Optimal CHP planning in integrated energy systems considering network charges

Date

2019-07-26

Supervisor/s

Journal Title

Journal ISSN

Volume Title

Publisher

Elsevier

Department

Type

Article

ISSN

1932-8184

Format

Free to read from

Citation

Wang H, Gu C, Zhang X, Li F. (2020) Optimal CHP planning in integrated energy systems considering network charges. IEEE Systems Journal, Volume 14, Issue 2, June 2020, pp. 2684-2693

Abstract

This paper proposes a novel optimal planning model for combined heat and power (CHP) in multiple energy systems of natural gas and electricity to benefit both networks by deferring investment for network owners and reducing use-of-system (UoS) charge for network users. The new planning model considers the technical constraints of both electricity and natural gas systems. A two-stage planning approach is proposed to determine the optimal site and size of CHPs. In the first stage, a long-run incremental cost matrix is designed to reflect CHP locational impact on both natural gas and electricity network investment, used as a criterion to choose the optimal location. In the second stage, CHP size is determined by solving an integrated optimal model with the objective to minimize total incremental network investment costs. The proposed method is resolved by the interior-point method and implemented on a practically integrated electricity and natural gas systems. Two case studies are conducted to test the performance for single and multiple CHPs cases. This paper enables cost-efficient CHP planning to benefit integrated natural gas and electricity networks and network users in terms of reduced network investment cost and consequently reduced UoS charges.

Description

Software Description

Software Language

Github

Keywords

Combined heat and power (CHP), incremental cost (IC), multiple energy networks, optimal planning

DOI

Rights

Attribution-NonCommercial 4.0 International

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