분산형 저류시설의 실시간 네트워크 제어기술 적용시 고려 사항Methods for an application of real-time network control on distributed storage facilities
- Authors
- 백현욱; 류재나; 오재일; 김태형
- Issue Date
- Dec-2013
- Publisher
- 대한상하수도학회
- Keywords
- 실시간 네트워크 제어시스템; 하수관망; 분산 저류시설 운영; 분산 저류시설을 위한 RTNC 구축틀; real-time network control system; sewer networks; operation for distributed storage facilities; framework for RTNC on distributed storage facilities
- Citation
- 상하수도학회지, v.27, no.6, pp 711 - 721
- Pages
- 11
- Journal Title
- 상하수도학회지
- Volume
- 27
- Number
- 6
- Start Page
- 711
- End Page
- 721
- URI
- https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/19277
- ISSN
- 1225-7672
2287-822X
- Abstract
- Optimal operation of a combined sewer network with distributed storage facilities aims to use the whole retention capacity of all reservoirs efficiently before overflows take place somewhere in the considered network system. An efficient real-time network control (RTNC) strategy has been emerging as an attractive approach for reducing substantially the overflows from a sewer network compared to the conventional fixed or manually adjusted gate setting method, but the related concrete framework for RTC development has not been throughly introduced so far. The main goal of this study is to give a detailed description of the RTNC systems via reviewing several guidelines published abroad, and finally to suggest methods for the proper application of RTNC on distributed storage facilities. Especially, this study is focused on emphasizing the importance of hierarchical structure of RTNC system that consists of three control layers (management, global control and local control). Further, with regard to the global control layer which is responsible for the central overall network control, the wide-ranging details of two components (adaption and optimization layers) are also presented. This study can provide the valuable basis for the RTNC implementation in the particular sewer network with distributed multiple storage facilities.
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Collections - College of Engineering > School of Mechanical Engineering > 1. Journal Articles
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