Title :
A congestion-management allocation mechanism for multiple transaction networks
Author :
Tao, Shu ; Gross, George
Author_Institution :
ABB Energy Inf. Syst., Santa Clara, CA, USA
fDate :
8/1/2002 12:00:00 AM
Abstract :
In this paper, we present a physical-flow-based congestion management allocation mechanism for multiple transaction networks. We use the multiple transaction network framework constructed to characterize transmission congestion and then determine the contribution to congestion attributable to each transaction on a physical-flow basis. This allocation scheme explicitly addresses the issue of counter flows. The allocation results are used in the congestion relief of the independent grid operator (IGO) so as to allow it to acquire relief services to remove the overload congestion attributed to each transaction from the network in the most economic manner. The congestion charges attributable to each transaction for its usage of the network are also determined. We tested the proposed scheme on several systems and we illustrate its capabilities on a network based on the IEEE 57-bus system. We discuss the policy implications of the congestion relief allocation solution. The proposed scheme provides physically reasonable results and is applicable to large-scale networks.
Keywords :
management; power transmission economics; transmission network calculations; IEEE 57-bus system; congestion relief; congestion-management allocation mechanism; counter flows; independent grid operator; multiple transaction networks; open access transmission regimes; physical-flow; transmission pricing; Counting circuits; Electricity supply industry; Environmental economics; Financial management; Helium; Large-scale systems; Management information systems; Power system management; Pricing; System testing;
Journal_Title :
Power Systems, IEEE Transactions on
DOI :
10.1109/TPWRS.2002.800944