filtering of the flow trace;
residential water demand;
water microcomponents;
smart metering;
water end use disaggregation;
D O I:
10.4995/ia.2018.9476
中图分类号:
TU [建筑科学];
学科分类号:
0813 ;
摘要:
The success of automatic water end use disaggregation and classification strategies greatly depends on the filtering and signal conditioning of the flow traces recorded. The work presented proposes a new filtering algorithm of water consumption flow traces. To improve the performance of the filter, the parameters driving the process are found per event by an automatically calibration procedure. These parameters are selected to ensure the maximum adaptability and simplification of the filtered flow traces. The methodology has been tested with 5210 consumption events obtained from a measurement campaign conducted in a Spanish city. The results obtained show that the filtering algorithm is capable of significantly simplifying the original flow traces while maintaining their main characteristics. On average, it has been found that the most complex events can be described using only 10% of the input data. This analysis can be used to make more efficient the filtering procedure proposed
机构:
Tata Energy Res Inst, Sch Advanced Studies, India Habitat Ctr, New Delhi 110003, IndiaTata Energy Res Inst, Sch Advanced Studies, India Habitat Ctr, New Delhi 110003, India
Saha, NK
Balakrishnan, M
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机构:
Tata Energy Res Inst, Sch Advanced Studies, India Habitat Ctr, New Delhi 110003, IndiaTata Energy Res Inst, Sch Advanced Studies, India Habitat Ctr, New Delhi 110003, India
Balakrishnan, M
Batra, VS
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机构:
Tata Energy Res Inst, Sch Advanced Studies, India Habitat Ctr, New Delhi 110003, IndiaTata Energy Res Inst, Sch Advanced Studies, India Habitat Ctr, New Delhi 110003, India
机构:
University of Ferrara, Department of Engineering, PhD Student, Via Saragat 1, FerraraUniversity of Ferrara, Department of Engineering, PhD Student, Via Saragat 1, Ferrara
Mazzoni F.
Alvisi S.
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University of Ferrara, Department of Engineering, PhD Student, Via Saragat 1, FerraraUniversity of Ferrara, Department of Engineering, PhD Student, Via Saragat 1, Ferrara
Alvisi S.
Franchini M.
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机构:
University of Ferrara, Department of Engineering, PhD Student, Via Saragat 1, FerraraUniversity of Ferrara, Department of Engineering, PhD Student, Via Saragat 1, Ferrara
Franchini M.
Blokker M.
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机构:
TU Delft, Faculty of Civil Engineering and Geosciences, Senior Researcher and Lecturer, Stevinweg 1, Delft
KWR Water Research Institute, PhD, Groningenhaven 7, NieuwegeinUniversity of Ferrara, Department of Engineering, PhD Student, Via Saragat 1, Ferrara
机构:
Korea Water Resources Corp, Korea Inst Water & Environm, Water Res Ctr, Taejon, South KoreaKorea Water Resources Corp, Korea Inst Water & Environm, Water Res Ctr, Taejon, South Korea
Lee, Doo-Jin
Park, No-Suk
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机构:
Korea Water Resources Corp, Korea Inst Water & Environm, Water Res Ctr, Taejon, South KoreaKorea Water Resources Corp, Korea Inst Water & Environm, Water Res Ctr, Taejon, South Korea
机构:
Product Design and Innovation Laboratory (LCPI), Arts et Métiers ParisTech, ParisProduct Design and Innovation Laboratory (LCPI), Arts et Métiers ParisTech, Paris
Laverne F.
Marquardt R.
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机构:
Product Design and Innovation Laboratory (LCPI), Arts et Métiers ParisTech, ParisProduct Design and Innovation Laboratory (LCPI), Arts et Métiers ParisTech, Paris
Marquardt R.
Segonds F.
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机构:
Product Design and Innovation Laboratory (LCPI), Arts et Métiers ParisTech, ParisProduct Design and Innovation Laboratory (LCPI), Arts et Métiers ParisTech, Paris
Segonds F.
Koutiri I.
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机构:
Processes and Engineering in Mechanics and Material (PIMM), Arts et Métiers ParisTech, ParisProduct Design and Innovation Laboratory (LCPI), Arts et Métiers ParisTech, Paris
Koutiri I.
Perry N.
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机构:
Institute of Mechanical Engineering (I2M), Arts et Métiers ParisTech, Bordeaux, Esplanade des Arts & Métiers, TalenceProduct Design and Innovation Laboratory (LCPI), Arts et Métiers ParisTech, Paris