@phdthesis{Klein2023, author = {Alexander Klein}, school = {Dortmund University of Applied Sciences and Arts}, title = {Vorbereitung eines Fahrzeugs zum autonomen navigieren mittels GNSS}, year = {2023}, type = {candthesis} } @article{Ethernet, title = {IEEE Standard for Ethernet}, doi = {10.1109/IEEESTD.2022.9844436}, pages = {1-7025}, url = {https://ieeexplore.ieee.org/servlet/opac?punumber=9844414}, urldate = {2024-05-01}, journal = {IEEE Std 802.3-2022 (Revision of IEEE Std 802.3-2018)}, keywords = {IEEE Standards;Standards;IEEE 802.3 Standard;EPON;Optical fiber LAN;Physical layer;Optical fiber cables;2.5 Gigabit Ethernet;5 Gigabit Ethernet;10 Gigabit Ethernet;25 Gigabit Ethernet;40 Gigabit Ethernet;50 Gigabit Ethernet;100 Gigabit Ethernet;200 Gigabit Ethernet;400 Gigabit Ethernet;AN;attachment unit interface;AUI;Auto-Negotiation;Backplane Ethernet;balanced cable;data processing;DTE Power via the MDI;EEE;Energy-Efficient Ethernet;EPoC;EPON;EPON protocol over coax;Ethernet;Ethernet in the first mile;Ethernet Passive Optical Network;express traffic;Fast Ethernet;FEC;forward error correction;Gigabit Ethernet;IEEE 802.3;information exchange;isolation;LAN;local area network;management;MCRS;MDI;media independent interface;medium dependent interface;MIB;MII;MMF;MPCP;Multi-Channel Reconciliation Sublayer;multimode fiber;multipoint control protocol;P2MP;PCS;PD;PHY;physical coding sublayer;Physical Layer;Physical Layer Collision Avoidance;Physical Layer device;physical medium attachment;physical medium dependent;PLCA;PMA;PMD;PoDL;PoE;point to multipoint;Power over Data Lines;Power over Ethernet;Power Sourcing Equipment;Powered Device;PSE;reconciliation sublayer;repeater;RS;single-mode fiber;SMF;type field}, year = {2022} } @article{WLAN, title = {IEEE Standard for Information Technology--Telecommunications and Information Exchange between Systems - Local and Metropolitan Area Networks--Specific Requirements - Part 11: Wireless LAN Medium Access Control (MAC) and Physical Layer (PHY) Specifications}, doi = {10.1109/IEEESTD.2021.9363693}, pages = {1-4379}, url = {https://ieeexplore.ieee.org/servlet/opac?punumber=9363691}, urldate = {2024-05-01}, abstract = {Technical corrections and clarifications to IEEE Std 802.11 for wireless local area networks (WLANs) as well as enhancements to the existing medium access control (MAC) and physical layer (PHY) functions are specified in this revision. Amendments 1 to 5 published in 2016 and 2018 have also been incorporated into this revision. (The PDF of this standard is available at no cost to you compliments of the IEEE GET program https://ieeexplore.ieee.org/browse/standards/get-program/page/series?id=68)}, journal = {IEEE Std 802.11-2020 (Revision of IEEE Std 802.11-2016)}, keywords = {IEEE Standards;Information technology;Information exchange;Media Access Protocol;Encryption;Authentication;Message services;2.4 GHz;256-QAM;3650 MHz;4.9 GHz;5 GHz;5.9 GHz;60 GHz;advanced encryption standard;AES;audio;beamforming;carrier sense multiple access/collision avoidance;CCMP;channel switching;clustering;contention based access period;Counter mode with Cipher-block chaining Message authentication code Protocol;confidentiality;CSMA/CA;DFS;direct link;directional multi-gigabit;dynamic allocation of service period;dynamic extension of service period;dynamic frequency selection;dynamic truncation of service period;E911;EDCA;emergency alert system;emergency services;fast session transfer;forwarding;GCMP;generic advertisement service;high throughput;IEEE 802.11;international roaming;interworking;interworking with external networks;LAN;local area network;MAC;management;measurement;medium access control;media-independent handover;medium access controller;mesh;MIS;millimeter-wave;MIMO;MIMO-OFDM;multi-band operation;multi-hop;multi-user MIMO;multiple input multiple output;network advertisement;network discovery;network management;network selection;noncontiguous frequency segments;OCB;path-selection;personal basic service set;PHY;physical layer;power saving;QoS;quality of service;quality-of-service management frame;radio;radio frequency;RF;radio resource;radio management;relay operation;spatial sharing;SSPN;subscriber service provider;television white spaces;TPC;transmit power control;video;wireless access in vehicular environments;wireless LAN;wireless local area network;WLAN;wireless network management;zero-knowledge proof}, year = {2021} } @online{zed-f9k, author = {u-blox}, date = {2024-05-03}, title = {ZED-F9K-00B - Datasheet}, url = {https://content.u-blox.com/sites/default/files/ZED-F9K-00B_DataSheet_UBX-17061422.pdf}, subtitle = {High precision automotive DR GNSS receiverProfessional grade}, urldate = {2024-05-17}, version = {R08} } @online{antenneKlein, author = {u-blox}, date = {2023-06-12}, title = {ANN-MB1 - Data sheet}, url = {https://content.u-blox.com/sites/default/files/ANN-MB1_DataSheet_UBX-21005551.pdf}, subtitle = {L1/L5 multi-band high precision GNSS antenna}, urldate = {2024-05-17}, version = {R04} } @online{GnssVergleich, author = {Artem Sandler}, date = {2022-06-05}, title = {GPS-Alternativen: Diese Vorteile bieten Galileo, Beidou, Glonass und Co.}, url = {https://www.inside-digital.de/ratgeber/gps-alternativen-glonass-galileo-beidou}, urldate = {2024-05-17} } @Book{Bauer2018, author = {Prof. Dipl.-Ing. Manfred Bauer}, date = {2018}, title = {Vermessung und Ortung mit Satellite}, edition = {7}, isbn = {978-3-87907-635-2}, publisher = {Wichmann}, subtitle = {Globale Navigationssatellitensysteme (GNSS) undandere satellitengestützte Navigationssysteme}, } @Book{Ogaja, author = {Dr. Clement A. Ogaja}, date = {2022-05-24}, title = {Introduction to GNSS Geodesy}, doi = {https://doi.org/10.1007/978-3-030-91821-7}, edition = {1}, isbn = {978-3-030-91821-7}, language = {Englisch}, publisher = {Springer Cham}, subtitle = {Foundations of Precise Positioning Using Global Navigation Satellite Systems}, } @Report{NTRIPWorkingGroup2023, author = {{NTRIP Working Group of RTCM SC-104}}, date = {2023}, institution = {Radio Technical Commission For Maritime Services}, title = {Best Practices for NTRIP Client developers}, type = {techreport}, url = {https://docs.jabref.org/setup/citationkeypatterns}, urldate = {2024-06-05}, } @Online{FACG, author = {{Federal Agency for Cartography and Geodesy}}, date = {2024}, title = {Ntrip - Networked Transport of RTCM via Internet Protocol}, url = {https://igs.bkg.bund.de/ntrip/}, urldate = {2024-06-05}, } @Online{FACG2004, author = {{Federal Agency for Cartography and Geodesy}}, date = {2004-09-30}, title = {Networked Transport of RTCM via Internet Protocol(Ntrip)}, url = {https://igs.bkg.bund.de/root_ftp/NTRIP/documentation/NtripDocumentation.pdf}, urldate = {2024-06-05}, version = {1}, } @Online{systemd, author = {Ubuntuusers}, date = {2024-05-26}, editor = {noisefloor}, title = {systemd}, url = {https://wiki.ubuntuusers.de/systemd/}, urldate = {2024-06-13}, } @Software{ser2net, author = {Corey Minyard}, date = {2024-04-24}, title = {ser2net}, language = {C}, type = {software}, url = {https://github.com/cminyard/ser2net}, urldate = {2024-06-13}, version = {4.6.2}, } @Comment{jabref-meta: databaseType:biblatex;}