The Canadian Academy of Engineering
William Rosehart mainly investigates Mathematical optimization, Electric power system, Electricity, Power-flow study and Microeconomics. He interconnects Probabilistic logic, Software deployment and Robustness in the investigation of issues within Mathematical optimization. The various areas that William Rosehart examines in his Electric power system study include Boundary, Renewable energy and Voltage.
His Electricity research integrates issues from Wind power, Optimization problem, Stand-alone power system and Planner. His Power-flow study research is multidisciplinary, incorporating perspectives in Voltage optimisation, Voltage regulation and Voltage collapse. His Microeconomics study incorporates themes from Load management, Load regulation, System stability and Control.
William Rosehart mostly deals with Mathematical optimization, Electric power system, Electricity, Control theory and Wind power. His Mathematical optimization study deals with Probabilistic logic intersecting with Random variable. In his work, Power flow is strongly intertwined with Voltage, which is a subfield of Electric power system.
His study in the fields of Electricity market under the domain of Electricity overlaps with other disciplines such as Scale. William Rosehart has researched Control theory in several fields, including Control engineering, Estimation theory and AC power. The Wind power study which covers Environmental economics that intersects with Renewable energy and Energy storage.
His main research concerns Mathematical optimization, Natural gas, Integrated business planning, Teamwork and Electric power system. His research ties Power transmission and Mathematical optimization together. William Rosehart incorporates a variety of subjects into his writings, including Integrated business planning, Electricity generation, Electric power, Electricity and Environmental economics.
By researching both Electricity and Line, William Rosehart produces research that crosses academic boundaries. William Rosehart works mostly in the field of Electric power system, limiting it down to topics relating to Reliability and, in certain cases, Probabilistic logic and Transmission system. In Robust optimization, William Rosehart works on issues like Demand response, which are connected to Electricity market.
William Rosehart mainly focuses on Natural gas, Mathematical optimization, Integrated business planning, Reliability engineering and Electricity generation. The concepts of his Natural gas study are interwoven with issues in Pipeline transport, Optimization problem, Reliability and Electric power system. His Electric power system study combines topics from a wide range of disciplines, such as Probabilistic logic and Transmission system.
His Mathematical optimization study frequently draws connections to other fields, such as Software deployment. In his works, William Rosehart performs multidisciplinary study on Integrated business planning and Electricity. His Primary Energy Resources study in the realm of Electricity connects with subjects such as Reliability.
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Energy storage for mitigating the variability of renewable electricity sources: An updated review
Marc Beaudin;Hamidreza Zareipour;Anthony Schellenberglabe;William Rosehart.
Energy for Sustainable Development (2010)
Cumulant-based probabilistic optimal power flow (P-OPF) with Gaussian and gamma distributions
A. Schellenberg;W. Rosehart;J. Aguado.
IEEE Transactions on Power Systems (2005)
Multiobjective optimal power flows to evaluate voltage security costs in power networks
W.D. Rosehart;C.A. Canizares;V.H. Quintana.
IEEE Transactions on Power Systems (2003)
Electricity Price and Demand Forecasting in Smart Grids
A. Motamedi;H. Zareipour;W. D. Rosehart.
IEEE Transactions on Smart Grid (2012)
Operation Scheduling of Battery Storage Systems in Joint Energy and Ancillary Services Markets
Mostafa Kazemi;Hamidreza Zareipour;Nima Amjady;William D. Rosehart.
IEEE Transactions on Sustainable Energy (2017)
A survey of load control programs for price and system stability
P. Jazayeri;A. Schellenberg;W.D. Rosehart;J. Doudna.
IEEE Transactions on Power Systems (2005)
Probabilistic Power Flow by Monte Carlo Simulation With Latin Supercube Sampling
Mahdi Hajian;William D. Rosehart;Hamidreza Zareipour.
IEEE Transactions on Power Systems (2013)
A Transmission Planning Framework Considering Future Generation Expansions in Electricity Markets
Amir Motamedi;Hamidreza Zareipour;Majid Oloomi Buygi;William D Rosehart.
IEEE Transactions on Power Systems (2010)
Optimal power flow with complementarity constraints
William Rosehart;Codruta Roman;Antony Schellenberg.
IEEE Transactions on Power Systems (2005)
Comparison of voltage security constrained optimal power flow techniques
C. Canizares;W. Rosehart;A. Berizzi;C. Bovo.
power engineering society summer meeting (2001)
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