| Article ID | Journal | Published Year | Pages | File Type | 
|---|---|---|---|---|
| 5000893 | Electric Power Systems Research | 2018 | 10 Pages | 
Abstract
												In cascaded hydro systems, water delay time is a very important factor that requires coordination between upstream and downstream reservoirs. Due to the nonlinear characteristics of the water delay time, modeling and solving short-term cascaded hydro scheduling (STCHS) is a very challenging task. This paper proposes a novel STCHS model with continuous variation of water delay time to describe real-world operations in detail. The proposed model includes a nonlinear function related to water delay time. A successive approximation (SA) approach is developed to address the nonlinearity by iterative calculation, making the problem tractable. The proposed model and method are validated with two-reservoir and ten-reservoir systems. Numerical results demonstrate that the proposed method produces more realistic results than existing methods when dealing with STCHS problems.
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											Authors
												Xiaolin Ge, Shu Xia, Wei-Jen Lee, C.Y. Chung, 
											