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- 01GS5BAEB46G2SM3DVGC2NREZX classification P1.
- 01GS5BAEB46G2SM3DVGC2NREZX date "2022".
- 01GS5BAEB46G2SM3DVGC2NREZX language "eng".
- 01GS5BAEB46G2SM3DVGC2NREZX type conference.
- 01GS5BAEB46G2SM3DVGC2NREZX hasPart 01GS5BFDS8ZYZ40QHTGVHPQHYM.pdf.
- 01GS5BAEB46G2SM3DVGC2NREZX hasPart 01GS5BFJMGZV34N5QN0QHN2AVR.pdf.
- 01GS5BAEB46G2SM3DVGC2NREZX subject "Technology and Engineering".
- 01GS5BAEB46G2SM3DVGC2NREZX doi "10.23919/EuCAP53622.2022.9769578".
- 01GS5BAEB46G2SM3DVGC2NREZX isbn "9788831299046".
- 01GS5BAEB46G2SM3DVGC2NREZX isbn "9788831299053".
- 01GS5BAEB46G2SM3DVGC2NREZX issn "2164-3342".
- 01GS5BAEB46G2SM3DVGC2NREZX presentedAt urn:uuid:87e4383d-ed2f-4e7b-8862-0ea6547142f5.
- 01GS5BAEB46G2SM3DVGC2NREZX abstract "Internet of Animal Health Things is an upcoming domain in both professional and domestic fields related to animal welfare monitoring including dairy cows, racehorses and domestic dogs. Wireless Body Area Networks represent a large allotment in the realization of these applications. Characterization of the path loss between on-body nodes in various surroundings is required when deploying such network. In this paper, the path loss between various on-body transmitting sensors and an on-body receiver is investigated at 2.45 GHz. Simulations using the Finite-Difference Time-Domain method are performed using a representative, homogeneous canine model on which two half-wavelength dipoles are placed at short distance from the body of the dog. Several combinations of transmitter and receiver locations and orientations are explored and for each transmitter location, the orientation and receiver location resulting in minimal path loss is determined. All path loss results are fitted to a log-normal path loss model with path loss exponent n ranging from 2.7 to 3.5. A link budget is composed with the wireless technologies ZigBee. The battery lifetime for several modules is determined. The ZigBee device XB24CAPIT-001 assures 237 days without recharging when using a battery capacity of 5000 mAh with an awake time period of 25%.".
- 01GS5BAEB46G2SM3DVGC2NREZX author 032AF6C8-F0EE-11E1-A9DE-61C894A0A6B4.
- 01GS5BAEB46G2SM3DVGC2NREZX author 07112AC8-45F5-11E5-91E6-AC9EB5D1D7B1.
- 01GS5BAEB46G2SM3DVGC2NREZX author 36B32B78-F0EE-11E1-A9DE-61C894A0A6B4.
- 01GS5BAEB46G2SM3DVGC2NREZX author F43EA4A2-F0ED-11E1-A9DE-61C894A0A6B4.
- 01GS5BAEB46G2SM3DVGC2NREZX author F5FAC172-F0ED-11E1-A9DE-61C894A0A6B4.
- 01GS5BAEB46G2SM3DVGC2NREZX author F682AB32-F0ED-11E1-A9DE-61C894A0A6B4.
- 01GS5BAEB46G2SM3DVGC2NREZX dateCreated "2023-02-13T12:17:16Z".
- 01GS5BAEB46G2SM3DVGC2NREZX dateModified "2024-07-09T07:43:37Z".
- 01GS5BAEB46G2SM3DVGC2NREZX name "Dog IoT : path loss and link budget analysis for canine Wireless Body Area Network".
- 01GS5BAEB46G2SM3DVGC2NREZX pagination urn:uuid:934f44c1-a297-4d7f-9356-a3ed4b184648.
- 01GS5BAEB46G2SM3DVGC2NREZX publisher urn:uuid:18c25dae-ae4e-4720-83e1-f4fb3d490418.
- 01GS5BAEB46G2SM3DVGC2NREZX sameAs LU-01GS5BAEB46G2SM3DVGC2NREZX.
- 01GS5BAEB46G2SM3DVGC2NREZX sourceOrganization urn:uuid:2750feea-6995-4359-a945-968f0453bdc5.
- 01GS5BAEB46G2SM3DVGC2NREZX sourceOrganization urn:uuid:48dc402f-1f53-4122-a06a-50aae9803d16.
- 01GS5BAEB46G2SM3DVGC2NREZX type P1.