Techno-economic and ecological evaluation of demand-side management in electrified residential energy systems:
Gespeichert in:
1. Verfasser: | |
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Format: | Abschlussarbeit Buch |
Sprache: | English |
Veröffentlicht: |
Kassel, Hess
Kassel University Press
[2022]
|
Schriftenreihe: | Produktion & Energie
Band 27 |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | LI, 122 Seiten Illustrationen, Diagramme 210 cm x 148 cm |
ISBN: | 9783737610445 3737610444 |
Internformat
MARC
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245 | 1 | 0 | |a Techno-economic and ecological evaluation of demand-side management in electrified residential energy systems |c Julia Freier |
264 | 1 | |a Kassel, Hess |b Kassel University Press |c [2022] | |
264 | 4 | |c © 2022 | |
300 | |a LI, 122 Seiten |b Illustrationen, Diagramme |c 210 cm x 148 cm | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
338 | |b nc |2 rdacarrier | ||
490 | 1 | |a Produktion & Energie |v Band 27 | |
502 | |b Dissertation |c Universität Kassel |d 2021 | ||
650 | 0 | 7 | |a Elektrizitätserzeugung |0 (DE-588)4133665-3 |2 gnd |9 rswk-swf |
650 | 0 | 7 | |a Erneuerbare Energien |0 (DE-588)4068598-6 |2 gnd |9 rswk-swf |
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651 | 7 | |a Deutschland |0 (DE-588)4011882-4 |2 gnd |9 rswk-swf | |
653 | |a residential electric energy systems | ||
653 | |a Demand-side managament | ||
653 | |a mixed-integer linear optimization | ||
653 | |a electricity markets | ||
655 | 7 | |0 (DE-588)4113937-9 |a Hochschulschrift |2 gnd-content | |
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Datensatz im Suchindex
_version_ | 1804184170829709312 |
---|---|
adam_text | CONTENTS
NOMENCLATURE
XV
1.
INTRODUCTION
1
2.
RESIDENTIAL
DEMAND-SIDE
MANAGEMENT
5
2.1.
ELECTRICITY
CONSUMPTION
IN
HOUSEHOLDS
..............................................................
5
2.2.
DEMAND-SIDE
MANAGEMENT
.................................................................................
7
2.2.1.
DEFINITION
OF
TERMS
...................................................................................
7
2.2.2.
IMPLEMENTATION
.........................................................................................
9
2.3.
DEMAND-SIDE
MANAGEMENT
IN
THE
CONTEXT
OF
ELECTRICITY
MARKETS
......................
10
2.3.1.
PRICING
SCHEMES
.........................................................................................
12
2.3.2.
DECENTRALISED
ELECTRICITY
MARKETS
..............................................................
13
2.4.
RESEARCH
QUESTIONS
...............................................................................................
16
3.
ELECTRIC
ENERGY
SYSTEMS
IN
BUILDINGS
19
3.1.
ELECTRICAL
SYSTEM
.................................................................................................
19
3.1.1.
PHOTOVOLTAIC
POWER
GENERATION
.................................................................
19
3.1.2.
INVERTER
.......................................................................................................
21
3.1.3.
BATTERY
.......................................................................................................
22
3.2.
HEATING
SYSTEM
...................................................................................................
24
3.2.1.
HEATPUMP
.................................................................................................
25
3.2.2.
AUXILIARY
HEATING
ELEMENT
........................................................................
27
3.2.3.
HEAT
TRANSFER
UNIT
......................................................................................
28
3.2.4.
HEAT
STORAGE
..............................................................................................
28
3.3.
BUILDING
SYSTEM
CONTROLS
......................................................................................
29
3.3.1.
MODEL-PREDICTIVE
CONTROL
........................................................................
29
3.3.2.
BUILDING
MODELS
.........................................................................................
32
4.
METHODOLOGY
35
4.1.
CONCEPTUAL
SET-UP
OF
THE
SIMULATION
STUDY
........................................................
35
4.1.1.
DEFINITION
OF
SYSTEM
CONFIGURATIONS
........................................................
36
4.1.2.
SCENARIO
DEVELOPMENT
..............................................................................
36
4.2.
MODEL
DEVELOPMENT
............................................................................................
39
4.2.1.
REQUIREMENTS
...........................................................................................
39
4.2.2.
AGENT-BASED
STRUCTURE
.............................................................................
40
4.2.3.
OPTIMISATION
...........................................................................................
41
4.3.
EVALUATION
...........................................................................................................
44
4.3.1.
EVALUATION
MEASURES
.................................................................................
44
XI
4.3.2.
DESIGN
OF
EXPERIMENTS
...............................................................................
46
5.
MODEL
IMPLEMENTATION
51
5.1.
INPUT
DATA
PROCESSING
..........................................................................................
51
5.1.1.
WEATHER
....................................................................................................
51
5.1.2.
ELECTRICITY
CONSUMPTION
...........................................................................
53
5.1.3.
DOMESTIC
HOT
WATER
TAPPING
......................................................................
54
5.1.4.
MOBILITY
PROFILES
......................................................................................
54
5.1.5.
MARKET
DATA
..............................................................................................
55
5.2.
ELECTRICITY
MARKET
MODELS
....................................................................................
56
5.2.1.
ELECTRICITY
PRICES
......................................................................................
56
5.2.2.
PEER-TO-PEER
ENERGY
SYSTEM
......................................................................
58
5.3.
RESIDENTIAL
ENERGY
SYSTEM
MODEL
..........................................................................
60
5.3.1.
FORMULATION
OF
THE
MIXED-INTEGER
LINEAR
OPTIMISATION
PROBLEM
.............
61
5.3.2.
PHOTOVOLTAIC
SYSTEM
.................................................................................
62
5.3.3.
ELECTRICAL
STORAGES
...................................................................................
64
5.3.4.
BUILDING
MODEL
.........................................................................................
67
5.3.5.
HEATING
SYSTEM
.........................................................................................
73
5.3.6.
THERMAL
STORAGES
......................................................................................
79
5.4.
VALIDATION
AND
VERIFICATION
...................................................................................
81
5.4.1.
ERROR
MEASURES
..........................................................................................
82
5.4.2.
VALIDATION
OF
MODEL
COMPONENTS
...............................................................
83
6.
RESULTS
89
6.1.
REFERENCE
CASE
......................................................................................................
89
6.2.
OPTIMISATION
OBJECTIVES
......................................................................................
90
6.2.1.
COMPARISON
OF
OPTIMISED
ENERGY
SCHEDULES
............................................
90
6.2.2.
COMPARISON
OF
TOTAL
COSTS,
EMISSIONS,
AND
DEGREE
OF
SELF-SUFFICIENCY
...
92
6.2.3.
CO2
AVOIDANCE
COSTS
..................................................................................
97
6.3.
PARAMETER
ANALYSIS
..............................................................................................
98
6.3.1.
TECHNICAL
INFLUENCING
FACTORS
....................................................................
99
6.3.2.
USER-DEPENDENT
INFLUENCING
FACTORS
.........................................................
101
6.3.3.
PREDETERMINED
INFLUENCING
FACTORS
............................................................
102
6.4.
INFLUENCE
OF
THE
PREDICTION
.................................................................................
104
6.5.
INFLUENCE
OF
MARKET
SCENARIOS
..............................................................................
106
6.5.1.
COMPARISON
OF
TOTAL
COSTS,
EMISSIONS,
AND
DEGREES
OF
SELF-SUFFICIENCY
..
107
6.5.2.
DYNAMIC
ELECTRICITY
TARIFFS
..........................................................................
109
6.5.3.
DECENTRALISED
MARKETS
...............................................................................
ILL
7.
DISCUSSION
113
7.1.
SUMMARY
AND
CONTEXT
OF
RESULTS
........................................................................
113
7.1.1.
DEMAND-SIDE
MANAGEMENT
STRATEGIES
......................................................
113
7.1.2.
ELECTRICITY
MARKETS
....................................................................................
114
7.1.3.
TECHNICAL
INFLUENCES
..................................................................................
115
7.2.
STRENGTHS
AND
LIMITATIONS
OF
METHODS
................................................................
117
7.3.
RELEVANCE
OF
THE
RESULTS
......................................................................................
119
XII
1A.
FURTHER
RESEARCH
RECOMMENDATIONS
....................................................................
120
8.
CONCLUSION
121
LIST
OF
FIGURES
XXI
LIST
OF
TABLES
XXIII
REFERENCES
XXV
A.
ANNEX
XXXIX
A.1.
BUILDING
MODEL
....................................................................................................
XXXIX
A.
1.1.
PHYSICAL
PROPERTIES
....................................................................................
XXXIX
A.
1.2.
BUILDING
MODEL
S
ENERGY
BALANCES
............................................................
XL
A.2.
VALIDATION
PLOTS
....................................................................................................
XLII
A.3.
EXPERIMENTAL
DESIGN
............................................................................................
XLIII
A.3.1.
PLACKET-BURMAN
PLANNING
AND
RESULTS
MATIRX
...........................................
XLIII
A.4.
FURTHER
RESULTS
OF
THE
SCENARIO
ANALYSIS
..............................................................
XLVI
A.4.1.
COSTS
OF
THE
REFERENCE
CASE
IN
ALL
SCENARIOS
..............................................
XLVI
A.4.2.
EVALUATION
MEASURES
IN
ALL
SCENARIOS
.........................................................
XLVI
A.5.
FURTHER
MAIN
EFFECTS
PLOTS
FOR
THE
DOE
ANALYSIS
...................................................
XLVII
A.5.1.
INFLUENCES
ON
THE
EVALUATION
MEASURES
WITH
DSM
...................................
XLVII
A.5.2.
INFLUENCES
ON
THE
EVALUATION
MEASURES
WITHOUT
DSM
..............................
XLIX
SCIENTIFIC
ACTIVITY
LI
XIII
|
adam_txt |
CONTENTS
NOMENCLATURE
XV
1.
INTRODUCTION
1
2.
RESIDENTIAL
DEMAND-SIDE
MANAGEMENT
5
2.1.
ELECTRICITY
CONSUMPTION
IN
HOUSEHOLDS
.
5
2.2.
DEMAND-SIDE
MANAGEMENT
.
7
2.2.1.
DEFINITION
OF
TERMS
.
7
2.2.2.
IMPLEMENTATION
.
9
2.3.
DEMAND-SIDE
MANAGEMENT
IN
THE
CONTEXT
OF
ELECTRICITY
MARKETS
.
10
2.3.1.
PRICING
SCHEMES
.
12
2.3.2.
DECENTRALISED
ELECTRICITY
MARKETS
.
13
2.4.
RESEARCH
QUESTIONS
.
16
3.
ELECTRIC
ENERGY
SYSTEMS
IN
BUILDINGS
19
3.1.
ELECTRICAL
SYSTEM
.
19
3.1.1.
PHOTOVOLTAIC
POWER
GENERATION
.
19
3.1.2.
INVERTER
.
21
3.1.3.
BATTERY
.
22
3.2.
HEATING
SYSTEM
.
24
3.2.1.
HEATPUMP
.
25
3.2.2.
AUXILIARY
HEATING
ELEMENT
.
27
3.2.3.
HEAT
TRANSFER
UNIT
.
28
3.2.4.
HEAT
STORAGE
.
28
3.3.
BUILDING
SYSTEM
CONTROLS
.
29
3.3.1.
MODEL-PREDICTIVE
CONTROL
.
29
3.3.2.
BUILDING
MODELS
.
32
4.
METHODOLOGY
35
4.1.
CONCEPTUAL
SET-UP
OF
THE
SIMULATION
STUDY
.
35
4.1.1.
DEFINITION
OF
SYSTEM
CONFIGURATIONS
.
36
4.1.2.
SCENARIO
DEVELOPMENT
.
36
4.2.
MODEL
DEVELOPMENT
.
39
4.2.1.
REQUIREMENTS
.
39
4.2.2.
AGENT-BASED
STRUCTURE
.
40
4.2.3.
OPTIMISATION
.
41
4.3.
EVALUATION
.
44
4.3.1.
EVALUATION
MEASURES
.
44
XI
4.3.2.
DESIGN
OF
EXPERIMENTS
.
46
5.
MODEL
IMPLEMENTATION
51
5.1.
INPUT
DATA
PROCESSING
.
51
5.1.1.
WEATHER
.
51
5.1.2.
ELECTRICITY
CONSUMPTION
.
53
5.1.3.
DOMESTIC
HOT
WATER
TAPPING
.
54
5.1.4.
MOBILITY
PROFILES
.
54
5.1.5.
MARKET
DATA
.
55
5.2.
ELECTRICITY
MARKET
MODELS
.
56
5.2.1.
ELECTRICITY
PRICES
.
56
5.2.2.
PEER-TO-PEER
ENERGY
SYSTEM
.
58
5.3.
RESIDENTIAL
ENERGY
SYSTEM
MODEL
.
60
5.3.1.
FORMULATION
OF
THE
MIXED-INTEGER
LINEAR
OPTIMISATION
PROBLEM
.
61
5.3.2.
PHOTOVOLTAIC
SYSTEM
.
62
5.3.3.
ELECTRICAL
STORAGES
.
64
5.3.4.
BUILDING
MODEL
.
67
5.3.5.
HEATING
SYSTEM
.
73
5.3.6.
THERMAL
STORAGES
.
79
5.4.
VALIDATION
AND
VERIFICATION
.
81
5.4.1.
ERROR
MEASURES
.
82
5.4.2.
VALIDATION
OF
MODEL
COMPONENTS
.
83
6.
RESULTS
89
6.1.
REFERENCE
CASE
.
89
6.2.
OPTIMISATION
OBJECTIVES
.
90
6.2.1.
COMPARISON
OF
OPTIMISED
ENERGY
SCHEDULES
.
90
6.2.2.
COMPARISON
OF
TOTAL
COSTS,
EMISSIONS,
AND
DEGREE
OF
SELF-SUFFICIENCY
.
92
6.2.3.
CO2
AVOIDANCE
COSTS
.
97
6.3.
PARAMETER
ANALYSIS
.
98
6.3.1.
TECHNICAL
INFLUENCING
FACTORS
.
99
6.3.2.
USER-DEPENDENT
INFLUENCING
FACTORS
.
101
6.3.3.
PREDETERMINED
INFLUENCING
FACTORS
.
102
6.4.
INFLUENCE
OF
THE
PREDICTION
.
104
6.5.
INFLUENCE
OF
MARKET
SCENARIOS
.
106
6.5.1.
COMPARISON
OF
TOTAL
COSTS,
EMISSIONS,
AND
DEGREES
OF
SELF-SUFFICIENCY
.
107
6.5.2.
DYNAMIC
ELECTRICITY
TARIFFS
.
109
6.5.3.
DECENTRALISED
MARKETS
.
ILL
7.
DISCUSSION
113
7.1.
SUMMARY
AND
CONTEXT
OF
RESULTS
.
113
7.1.1.
DEMAND-SIDE
MANAGEMENT
STRATEGIES
.
113
7.1.2.
ELECTRICITY
MARKETS
.
114
7.1.3.
TECHNICAL
INFLUENCES
.
115
7.2.
STRENGTHS
AND
LIMITATIONS
OF
METHODS
.
117
7.3.
RELEVANCE
OF
THE
RESULTS
.
119
XII
1A.
FURTHER
RESEARCH
RECOMMENDATIONS
.
120
8.
CONCLUSION
121
LIST
OF
FIGURES
XXI
LIST
OF
TABLES
XXIII
REFERENCES
XXV
A.
ANNEX
XXXIX
A.1.
BUILDING
MODEL
.
XXXIX
A.
1.1.
PHYSICAL
PROPERTIES
.
XXXIX
A.
1.2.
BUILDING
MODEL
'
S
ENERGY
BALANCES
.
XL
A.2.
VALIDATION
PLOTS
.
XLII
A.3.
EXPERIMENTAL
DESIGN
.
XLIII
A.3.1.
PLACKET-BURMAN
PLANNING
AND
RESULTS
MATIRX
.
XLIII
A.4.
FURTHER
RESULTS
OF
THE
SCENARIO
ANALYSIS
.
XLVI
A.4.1.
COSTS
OF
THE
REFERENCE
CASE
IN
ALL
SCENARIOS
.
XLVI
A.4.2.
EVALUATION
MEASURES
IN
ALL
SCENARIOS
.
XLVI
A.5.
FURTHER
MAIN
EFFECTS
PLOTS
FOR
THE
DOE
ANALYSIS
.
XLVII
A.5.1.
INFLUENCES
ON
THE
EVALUATION
MEASURES
WITH
DSM
.
XLVII
A.5.2.
INFLUENCES
ON
THE
EVALUATION
MEASURES
WITHOUT
DSM
.
XLIX
SCIENTIFIC
ACTIVITY
LI
XIII |
any_adam_object | 1 |
any_adam_object_boolean | 1 |
author | Freier, Julia |
author_facet | Freier, Julia |
author_role | aut |
author_sort | Freier, Julia |
author_variant | j f jf |
building | Verbundindex |
bvnumber | BV048316398 |
classification_rvk | ZN 8520 |
ctrlnum | (OCoLC)1334564717 (DE-599)DNB1259455041 |
discipline | Elektrotechnik / Elektronik / Nachrichtentechnik |
discipline_str_mv | Elektrotechnik / Elektronik / Nachrichtentechnik |
format | Thesis Book |
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genre | (DE-588)4113937-9 Hochschulschrift gnd-content |
genre_facet | Hochschulschrift |
geographic | Deutschland (DE-588)4011882-4 gnd |
geographic_facet | Deutschland |
id | DE-604.BV048316398 |
illustrated | Illustrated |
index_date | 2024-07-03T20:10:49Z |
indexdate | 2024-07-10T09:35:05Z |
institution | BVB |
institution_GND | (DE-588)1066127425 |
isbn | 9783737610445 3737610444 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-033695860 |
oclc_num | 1334564717 |
open_access_boolean | |
owner | DE-83 |
owner_facet | DE-83 |
physical | LI, 122 Seiten Illustrationen, Diagramme 210 cm x 148 cm |
publishDate | 2022 |
publishDateSearch | 2022 |
publishDateSort | 2022 |
publisher | Kassel University Press |
record_format | marc |
series | Produktion & Energie |
series2 | Produktion & Energie |
spelling | Freier, Julia Verfasser aut Techno-economic and ecological evaluation of demand-side management in electrified residential energy systems Julia Freier Kassel, Hess Kassel University Press [2022] © 2022 LI, 122 Seiten Illustrationen, Diagramme 210 cm x 148 cm txt rdacontent n rdamedia nc rdacarrier Produktion & Energie Band 27 Dissertation Universität Kassel 2021 Elektrizitätserzeugung (DE-588)4133665-3 gnd rswk-swf Erneuerbare Energien (DE-588)4068598-6 gnd rswk-swf Lastverteilung Energietechnik (DE-588)4166843-1 gnd rswk-swf Elektrizitätsversorgung (DE-588)4014224-3 gnd rswk-swf Deutschland (DE-588)4011882-4 gnd rswk-swf residential electric energy systems Demand-side managament mixed-integer linear optimization electricity markets (DE-588)4113937-9 Hochschulschrift gnd-content Elektrizitätsversorgung (DE-588)4014224-3 s Lastverteilung Energietechnik (DE-588)4166843-1 s Erneuerbare Energien (DE-588)4068598-6 s Elektrizitätserzeugung (DE-588)4133665-3 s Deutschland (DE-588)4011882-4 g DE-604 kassel university press (DE-588)1066127425 pbl Produktion & Energie Band 27 (DE-604)BV023210780 27 DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=033695860&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis 1\p vlb 20220609 DE-101 https://d-nb.info/provenance/plan#vlb |
spellingShingle | Freier, Julia Techno-economic and ecological evaluation of demand-side management in electrified residential energy systems Produktion & Energie Elektrizitätserzeugung (DE-588)4133665-3 gnd Erneuerbare Energien (DE-588)4068598-6 gnd Lastverteilung Energietechnik (DE-588)4166843-1 gnd Elektrizitätsversorgung (DE-588)4014224-3 gnd |
subject_GND | (DE-588)4133665-3 (DE-588)4068598-6 (DE-588)4166843-1 (DE-588)4014224-3 (DE-588)4011882-4 (DE-588)4113937-9 |
title | Techno-economic and ecological evaluation of demand-side management in electrified residential energy systems |
title_auth | Techno-economic and ecological evaluation of demand-side management in electrified residential energy systems |
title_exact_search | Techno-economic and ecological evaluation of demand-side management in electrified residential energy systems |
title_exact_search_txtP | Techno-economic and ecological evaluation of demand-side management in electrified residential energy systems |
title_full | Techno-economic and ecological evaluation of demand-side management in electrified residential energy systems Julia Freier |
title_fullStr | Techno-economic and ecological evaluation of demand-side management in electrified residential energy systems Julia Freier |
title_full_unstemmed | Techno-economic and ecological evaluation of demand-side management in electrified residential energy systems Julia Freier |
title_short | Techno-economic and ecological evaluation of demand-side management in electrified residential energy systems |
title_sort | techno economic and ecological evaluation of demand side management in electrified residential energy systems |
topic | Elektrizitätserzeugung (DE-588)4133665-3 gnd Erneuerbare Energien (DE-588)4068598-6 gnd Lastverteilung Energietechnik (DE-588)4166843-1 gnd Elektrizitätsversorgung (DE-588)4014224-3 gnd |
topic_facet | Elektrizitätserzeugung Erneuerbare Energien Lastverteilung Energietechnik Elektrizitätsversorgung Deutschland Hochschulschrift |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=033695860&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
volume_link | (DE-604)BV023210780 |
work_keys_str_mv | AT freierjulia technoeconomicandecologicalevaluationofdemandsidemanagementinelectrifiedresidentialenergysystems AT kasseluniversitypress technoeconomicandecologicalevaluationofdemandsidemanagementinelectrifiedresidentialenergysystems |