
GSM Control Channel Processing Through Physical Layer
Explore GSM control channel processing in the physical layer, covering SACCH, FACCH, BCCH, PCH, AGCH, and more, as per 3GPP TS 45.003.
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Explore GSM control channel processing in the physical layer, covering SACCH, FACCH, BCCH, PCH, AGCH, and more, as per 3GPP TS 45.003.
This article explains GSM handover failures from UTRAN due to physical channel issues, leading to timer T313 expiry, and outlines the handover procedure.
Explore GSM packet-switched channels, focusing on GPRS (CS1-CS4) and EGPRS (MCS1-MCS9) coding schemes at the physical layer. Understand data rates and robustness trade-offs.
Explore the GSM physical layer (layer-1) functions, including baseband processing, FEC, ciphering, burst formation, and modulation for mobile station transmission.
Explore GSM traffic channel processing through the physical layer, covering speech and data channels as per 3GPP TS 45.003.
An overview of IEEE 802.11ac WLAN technology, covering key features like bandwidth, MIMO, modulation, and frame structure.
Learn about interleaving techniques in data communication systems, including block and convolutional interleavers, their benefits, and implementation in WiMAX.
Learn about the KNX protocol stack, including the physical, datalink, routing, transport, and application layers. Understand their functions and specifications.
Explore job listings for Layer1 (L1) and Physical layer positions from various companies. Stay updated on opportunities in wireless protocol development and related technologies.
Explore the LDACS1 physical layer for air traffic control, focusing on OFDM modulation, frame structure, and transmitter/receiver functionalities between aircraft and ground stations.
Explore the LDACS2 physical layer, focusing on its single-carrier technology, TDD operation, and key components in the transmitter and receiver.
Explore the LiFi physical layer (PHY), including PHY-I, PHY-II, and PHY-III versions, their features, modulation, and code rates for different data rate needs.
Understand LTE channel mapping including logical, transport, and physical channels. Learn how data flows through these channels for efficient communication in LTE networks.
Explanation of code blocks in LTE, detailing transport block segmentation, CRC attachment, filler bits, and concatenation for efficient data transmission.
Learn about the LTE DL-SCH (Downlink Shared Channel), its physical layer processing, and its role in transmitting data in LTE networks.
Explore LTE eNodeB physical layer measurements, including downlink RS transmit power, received interference, and thermal noise. Understand key metrics for base station performance.
Explore the function and physical layer processing of the LTE NB-IoT NPBCH, covering its role in carrying MIB information and its operation within the NB-IoT network.
Explore the LTE NB-IoT NPDCCH function, its location, and its physical layer processing, including DCI formats and NCCE mapping.
Explore the LTE NB-IoT NPDSCH function, physical layer processing, parameters, and its role in transmitting unicast and broadcast data in NB-IoT systems.
Learn about the LTE PCFICH channel, which provides information about the number of symbols used for PDCCH transmission in each 1ms subframe.
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