Renewable Energy News

New Solar Maker Enters U.S. Market

NuVision Solar, an American-owned and operated manufacturer of solar cells and modules, has announced its entry into the North American market. This strategic move aims to bolster domestic solar manufacturing and reduce reliance on imported solar components. Background The U.S. solar industry has...

Overhead T&D

Application of Symmetric Conditions in the Simulation of High Voltage Power Transmission Models

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The height of the power transmitting towers is usually in the range of 10m to 40m and the separation between two consecutive towers is about 200m to 400m. In addition, the area of the ground that needs to be considered in the simulation is large. Therefore, Finite Element Method (FEM) is not suitable for simulation of this application. Whereas Boundary Element Method (BEM) is best suited for these open region problems. This paper refers to the 3D Electric Field Solver COULOMB™ for the simulation method and presented results. The BEM method is based on the discretization of Maxwell’s equations in integral form. BEM’s distinctive strength lies in its ability to achieve a high degree of precision both locally and across the entirety of the problem domain. Though the BEM method is suitable for open region problems, it requires a computing machine with large RAM and CPU power to obtain a...

Overhead


Evolution of Outage Management Systems

Examining the evolution of outage management systems BY GERALD GRAY & JOHN SIMMINS, Electric Power Research Institute (EPRI) Once again, a major storm event, in this case Hurricane Sandy, has brought increased attention to a utility’s capability to respond to and mitigate damage to its...

Underground


Since 1952 Tallman has been Setting the Standard for Linemen

At Tallman Equipment, we are an employee-owned company that provides tools, equipment, and services for the construction and maintenance of Electrical Transmission and distribution infrastructure. Whether it’s a large, multi-state construction project, managing a storm, or providing power to...

Infrastructure


The Overlooked Benefits of High-Performance Powerline Conductors

Background:For over 100 years Transmission Engineers have relied on aluminum conductors strengthened by steel core wires, commonly referred to as ACSR conductors. These conductors offered reasonable performance and durability and were capable of operating at temperatures up to 93° C. Above this...