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         "id"   : "https://puma.ub.uni-stuttgart.de/bibtex/26c6ed4664cb01341f6e462a1862808c8/iew_homepage",         
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            "Coils","Living_Object_Detection","Metal_Object_Detection","Object_detection","Sensitivity","Strips","Wireless_Power_Transfer","Wireless_communication","Wireless_sensor_networks","foreign_object_detection","hp_iew"
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         "label" : "A Hybrid Detector Array for Simultaneous Detection of Living and Metal Object in Wireless Power Transfer Systems",
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         "booktitle": "2024 IEEE Wireless Power Technology Conference and Expo (WPTCE)",
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         "author": [ 
            "Weizhou Ye","Jin Xu","Nejila Parspour"
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            	{"first" : "Jin",	"last" : "Xu"},
            	{"first" : "Nejila",	"last" : "Parspour"}
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         "pages": "618--621","abstract": "This paper proposed a sensing unit of Foreign Object Detection (FOD) for Wireless Power Transfer (WPT) systems that works for both Metal Object Detection (MOD) and Living Object Detection (LOD). Based on the proposed sensing unit, an adaptive excitation and detection algorithm is presented, where the exicitation signal with selectable frequencies components is generated to improve the detection rate of random Metal and Living Objects (MOs and LOs). Using the proposed sensing unit and the detection algorthm, the detection system works like a simplified impedance analyzer, which ultilizing the equivalent LC network of sensing unit as probe to detect the impedance variation due to the inductive coupling between MO and sensing unit's coil, as well as the capacitive coupling between LO and sensing unit's copper strip. Compared with conventional MOD and LOD systems, the detection system in this work has the advantages of reduced system complexity (using one sensing unit for both MOD and LOD, thus only one signal processing path is necessary) and improved sensitivity, especially in weak detection positions (e.g. boundaries of sensing components).",
         "doi" : "10.1109/WPTCE59894.2024.10557258",
         
         "bibtexKey": "YeWeizhou.2024.AHybridDetectorArray"

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         "label" : "Electromagnetic Design of Electrical Machines - New Potentials of Additive Manufacturing with the Example of the Transverse Flux Machine",
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         "booktitle": "2022 International Conference on Electrical Machines (ICEM)",
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         "url": "", 
         
         "author": [ 
            " Schmid Martin"," Terfurth Jonathan"," Kaiser Kim"," Parspour Nejila"
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         "pages": "1491--1497","abstract": "Electrical machines with 3D magnetic flux are one option, to increase power and torque density compared to conventional machines. One of these machines is the transverse flux machine which offers high torque at low speeds. However, due to material or geometric limitations, these machines have not been widely implemented thus far. The development of additive manufacturing in the field of soft magnetic materials has opened up new possibilities for the transverse flux machine. This paper presents, how the newly available materials and the integration of air slots in an existing stator open up new potentials for the transverse flux machine, mainly by reducing eddy currents. Here, a sensitivity analysis shows the influence of the slots on the machine performance. By selecting the best slot parameters, a significant increase in performance compared to the original machine can be achieved at a comparable efficiency.",
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            	{"first" : "Michael",	"last" : "Günther"},
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         "editor": [ 
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            	{"first" : "Tobias",	"last" : "Siebert"}
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         "venue" : "Madrid, Spain",
         
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         "venue" : "Paris, France",
         
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         "eventtitle" : "IEEE International Conference on Condition Monitoring and Diagnosis (CMD)",
         
         "venue" : "Beijing, China",
         
         "eventdate" : "April 21-24",
         
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         "venue" : "Beijing, China",
         
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