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         "id"   : "https://puma.ub.uni-stuttgart.de/bibtex/2cd5b30f810ebc096977cc76a89f6c4e8/dseyfert",         
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         "author": [ 
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            	{"first" : "Dominic",	"last" : "Seyfert"}
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         "year": "2019", 
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         "author": [ 
            "Markus Hofmann","Ferran Giones"
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            	{"first" : "Markus",	"last" : "Hofmann"},
            	{"first" : "Ferran",	"last" : "Giones"}
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         "editor": [ 
            "R. Baierl","J. Behrens","A. Brem"
         ],
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            	{"first" : "R.",	"last" : "Baierl"},
            	{"first" : "J.",	"last" : "Behrens"},
            	{"first" : "A.",	"last" : "Brem"}
         ],
         "pages": "99--121","abstract": "Understanding how a new digital technology can translate into a valuable innovation is a challenge for established players and new entrants. For industrial players in an ecosystem, it can be both a threat and an opportunity. Furthermore, the new technologies open collaboration opportunities between corporates and start-ups. But it remains unclear what are the consequences of opening up and whether it has an impact on the innovation dynamics in the industrial ecosystem. We use the case of the wind industry in Denmark, as a maturing industrial ecosystem, to study when and how the new entrants (technology entrepreneurs) have had an impact on the innovation dynamics. We first combine archival data with interviews to build a historical account of the evolution of the industrial ecosystem; then we incorporate data from the new entrants in the industry to specify the types of innovations that the most recent digital technology entrepreneurs have triggered. The results suggest differences in the innovation dynamics depending on the value chain position. While some activities have remained rather closed (for instance, the technological development of the core elements in the wind turbines), the operations and maintenance activities have profited from digital technologies introduced by new entrants. Using these insights, we present and discuss suggestions to institutional actors interested in protecting the innovation leadership of their regional industrial ecosystems.",
         "isbn" : "9783030201371",
         
         "language" : "English",
         
         "doi" : "10.1007/978-3-030-20138-8_5",
         
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            "(Planer),","Anforderung,","Aussichtsplattform,","Baden-Württemberg,","Baugrundeigenschaft,","Befestigungselement,","Belastungssimulation,","Besonderheit,","Betonkonstruktion,","Betonplatte,","Bundesrepublik,","Dauerfestigkeit,","Deutschland,","Erdbebensimulation,","Fassadengestaltung,","Fassadenverkleidung,","Flächengebilde,","Funktion,","Gebäudehülle,","Glasfasergewebe,","Krafteinleitung,","Nachweis,","Pendel,","Planungsanforderung,","Rottweil(11),","Schwerlastanker,","Schwingungsdämpfung,","Schwingungserregung,","Sobek,","Stahlbetonturm,","Temperaturspannung,","Testanlage,","Textiles","Tragwerksbemessung,","Turmbauwerk,","Werner","Windbelastung,","Witterungsschutz","anchor,","application,","area-measured","building","capacity,","concrete","damping,","design,","dimensioning","earthquake","endurance,","facade","facing,","fastener,","feature,","force","function,","glass-fiber","ground","heavy-load","impulse,","installation,","load","loading","material,","of","oscillatory","pendulum,","planning","platform,","proof,","property,","protection,","reinforced","requirement,","shape,","simulation,","slab,","sobek","special","stress,","structure,","structures,","temperature","test","textile","tissue,","tower","tower,","vibration","viewing","weathering","wind"
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         "label" : "Hülle mit vielen Aufgaben - Textilfassade",
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         "author": [ 
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         "authors": [
         	
            	{"first" : "Holger",	"last" : "Hinz"},
            	{"first" : "Werner",	"last" : "Sobek"}
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         "issn" : "0948-1214",
         
         "bibtexKey": "hinz_hulle_2017"

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            "UHPFRC,","external","for","onshore","post-tensioning,","segmented","sobek","structure,","tower","tower,","turbines","wind"
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         "intraHash" : "85e67f07ac4a4f232e3294d8a1845a56",
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         "label" : "Concept for an onshore tower structure made of UHPFRC segments for wind turbines",
         "user" : "jmueller",
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         "journal": "Acta Technica Napocensis: Civil Engieering & Architecture",
         "year": "2019", 
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         "author": [ 
            "Traian-Nicu Toader","Daniel Schmeer","Werner Sobek"
         ],
         "authors": [
         	
            	{"first" : "Traian-Nicu",	"last" : "Toader"},
            	{"first" : "Daniel",	"last" : "Schmeer"},
            	{"first" : "Werner",	"last" : "Sobek"}
         ],
         "volume": "62","number": "1","pages": "5--25","abstract": "Germany\u2019s decision to replace fossil fuels with renewable energy, made by the Federal Government, will require considerable innovations in almost the entire energy industry to achieve the goal in the shortest time [1]. One solution the present paper considers is an increase for energy generated by onshore wind turbines (WT) on complex mountainous terrain. In order to use these difficult areas for erecting new WT, the components for the plant need to be adapted or newly developed. One possible option is the development of new tower structures for onshore WT made of ultra-high performance fiber-reinforced concrete (UHPFRC) segments. The present paper focuses on the design concept and the dimensioning of innovative tower structures for onshore WT placed in the demanding conditions of the complex mountainous terrain. This structural concept in combination with UHPFRC leads to high material savings of up to 50\\% compared to existing solutions.",
         "issn" : "1221-5848",
         
         "bibtexKey": "toader_concept_2019"

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         "label" : "Statistical comparison of the lidar measurement error of different wind lidar profilers in complex terrain",
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         "year": "2023", 
         "url": "https://doi.org/10.5281/zenodo.8378051", 
         
         "author": [ 
            "Martin Hofsäß","Oliver Bischoff","Doron Callies","Dominic Clement","Tobias Klaas-Witt","Carolin Schmitt","Po Wen Cheng"
         ],
         "authors": [
         	
            	{"first" : "Martin",	"last" : "Hofsäß"},
            	{"first" : "Oliver",	"last" : "Bischoff"},
            	{"first" : "Doron",	"last" : "Callies"},
            	{"first" : "Dominic",	"last" : "Clement"},
            	{"first" : "Tobias",	"last" : "Klaas-Witt"},
            	{"first" : "Carolin",	"last" : "Schmitt"},
            	{"first" : "Po Wen",	"last" : "Cheng"}
         ],
         "note": "This work was part of the research project LoTar which was funded by the German Ministry for Economic Affairs and Climate Action under the code number 03EE3052.",
         "doi" : "10.5281/zenodo.8378051",
         
         "bibtexKey": "hofsass_martin_2023_8378051"

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         "tags" : [
            "komplexesgelände","lidar","wind"
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         "author": [ 
            "Martin Hofsäß","Oliver Bischoff","Doron Callies","Florian Jäger","Tobias Klaas-Witt","Po-Wen Cheng"
         ],
         "authors": [
         	
            	{"first" : "Martin",	"last" : "Hofsäß"},
            	{"first" : "Oliver",	"last" : "Bischoff"},
            	{"first" : "Doron",	"last" : "Callies"},
            	{"first" : "Florian",	"last" : "Jäger"},
            	{"first" : "Tobias",	"last" : "Klaas-Witt"},
            	{"first" : "Po-Wen",	"last" : "Cheng"}
         ],
         "note": "This work was part of the research project LoTar which was funded by the German Ministry for Economic Affairs and Climate Action under the code number 03EE3052.",
         "doi" : "10.5281/zenodo.8376705",
         
         "bibtexKey": "hofsass_martin_2022_8376705"

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            "Considering","Constraints","Dispatch","Environmental-economic","Generator","Improved","Load","Multi-objective","Optimizationsend:unibiblio","Particle","Power","Swarm","Using","Wind"
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         "label" : "Multi-objective Environmental-economic Load Dispatch Considering Generator Constraints and Wind Power Using Improved Multi-objective Particle Swarm Optimization",
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         "author": [ 
            "Tankut Yalcinoz","Krzysztof Rudion"
         ],
         "authors": [
         	
            	{"first" : "Tankut",	"last" : "Yalcinoz"},
            	{"first" : "Krzysztof",	"last" : "Rudion"}
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         "id"   : "https://puma.ub.uni-stuttgart.de/bibtex/262241046a760d1701786a075072392ac/ferrangiones",         
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         "label" : "Entrepreneurship as an Innovation Driver in an Industrial Ecosystem",
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         "booktitle": "Digital Entrepreneurship: Interfaces between Digital Technologies and Entrepreneurship","publisher":"Springer - FGF Studies in Small Business and Entrepreneurship","address":"Cham",
         "year": "2019", 
         "url": "https://link.springer.com/chapter/10.1007/978-3-030-20138-8_5", 
         
         "author": [ 
            "Markus Hofmann","Ferran Giones"
         ],
         "authors": [
         	
            	{"first" : "Markus",	"last" : "Hofmann"},
            	{"first" : "Ferran",	"last" : "Giones"}
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         "editor": [ 
            "Ronny Baierl","Judith Behrens","Alexander Brem"
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         "editors": [
         	
            	{"first" : "Ronny",	"last" : "Baierl"},
            	{"first" : "Judith",	"last" : "Behrens"},
            	{"first" : "Alexander",	"last" : "Brem"}
         ],
         "pages": "99--121","abstract": "Understanding how a new digital technology can translate into a valuable innovation is a challenge for established players and new entrants. For industrial players in an ecosystem it can be both a threat or an opportunity. Furthermore, the new technologies open collaboration opportunities between corporates and startups. But, it is remains unclear what are the consequences of opening up, and whether it has an impact on the innovation dynamics in the industrial ecosystem. We use the case of the Wind Industry in Denmark, as a maturing industrial ecosystem, to study when and how the new entrants (technology entrepreneurs) have had an impact on the innovation dynamics. We first combine archival data with interviews to build an historical account of the evolution of the industrial ecosystem, then we incorporate data from the new entrants in the industry to specify the types of innovations that the most recent digital technology entrepreneurs have triggered. The results suggest differences in the innovation dynamics depending on the value chain position. While some activities have remained rather closed (for instance the technological development of the core elements in the wind turbines), the operations and maintenance activities have profited from digital technologies introduced by new entrants. Using these insights, we present and discuss suggestions to institutional actors interested in protecting the innovation leadership of their regional industrial ecosystems.",
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         "doi" : "10.1007/978-3-030-20138-8_5",
         
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         "label" : "Four Methods for LIDAR Retrieval of Microscale Wind Fields",
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         "author": [ 
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            	{"first" : "Allen Q.",	"last" : "Howard"},
            	{"first" : "Thomas",	"last" : "Naini"}
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         "volume": "4","number": "12","pages": "2329--2355","abstract": "This paper evaluates four wind retrieval methods for micro-scale meteorology applications with volume and time resolution in the order of 30m3 and 5 s. Wind field vectors are estimated using sequential time-lapse volume images of aerosol density fluctuat",
         "issn" : "2072-4292",
         
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         "bibtexKey": "howard2012methods"

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         "label" : "Three Dimension Wind Retrieval of Single-Doppler Radar Data with Imporooved VVP Method: 26 - 28 Dec. 2009, Nanjing, China",
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         "url": "http://ieeexplore.ieee.org/servlet/opac?punumber=5454173", 
         
         "author": [ 
            "Ming Wei","Nan Li"
         ],
         "authors": [
         	
            	{"first" : "Ming",	"last" : "Wei"},
            	{"first" : "Nan",	"last" : "Li"}
         ],
         "volume": "1",
         "bibtexKey": "wei2009three"

      }
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         "type" : "Publication",
         "id"   : "https://puma.ub.uni-stuttgart.de/bibtex/2531e550e80c5f58a9218dc8bcd1f2b0f/mwigger",         
         "tags" : [
            "DTU","DTU-Wind-Energy-PhD-0027","Energy","PhD-0027,","PhD-27,","Wind"
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         "intraHash" : "531e550e80c5f58a9218dc8bcd1f2b0f",
         "interHash" : "fa5399f8b6462afe18a51532e77b2e15",
         "label" : "A time-space synchronization of coherent Doppler scanning lidars for 3D measurements of wind fields",
         "user" : "mwigger",
         "description" : "",
         "date" : "2018-07-01 13:42:06",
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         "pub-type": "phdthesis",
         "publisher":"DTU Wind Energy","address":"Denmark",
         "year": "2014", 
         "url": "", 
         
         "author": [ 
            "Nikola Vasiljevic","Michael Courtney","Jakob Mann"
         ],
         "authors": [
         	
            	{"first" : "Nikola",	"last" : "Vasiljevic"},
            	{"first" : "Michael",	"last" : "Courtney"},
            	{"first" : "Jakob",	"last" : "Mann"}
         ],
         "abstract": "This thesis consists of the results of a Ph.D. study that was focused on the development of the system of three time-space synchronized pulsed coherent Doppler scanning lidars, which are coordinated by a remote 'master computer'. This system has the unique capability to measure a complete three-dimensional flow field by emitting the laser beams from the three spatially separated lidars, directing them to intersect, and moving the beam intersection over an area of interest. Each individual lidar was engineered to be powered by two real servo motors, and one virtual stepper motor. The stepper motor initiates the laser pulse emission and acquisition of the backscattered light, while the two servo motors conduct the scanner head rotation that provides means to direct the laser pulses into the atmosphere. By controlling the rotation of the three motors from the motion controller the strict synchronization and time control of the emission, steering and acquisition were achieved, resulting that the complete lidar measurement process is controlled from the single hardware component. The system was formed using a novel approach, in which the master computer simultaneously coordinates the remote lidars through a UDP/IP and TCP/IP network by exchange of network packets. Since the size of the packets is roughly 1 kB, this approach allows an uninterrupted and fast coordination of the lidars, even in the case of mobile networks such as GSM. With this approach a maximum lag of 10 ms was observed in terms of the scanner heads' rotation and the measurements among the lidars in the system. The laser beam pointing accuracy of each lidar was estimated to $\\pm$0.5$\\,^\\circ$ for the laser beam direction, and roughly $\\pm$5 m for the sensing distance. A set of procedures were proposed that can improve the pointing accuracy by a factor of 20. Subsequently, two experiments were carried out in which the developed multiple lidars system was used to synchronously measure wind velocity fields in multiple points in the atmosphere.",
         "date-modified" : "2018-02-17 11:28:31 +0000",
         
         "date-added" : "2018-02-17 11:28:31 +0000",
         
         "bibtexKey": "vasiljevic2014timespace"

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         "author": [ 
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         "bibtexKey": "xudong2009integrating"

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