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f | 1 | { | f | 1 | { |
2 | "author": "Christoph Blaufu\u00df, Prof. Dr.-Ing. habil. Lutz | 2 | "author": "Christoph Blaufu\u00df, Prof. Dr.-Ing. habil. Lutz | ||
3 | Hofmann", | 3 | Hofmann", | ||
4 | "author_email": "blaufuss@ifes.uni-hannover.de", | 4 | "author_email": "blaufuss@ifes.uni-hannover.de", | ||
5 | "creator_user_id": "17755db4-395a-4b3b-ac09-e8e3484ca700", | 5 | "creator_user_id": "17755db4-395a-4b3b-ac09-e8e3484ca700", | ||
6 | "extras": [], | 6 | "extras": [], | ||
7 | "groups": [], | 7 | "groups": [], | ||
8 | "id": "0b3caa48-54aa-4cfa-a687-092aacbd5164", | 8 | "id": "0b3caa48-54aa-4cfa-a687-092aacbd5164", | ||
9 | "isopen": true, | 9 | "isopen": true, | ||
10 | "license_id": "cc-by", | 10 | "license_id": "cc-by", | ||
11 | "license_title": "Creative Commons Attribution", | 11 | "license_title": "Creative Commons Attribution", | ||
12 | "license_url": "http://www.opendefinition.org/licenses/cc-by", | 12 | "license_url": "http://www.opendefinition.org/licenses/cc-by", | ||
13 | "maintainer": "Christoph Blaufu\u00df, Prof. Dr.-Ing. habil. Lutz | 13 | "maintainer": "Christoph Blaufu\u00df, Prof. Dr.-Ing. habil. Lutz | ||
14 | Hofmann", | 14 | Hofmann", | ||
15 | "maintainer_email": "blaufuss@ifes.uni-hannover.de", | 15 | "maintainer_email": "blaufuss@ifes.uni-hannover.de", | ||
16 | "metadata_created": "2021-07-23T08:22:12.405280", | 16 | "metadata_created": "2021-07-23T08:22:12.405280", | ||
n | 17 | "metadata_modified": "2021-07-23T08:24:32.811169", | n | 17 | "metadata_modified": "2021-07-23T08:24:32.934370", |
18 | "name": "grid-planning-program-gpp-data-sets", | 18 | "name": "grid-planning-program-gpp-data-sets", | ||
19 | "notes": "English:\r\n\r\nThe field of grid planning is a research | 19 | "notes": "English:\r\n\r\nThe field of grid planning is a research | ||
20 | focus in the electrical power system research. The cost-optimized grid | 20 | focus in the electrical power system research. The cost-optimized grid | ||
21 | architecture and grid extension represent the most important | 21 | architecture and grid extension represent the most important | ||
22 | objectives in the planning. In this process, the grid planning has to | 22 | objectives in the planning. In this process, the grid planning has to | ||
23 | react optimally to changes in supply tasks in order to always ensure a | 23 | react optimally to changes in supply tasks in order to always ensure a | ||
24 | reliable and efficient grid operation. Therefore, short, middle, and | 24 | reliable and efficient grid operation. Therefore, short, middle, and | ||
25 | long-term recommendations of reasonable extension measures are | 25 | long-term recommendations of reasonable extension measures are | ||
26 | identified to adapt grids to these changes at their best. Computer | 26 | identified to adapt grids to these changes at their best. Computer | ||
27 | aided optimization methods, specially developed in the department of | 27 | aided optimization methods, specially developed in the department of | ||
28 | Electrical Power Supply, are used to determine the extension measures. | 28 | Electrical Power Supply, are used to determine the extension measures. | ||
29 | In order to verify the optimization results regarding the correctness | 29 | In order to verify the optimization results regarding the correctness | ||
30 | and to be able to make statements about needed grid extensions, the | 30 | and to be able to make statements about needed grid extensions, the | ||
31 | solution methods have to be tested and validated.\r\n\r\nIn the field | 31 | solution methods have to be tested and validated.\r\n\r\nIn the field | ||
32 | of electrical power system research, it is common practice to | 32 | of electrical power system research, it is common practice to | ||
33 | evaluate, compare, and validate developed methods and models using | 33 | evaluate, compare, and validate developed methods and models using | ||
34 | standardized benchmark grid models. The field of the optimized grid | 34 | standardized benchmark grid models. The field of the optimized grid | ||
35 | planning represents a special case, since the results are potential | 35 | planning represents a special case, since the results are potential | ||
36 | and realizable grid topologies, which are developed based on | 36 | and realizable grid topologies, which are developed based on | ||
37 | forecasted supply tasks. In comparison, conventional benchmark grids | 37 | forecasted supply tasks. In comparison, conventional benchmark grids | ||
38 | represent synthetic grid topologies which only approximately | 38 | represent synthetic grid topologies which only approximately | ||
39 | correspond to real supply tasks. This discrepancy makes it impossible | 39 | correspond to real supply tasks. This discrepancy makes it impossible | ||
40 | to use benchmark grids to test and validate developed grid planning | 40 | to use benchmark grids to test and validate developed grid planning | ||
41 | approaches.\r\n\r\nThe publication of the data basis and results of | 41 | approaches.\r\n\r\nThe publication of the data basis and results of | ||
42 | grid planning algorithms for forecasted supply tasks is not common in | 42 | grid planning algorithms for forecasted supply tasks is not common in | ||
43 | the literature. In order to guarantee good scientific practice, the | 43 | the literature. In order to guarantee good scientific practice, the | ||
44 | data basis and results of future grid-planning related publications at | 44 | data basis and results of future grid-planning related publications at | ||
45 | the Department of Electrical Power Supply at the Institute of | 45 | the Department of Electrical Power Supply at the Institute of | ||
46 | Electrical Power Systems are published in this collection of grid data | 46 | Electrical Power Systems are published in this collection of grid data | ||
47 | sets. This will provide the basis for the reproducibility of results | 47 | sets. This will provide the basis for the reproducibility of results | ||
48 | in the research field of grid planning.\r\n\r\nDeutsch:\r\n\r\nDie | 48 | in the research field of grid planning.\r\n\r\nDeutsch:\r\n\r\nDie | ||
49 | Netzplanung ist ein Forschungsschwerpunkt im Bereich der Elektrischen | 49 | Netzplanung ist ein Forschungsschwerpunkt im Bereich der Elektrischen | ||
50 | Energieversorgung. Der kostenoptimale Netzaufbau und -ausbau stellen | 50 | Energieversorgung. Der kostenoptimale Netzaufbau und -ausbau stellen | ||
51 | die wichtigsten Ziele in der Planung dar. Dabei muss die Netzplanung | 51 | die wichtigsten Ziele in der Planung dar. Dabei muss die Netzplanung | ||
52 | auf Ver\u00e4nderungen in der Versorgungsaufgabe optimal reagieren, um | 52 | auf Ver\u00e4nderungen in der Versorgungsaufgabe optimal reagieren, um | ||
53 | stets einen sicheren und effizienten Netzbetrieb zu garantieren. Dazu | 53 | stets einen sicheren und effizienten Netzbetrieb zu garantieren. Dazu | ||
54 | werden kurz-, mittel- und langfristige Empfehlungen f\u00fcr sinnvolle | 54 | werden kurz-, mittel- und langfristige Empfehlungen f\u00fcr sinnvolle | ||
55 | Netzausbauma\u00dfnahmen ermittelt, um die Netze bestm\u00f6glich an | 55 | Netzausbauma\u00dfnahmen ermittelt, um die Netze bestm\u00f6glich an | ||
56 | diese Ver\u00e4nderungen anzupassen. Zur Bestimmung der optimalen | 56 | diese Ver\u00e4nderungen anzupassen. Zur Bestimmung der optimalen | ||
57 | Netzausbauma\u00dfnahmen werden computergest\u00fctzte | 57 | Netzausbauma\u00dfnahmen werden computergest\u00fctzte | ||
58 | Optimierungsmethoden verwendet, die eigens im Fachbereich f\u00fcr | 58 | Optimierungsmethoden verwendet, die eigens im Fachbereich f\u00fcr | ||
59 | Elektrische Energieversorgung entwickelt wurden. Um die | 59 | Elektrische Energieversorgung entwickelt wurden. Um die | ||
60 | Optimierungserbnisse auf ihre Korrektheit zu \u00fcberpr\u00fcfen und | 60 | Optimierungserbnisse auf ihre Korrektheit zu \u00fcberpr\u00fcfen und | ||
61 | infolge Aussagen \u00fcber den ben\u00f6tigten Netzausbaubedarf | 61 | infolge Aussagen \u00fcber den ben\u00f6tigten Netzausbaubedarf | ||
62 | treffen zu k\u00f6nnen, m\u00fcssen die L\u00f6sungsmethoden im | 62 | treffen zu k\u00f6nnen, m\u00fcssen die L\u00f6sungsmethoden im | ||
63 | Vorfeld \u00fcberpr\u00fcft und validiert werden.\r\n\r\nIn der | 63 | Vorfeld \u00fcberpr\u00fcft und validiert werden.\r\n\r\nIn der | ||
64 | elektrischen Energieversorgung ist es \u00fcblich, seine entwickelten | 64 | elektrischen Energieversorgung ist es \u00fcblich, seine entwickelten | ||
65 | Methoden und Modelle anhand von standardisierten Benchmark Netzen zu | 65 | Methoden und Modelle anhand von standardisierten Benchmark Netzen zu | ||
66 | erproben, zu evaluieren und zu validieren. Der Bereich der Netzplanung | 66 | erproben, zu evaluieren und zu validieren. Der Bereich der Netzplanung | ||
67 | nimmt in dieser Betrachtung eine Sonderstellung ein, da die Ergebnisse | 67 | nimmt in dieser Betrachtung eine Sonderstellung ein, da die Ergebnisse | ||
68 | der Netzplanung m\u00f6gliche und umsetzbare Netztopologien | 68 | der Netzplanung m\u00f6gliche und umsetzbare Netztopologien | ||
69 | darstellen, die auf der Grundlage prognostizierter Versorgungsaufgaben | 69 | darstellen, die auf der Grundlage prognostizierter Versorgungsaufgaben | ||
70 | entwickelt wurden. Im Vergleich stellen \u00fcbliche Benchmark Netze | 70 | entwickelt wurden. Im Vergleich stellen \u00fcbliche Benchmark Netze | ||
71 | oftmals vereinfachte, synthetische Netzstrukturen in Anlehnung an | 71 | oftmals vereinfachte, synthetische Netzstrukturen in Anlehnung an | ||
72 | reale Versorgungsaufgaben dar. Diese Diskrepanz macht die Verwendung | 72 | reale Versorgungsaufgaben dar. Diese Diskrepanz macht die Verwendung | ||
73 | von Benchmark Netzen zur Erprobung und zur Validierung von | 73 | von Benchmark Netzen zur Erprobung und zur Validierung von | ||
74 | entwickelten Planungsans\u00e4tzen nicht m\u00f6glich.\r\n\r\nDie | 74 | entwickelten Planungsans\u00e4tzen nicht m\u00f6glich.\r\n\r\nDie | ||
75 | Ver\u00f6ffentlichung der Datengrundlage und der Ergebnisse von | 75 | Ver\u00f6ffentlichung der Datengrundlage und der Ergebnisse von | ||
76 | Netzplanungsalgorithmen f\u00fcr prognostizierte Versorgungsaufgaben | 76 | Netzplanungsalgorithmen f\u00fcr prognostizierte Versorgungsaufgaben | ||
77 | ist in der Literatur nicht \u00fcblich. Zur Wahrung einer guten | 77 | ist in der Literatur nicht \u00fcblich. Zur Wahrung einer guten | ||
78 | wissenschaftlichen Praxis werden daher die verwendeten Datengrundlagen | 78 | wissenschaftlichen Praxis werden daher die verwendeten Datengrundlagen | ||
79 | und die Resultate in den zuk\u00fcnftigen netzplanungsbezogenen | 79 | und die Resultate in den zuk\u00fcnftigen netzplanungsbezogenen | ||
80 | Ver\u00f6ffentlichungen am Fachgebiet f\u00fcr Elektrische | 80 | Ver\u00f6ffentlichungen am Fachgebiet f\u00fcr Elektrische | ||
81 | Energieversorgung des Instituts f\u00fcr Elektrische Energiesysteme in | 81 | Energieversorgung des Instituts f\u00fcr Elektrische Energiesysteme in | ||
82 | der vorliegenden Sammlung an Netzdatens\u00e4tzen ver\u00f6ffentlicht. | 82 | der vorliegenden Sammlung an Netzdatens\u00e4tzen ver\u00f6ffentlicht. | ||
83 | Dadurch wird die Grundlage f\u00fcr die Reproduzierbarkeit von | 83 | Dadurch wird die Grundlage f\u00fcr die Reproduzierbarkeit von | ||
84 | Ergebnissen im Forschungsgebiet der Netzplanung gelegt.\r\n", | 84 | Ergebnissen im Forschungsgebiet der Netzplanung gelegt.\r\n", | ||
85 | "num_resources": 2, | 85 | "num_resources": 2, | ||
86 | "num_tags": 5, | 86 | "num_tags": 5, | ||
87 | "organization": { | 87 | "organization": { | ||
88 | "approval_status": "approved", | 88 | "approval_status": "approved", | ||
89 | "created": "2021-07-23T07:58:50.801885", | 89 | "created": "2021-07-23T07:58:50.801885", | ||
90 | "description": "IfES - Institut f\u00fcr Elektrische | 90 | "description": "IfES - Institut f\u00fcr Elektrische | ||
91 | Energiesysteme\r\n\r\nAppelstra\u00dfe 9a 30167 | 91 | Energiesysteme\r\n\r\nAppelstra\u00dfe 9a 30167 | ||
92 | Hannover\r\n\r\nTelefon: +49 (0) 511 762\u20112816 Telefax: +49 (0) | 92 | Hannover\r\n\r\nTelefon: +49 (0) 511 762\u20112816 Telefax: +49 (0) | ||
93 | 511 762-2369\r\n\r\nhttp://www.ifes.uni-hannover.de", | 93 | 511 762-2369\r\n\r\nhttp://www.ifes.uni-hannover.de", | ||
94 | "id": "405335a6-471a-42e0-a07e-05d0ea87a6c1", | 94 | "id": "405335a6-471a-42e0-a07e-05d0ea87a6c1", | ||
95 | "image_url": | 95 | "image_url": | ||
96 | a.uni-hannover.de/uploads/group/2020-06-10-160224.326606ifeslogo.png", | 96 | a.uni-hannover.de/uploads/group/2020-06-10-160224.326606ifeslogo.png", | ||
97 | "is_organization": true, | 97 | "is_organization": true, | ||
98 | "name": "institut-fur-elektrische-energiesysteme", | 98 | "name": "institut-fur-elektrische-energiesysteme", | ||
99 | "state": "active", | 99 | "state": "active", | ||
100 | "title": "Institut f\u00fcr Elektrische Energiesysteme", | 100 | "title": "Institut f\u00fcr Elektrische Energiesysteme", | ||
101 | "type": "organization" | 101 | "type": "organization" | ||
102 | }, | 102 | }, | ||
103 | "owner_org": "405335a6-471a-42e0-a07e-05d0ea87a6c1", | 103 | "owner_org": "405335a6-471a-42e0-a07e-05d0ea87a6c1", | ||
104 | "private": false, | 104 | "private": false, | ||
105 | "relationships_as_object": [], | 105 | "relationships_as_object": [], | ||
106 | "relationships_as_subject": [], | 106 | "relationships_as_subject": [], | ||
107 | "resources": [ | 107 | "resources": [ | ||
108 | { | 108 | { | ||
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111 | "created": "2021-07-23T08:23:28.041686", | 111 | "created": "2021-07-23T08:23:28.041686", | ||
112 | "datastore_active": false, | 112 | "datastore_active": false, | ||
113 | "description": "The document introduces the MathWorks MATLAB | 113 | "description": "The document introduces the MathWorks MATLAB | ||
114 | data format of a Grid Planning Program (GPP) developed at the | 114 | data format of a Grid Planning Program (GPP) developed at the | ||
115 | Department of Electric Power Engineering at the Institute of Electric | 115 | Department of Electric Power Engineering at the Institute of Electric | ||
116 | Power Systems of the Leibniz Universit\u00e4t Hannover.", | 116 | Power Systems of the Leibniz Universit\u00e4t Hannover.", | ||
117 | "format": "PDF", | 117 | "format": "PDF", | ||
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139 | "description": "From the dataset abstract\r\n\r\n English: | 139 | "description": "From the dataset abstract\r\n\r\n English: | ||
140 | The field of grid planning is a research focus in the electrical power | 140 | The field of grid planning is a research focus in the electrical power | ||
141 | system research. The cost-optimized grid architecture and grid | 141 | system research. The cost-optimized grid architecture and grid | ||
142 | extension represent the most important...\r\n\r\nSource: Grid Planning | 142 | extension represent the most important...\r\n\r\nSource: Grid Planning | ||
143 | Program (GPP) Data Sets ", | 143 | Program (GPP) Data Sets ", | ||
144 | "format": "", | 144 | "format": "", | ||
145 | "hash": "", | 145 | "hash": "", | ||
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160 | } | 160 | } | ||
161 | ], | 161 | ], | ||
t | 162 | "state": "draft", | t | 162 | "state": "active", |
163 | "tags": [ | 163 | "tags": [ | ||
164 | { | 164 | { | ||
165 | "display_name": "Grid Data", | 165 | "display_name": "Grid Data", | ||
166 | "id": "0d2b5036-58a5-4bad-93dc-4e24bb920ab2", | 166 | "id": "0d2b5036-58a5-4bad-93dc-4e24bb920ab2", | ||
167 | "name": "Grid Data", | 167 | "name": "Grid Data", | ||
168 | "state": "active", | 168 | "state": "active", | ||
169 | "vocabulary_id": null | 169 | "vocabulary_id": null | ||
170 | }, | 170 | }, | ||
171 | { | 171 | { | ||
172 | "display_name": "Grid Optimization", | 172 | "display_name": "Grid Optimization", | ||
173 | "id": "7eff4a2f-0a36-4e70-9844-49852203ab18", | 173 | "id": "7eff4a2f-0a36-4e70-9844-49852203ab18", | ||
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177 | }, | 177 | }, | ||
178 | { | 178 | { | ||
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183 | "vocabulary_id": null | 183 | "vocabulary_id": null | ||
184 | }, | 184 | }, | ||
185 | { | 185 | { | ||
186 | "display_name": "Optimized Grid Extension", | 186 | "display_name": "Optimized Grid Extension", | ||
187 | "id": "805ce91c-0d8a-49c1-8069-a36a68980b2c", | 187 | "id": "805ce91c-0d8a-49c1-8069-a36a68980b2c", | ||
188 | "name": "Optimized Grid Extension", | 188 | "name": "Optimized Grid Extension", | ||
189 | "state": "active", | 189 | "state": "active", | ||
190 | "vocabulary_id": null | 190 | "vocabulary_id": null | ||
191 | }, | 191 | }, | ||
192 | { | 192 | { | ||
193 | "display_name": "Topology Optimization", | 193 | "display_name": "Topology Optimization", | ||
194 | "id": "4219fa85-5fe7-430c-afec-aa0e5ee93e4f", | 194 | "id": "4219fa85-5fe7-430c-afec-aa0e5ee93e4f", | ||
195 | "name": "Topology Optimization", | 195 | "name": "Topology Optimization", | ||
196 | "state": "active", | 196 | "state": "active", | ||
197 | "vocabulary_id": null | 197 | "vocabulary_id": null | ||
198 | } | 198 | } | ||
199 | ], | 199 | ], | ||
200 | "title": "Grid Planning Program (GPP) Data Sets", | 200 | "title": "Grid Planning Program (GPP) Data Sets", | ||
201 | "type": "dataset", | 201 | "type": "dataset", | ||
202 | "url": "", | 202 | "url": "", | ||
203 | "version": "" | 203 | "version": "" | ||
204 | } | 204 | } |