W artykule przedstawiono problematykę harmonogramowania budowlanych przedsięwzięć wieloobiektowych z uwzględnieniem efektu uczenia. Efekt ten pojawia się podczas wykonywania robót jednego rodzaju w wielu obiektach budowlanych. Doprowadza to do istotnego skrócenia czasu trwania przedsięwzięcia. W prezentowanym modelu przedsięwzięcia istnieje problem poszukiwania optymalnej kolejności wykonywania obiektów, która minimalizuje czas trwania przedsięwzięcia. W artykule zagadnienie to z powodzeniem rozwiązano za pomocą metaheurystycznego algorytmu symulowanego wyżarzania i zilustrowano przykładem praktycznym.
EN
The article presents the issues of scheduling multiunit construction projects, taking into account the learning effect. This effect occurs when one type of the activity is carried out in many building units. This leads to a significant reduction in the duration of the project. In the presented model of the project, there is a problem of searching for the optimal order of execution of the units, which minimizes the duration of the project. In this article, this problem was successfully solved using a metaheuristic simulated annealing algorithm and illustrated by a case study.
2
Dostęp do pełnego tekstu na zewnętrznej witrynie WWW
The article presents the profit optimization model for multi-unit construction projects. Such projects constitute a special case of repetitive projects and are common in residential, commercial, and industrial construction projects. Due to the specific character of construction works, schedules of such projects should take into account many different aspects, including durations and costs of construction works, the possibility of selecting alternative execution modes, and specific restrictions (e.g., deadlines for the completion of units imposed by the investor). To solve the NP-hard problem of choosing the order of units’ construction and the best variants of works, the authors used metaheuristic algorithms (simulated annealing and genetic search). The objective function in the presented optimization model was the total profit of the contractor determined on the basis of the mathematical programming model. This model takes into account monthly cash flows subject to direct and indirect costs, penalties for missing deadlines, costs of work group discontinuities, and borrowing losses. The presented problem is very important for maintaining a good financial condition of the enterprise carrying out construction projects. In the article, an experimental analysis of the proposed method of solving the optimization task was carried out in a model that showed high efficiency in obtaining suboptimal solutions. In addition, the operation of the proposed model has been presented on a calculation example. The results obtained in it are fully satisfying.
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.