grid interoperability
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Author(s):  
Amelie Gyrard ◽  
Antonio Kung ◽  
Olivier Genest ◽  
Alain Moreau

2021 ◽  
Author(s):  
Avi Gopstein ◽  
Cuong Nguyen ◽  
Cheyney O'Fallon ◽  
Nelson Hastings ◽  
David Wollman

Author(s):  
Hossein Shahinzadeh ◽  
Atefeh-sadat Mirhedayati ◽  
Mahdi Shaneh ◽  
Hamed Nafisi ◽  
Gevork B. Gharehpetian ◽  
...  

2020 ◽  
Author(s):  
Avi Gopstein ◽  
Cuong Nguyen ◽  
Danielle Sass Byrnett ◽  
Kerry Worthington ◽  
Christopher Villarreal

2019 ◽  
Author(s):  
Dhananjay Anand ◽  
Kevin G Brady Jr. ◽  
Eugene Song ◽  
Cuong Nguyen ◽  
Kang Lee ◽  
...  

Author(s):  
Arun Veeramany ◽  
James T. Woodward ◽  
Donald J. Hammerstrom

Valuation of transactive energy (TE) systems should be supported by a structured and systematic approach to uncertainty identification, assessment, and treatment in the interest of risk-informed decision making. The proposed approach, a variation of fault tree analysis, is anticipated to support valuation analysts in analyzing conventional and transactive system scenarios. This approach allows for expanding the entire tree up to the level of minute details or collapsing them to a level sufficient enough to get an overview of the problem. Quantification scheme for the described approach lends itself for valuation. The method complements value exchange analysis, simulation, and field demonstration studies. The practicality of the proposed approach is demonstrated through uncertainty assessment of the smart grid interoperability panel peak heat day scenario.


Author(s):  
Matthias Frohner ◽  
Marion Gottschalk ◽  
Gerald Franzl ◽  
Richard Pasteka ◽  
Mathias Uslar ◽  
...  

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