most citedParallel Computing Environments and Methods for Power Distribution System Simulation

4 citations · 8 across the 5 of their papers we have counts for

collaborators

5 papers

nlin.SI20041 cited

The Equilibrium Dynamics of Thermostatic End-use Load Diversity as a Function of Demand

David P. Chassin, Joel M. Malard

A recently developed state-of-the-art agent-based simulation of power distribution systems is capable of modeling the thermal and demand response behavior of many thousands of ther…

nlin.AO2004

GridWiseTM: The Benefits of a Transformed Energy System

Landis D. Kannberg, David P. Chassin, John G. DeSteese +5

The demand for electricity is expected to continue its historical growth trend far into the future and particularly over the 20-year projection period discussed in this report. To…

cs.DC20044 cited

Parallel Computing Environments and Methods for Power Distribution System Simulation

Ning Lu, Z. Todd Taylor, David P. Chassin +2

The development of cost-effective highperformance parallel computing on multi-processor supercomputers makes it attractive to port excessively time consuming simulation software fr…

nlin.CD2004

Estimation of the WECC System Inertia Using Observed Frequency Transients

David P. Chassin, Zhenyu Huang, Matthew K. Donnelly +3

Computer models being developed to understand the interaction between demand-response technology, power system deregulation and market transformation depend in part on understandin…

nlin.AO20043 cited

Managing Complexity

David P. Chassin, Joel Malard, Christian Posse

Physical analogs have shown considerable promise for understanding the behavior of complex adaptive systems, including macroeconomics, biological systems, social networks, and elec…