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PACIFIC SCIENCE & ENGINEERING GROUP, INC. SBIR Phase I Award, June 2021

A SBIR Phase I contract was awarded to PACIFIC SCIENCE & ENGINEERING GROUP, INC. in June, 2021 for $200,000.0 USD from the U.S. Department of Energy.

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Contents

sbir.gov/node/2073629
Is a
SBIR/STTR Awards
SBIR/STTR Awards

SBIR/STTR Award attributes

SBIR/STTR Award Recipient
PACIFIC SCIENCE & ENGINEERING GROUP, INC.
PACIFIC SCIENCE & ENGINEERING GROUP, INC.
0
Government Agency
U.S. Department of Energy
U.S. Department of Energy
0
Award Type
SBIR0
Contract Number (US Government)
DE-SC00218410
Award Phase
Phase I0
Award Amount (USD)
200,0000
Date Awarded
June 28, 2021
0
End Date
March 27, 2022
0
Abstract

Modern power grid technologies have helped meet increasing energy demands and prepare for the future but have also added to the complexity of the system and training required of grid operators. Modern grid operators must learn how to monitor and manage the grid to prevent surges and outages, in addition to making wildfire risk mitigation decisions, as effectively and efficiently as possible. Current training is time-consuming, lags technology development, is insufficiently responsive to environmental drivers for change (e.g., increasing need for emergency response), and is often mismatched to a scientific understanding of how people actually learn. The project team proposes to research, develop, and demonstrate an externalized decision-making user interface for training, taking the form of an array of smart training solutions tailored to the tasks and decision-making needs of modern grid operators. These training solutions will be based on the application of a Learning Approach Matrix that aligns training approaches, content, training vignettes, and schedules with the specific end user needs of grid operators. Additionally, our proposed training solutions will leverage and extend a flexible user interface concept that externalizes user interpretation of data and can be used to understand how experts and trainees interpret data differently, providing awareness of difficult to articulate expert decision processes and feedback for trainees. In Phase I, a tailored user-centered design process to develop innovative training solutions to support modern grid operator will be employed. This process will be used to identify training needs of representative grid operator trainers and trainees from a local utility company strongly endorsing this effort, determine the challenges related to grid operator training, design, develop, and assess the technical feasibility of the proposed training solutions, and secure endorsement of this work for modern grid operator training. In Phase II, the project team will develop a data-driven, working prototype of the training solutions for transition to a local utility company, and potentially training vendors, for implementation, testing, and refinement. The training solutions developed in this project will help streamline the training process to better meet the needs of grid operators and, ultimately, support safer, more reliable operation of the modern power grid.

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