Patents by Inventor Franz J. Eder
Franz J. Eder has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Patent number: 12224843Abstract: Some aspects relate to apparatuses and methods for selecting a receiving beam based on hybrid channel based beamforming and codebook based beamforming. A user equipment (UE) can determine, based on a first measurement related to signal to noise ratio (SNR) and predetermined threshold values, whether the UE is in a low SNR state. If the UE is in a low SRN state, the UE can derive an estimated channel covariance matrix RCH for channels at a set of antenna elements of the UE based on channel based bearmforming (CHBF). Afterwards, a set of test bears {0, . . . Ntest?1} is selected based on the channel covariance matrix RCH, and a set of codebook measurement beams is further selected based on the set of test beams. A receiving beam is selected based on a set of measurements performed on the set of codebook measurement beams at the measurement opportunity for codebook based beamforming (CBBF).Type: GrantFiled: September 26, 2023Date of Patent: February 11, 2025Assignee: Apple Inc.Inventors: Franz J. Eder, Adrian Carlos Loch Navarro, Andre Janssen, Holger Neuhaus, Kenan Kocagoez
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Publication number: 20250039805Abstract: A user equipment (UE) device may communicate with a wireless base station (BS). Each antenna in a phased antenna array on the UE may receive a reference signal transmitted by the BS during the beam training interval. Transceiver circuitry may measure wireless performance metric data from the reference signal. While receiving the reference signal, control circuitry may selectively activate different individual antennas, may selectively activate different subsets of antennas, or may concurrently activate all of the antennas in the array. The control circuitry may identify, based on the wireless performance metric data, a first set of the antennas in the array to that are being blocked by an external object and a second set of antennas array that are not blocked. After the beam training interval, the transceiver may use the second set of antennas to convey wireless data with the BS while the first set of antennas are disabled.Type: ApplicationFiled: July 25, 2023Publication date: January 30, 2025Inventors: Franz J Eder, Carlo Tosetti, Josef Hagn, Andre Janssen, Abbas Komijani, Iliah Konstantinovsky, Roman Rainov, Amit Freiman, Amitoj Singh, Bernhard Sogl
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Publication number: 20240380449Abstract: Techniques described herein include solutions for utilizing dual port synchronization signal block (SSB) transmissions for multiple receive (Rx) beam selection. In some aspects, a base station transmits a first SSB with a first polarization on a first antenna port, and transmits a second SSB with a second polarization on a second antenna port. The first and second SSBs may be transmitted, for example, using a first transmission reception point (TRP). A user equipment (UE) receives the first and second SSBs, and identifies one or more optimal Rx beams for multiple-input multiple-output (MIMO) communication based on the first and second SSBs.Type: ApplicationFiled: March 22, 2024Publication date: November 14, 2024Inventors: Konstantinos Sarrigeorgidis, Manasa Raghavan, Yang Tang, Franz J. Eder, Andre Janssen, Xiang Chen, Jie Cui
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Patent number: 11909124Abstract: An electronic device having multiple antenna groups for data communication may determine a temperature of a first antenna group and determine a power gain of a second antenna group. The electronic device may communicate using the second antenna group in response to determining that the temperature of the first antenna group exceeds a temperature threshold and the power gain of the second antenna group exceeds a gain threshold. In some embodiments, the electronic device may receive communication link preferences, determine an antenna group that is disposed outside of thermal hotspots of the electronic device, and determine a beam that enables the communication link preferences via the antenna group. The electronic device may then transmit or receive data via the antenna group by forming the beam.Type: GrantFiled: April 30, 2021Date of Patent: February 20, 2024Assignee: Apple Inc.Inventors: Franz J. Eder, Carlo Tosetti, Kenan Kocagoez, Prashant H. Vashi, Murali Mohan Chakka, Muthukumaran Dhanapal
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Publication number: 20240030997Abstract: Some aspects relate to apparatuses and methods for selecting a receiving beam based on hybrid channel based beamforming and codebook based beamforming. A user equipment (UE) can determine, based on a first measurement related to signal to noise ratio (SNR) and predetermined threshold values, whether the UE is in a low SNR state. If the UE is in a low SRN state, the UE can derive an estimated channel covariance matrix RCH for channels at a set of antenna elements of the UE based on channel based bearmforming (CHBF). Afterwards, a set of test bears {0, . . . Ntest?1} is selected based on the channel covariance matrix RCH, and a set of codebook measurement beams is further selected based on the set of test beams. A receiving beam is selected based on a set of measurements performed on the set of codebook measurement beams at the measurement opportunity for codebook based beamforming (CBBF).Type: ApplicationFiled: September 26, 2023Publication date: January 25, 2024Applicant: APPLE INC.Inventors: Franz J. EDER, Adrian Carlos Loch NAVARRO, Andre JANSSEN, Holger NEUHAUS, Kenan KOCAGOEZ
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Patent number: 11824616Abstract: Some aspects relate to apparatuses and methods for selecting a receiving beam based on hybrid channel based beamforming and codebook based beamforming. A user equipment (UE) can determine, based on a first measurement related to signal to noise ratio (SNR) and predetermined threshold values, whether the UE is in a low SNR state. If the UE is in a low SRN state, the UE can derive an estimated channel covariance matrix RCH for channels at a set of antenna elements of the UE based on channel based beamforming (CHBF). Afterwards, a set of test beams {0, . . . Ntest?1} is selected based on the channel covariance matrix RCH, and a set of codebook measurement beams is further selected based on the set of test beams. A receiving beam is selected based on a set of measurements performed on the set of codebook measurement beams at the measurement opportunity for codebook based beamforming (CBBF).Type: GrantFiled: August 30, 2022Date of Patent: November 21, 2023Assignee: APPLE INC.Inventors: Franz J. Eder, Adrian Carlos Loch Navarro, Andre Janssen, Holger Neuhaus, Kenan Kocagoez
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Publication number: 20230066493Abstract: Some aspects relate to apparatuses and methods for selecting a receiving beam based on hybrid channel based beamforming and codebook based beamforming. A user equipment (UE) can determine, based on a first measurement related to signal to noise ratio (SNR) and predetermined threshold values, whether the UE is in a low SNR state. If the UE is in a low SRN state, the UE can derive an estimated channel covariance matrix RCH for channels at a set of antenna elements of the UE based on channel based beamforming (CHBF). Afterwards, a set of test beams {0, . . . Ntest?1} is selected based on the channel covariance matrix RCH, and a set of codebook measurement beams is further selected based on the set of test beams. A receiving beam is selected based on a set of measurements performed on the set of codebook measurement beams at the measurement opportunity for codebook based beamforming (CBBF).Type: ApplicationFiled: August 30, 2022Publication date: March 2, 2023Applicant: Apple Inc.Inventors: Franz J. EDER, Adrian Carlos Loch NAVARRO, Andre JANSSEN, Holger NEUHAUS, Kenan KOCAGOEZ
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Publication number: 20220352627Abstract: An electronic device having multiple antenna groups for data communication may determine a temperature of a first antenna group and determine a power gain of a second antenna group. The electronic device may communicate using the second antenna group in response to determining that the temperature of the first antenna group exceeds a temperature threshold and the power gain of the second antenna group exceeds a gain threshold. In some embodiments, the electronic device may receive communication link preferences, determine an antenna group that is disposed outside of thermal hotspots of the electronic device, and determine a beam that enables the communication link preferences via the antenna group. The electronic device may then transmit or receive data via the antenna group by forming the beam.Type: ApplicationFiled: April 30, 2021Publication date: November 3, 2022Inventors: Franz J. Eder, Carlo Tosetti, Kenan Kocagoez, Prashant H. Vashi, Murali Mohan Chakka, Muthukumaran Dhanapal
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Publication number: 20220322113Abstract: Apparatuses, systems, and methods for beam failure recovery based on a unified TCI framework. A UE may receive, from a base station, a configuration for a BFR procedure for a CCG. The CCG may include at least two CCs and the UE may periodically receive, from the base station, at least a first BFD RS and a first CBD RS in a first CC included in the CCG. The UE may detect, based on the first BFD RS, a beam failure in at least the first CC and send, to the base station, a BFRQ. The BFRQ may include a candidate beam selected based on at least the first CBD RS and may be sent via a PRACH or MAC CE. The UE may receive, from the base station, a BFR response and apply the candidate beam to the first CC and at least one additional CC of the CCG.Type: ApplicationFiled: March 31, 2021Publication date: October 6, 2022Inventors: Yushu Zhang, Andre Janssen, Haitong Sun, Wei Zeng, Dawei Zhang, Yeong-Sun Hwang, Franz J. Eder