Karen N. Miu

Affiliations: 
Drexel University, Philadelphia, PA, United States 
Area:
Electronics and Electrical Engineering, Operations Research
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"Karen Miu"

Children

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Yiming Mao grad student 2005 Drexel
Shiqiong Tong grad student 2006 Drexel
Xiaoguang Yang grad student 2006 Drexel
Valentina Cecchi grad student 2010 Drexel
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Publications

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Rahman M, Cecchi V, Miu K. (2019) Power handling capabilities of transmission systems using a temperature-dependent power flow Electric Power Systems Research. 169: 241-249
Coleman NS, Ogawa KL, Hill J, et al. (2018) Reconfigurable Distribution Automation and Control Laboratory: Solar Microgrid Experiments Ieee Transactions On Power Systems. 33: 6379-6386
Coleman NS, Miu KN. (2018) Identification of Critical Times for Distribution System Time Series Analysis Ieee Transactions On Power Systems. 33: 1746-1754
Coleman NS, Miu KN. (2017) Distribution Load Capability With Nodal Power Factor Constraints Ieee Transactions On Power Systems. 32: 3120-3126
St Leger A, Cecchi V, Basu M, et al. (2016) Automated system for determining frequency dependent parameter model of transmission line in a laboratory environment Measurement: Journal of the International Measurement Confederation. 92: 1-10
Kleinberg MR, Miu K, Segal N, et al. (2014) A partitioning method for distributed capacitor control of electric power distribution systems Ieee Transactions On Power Systems. 29: 637-644
Cecchi V, Knudson M, Miu K. (2013) System Impacts of Temperature-Dependent Transmission Line Models Ieee Transactions On Power Delivery. 28: 2300-2308
Kleinberg MR, Miu K, Chiang HD. (2011) Improving service restoration of power distribution systems through load curtailment of in-service customers Ieee Transactions On Power Systems. 26: 1110-1117
Cecchi V, Leger AS, Miu K, et al. (2011) Incorporating temperature variations into transmission-line models Ieee Transactions On Power Delivery. 26: 2189-2196
Miu K, Cecchi V, Kleinberg M, et al. (2010) A Distribution Power Flow Experiment for Outreach Education Ieee Transactions On Power Systems. 25: 3-9
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