Patents by Inventor Ravikumar V. Pragada

Ravikumar V. Pragada 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).

  • Publication number: 20200304179
    Abstract: A method and apparatus are disclosed for communication in a Millimeter Wave Hotspot (mmH) backhaul system which uses mesh nodes. A mmH mesh node may receive a control signal which includes a total number of available control slots. The mesh node may determine the number of iterations of a resource scheduling mechanism that can be made during the time period of all available control slots, based on the number of neighbor nodes for the mesh node. Further, the mesh node may receive control slot information, including information about traffic queues and priorities. The mesh node may then perform resource scheduling using the resource scheduling mechanism based on the currently received control slot information and control slot information received in previous iterations of resource scheduling. The mesh node may also adjust a preamble based on a time between a last packet transmission and a current packet transmission to a neighboring node.
    Type: Application
    Filed: June 5, 2020
    Publication date: September 24, 2020
    Applicant: INTERDIGITAL PATENT HOLDINGS, INC.
    Inventors: Steven FERRANTE, Arnab ROY, Philip J. PIETRASKI, Ravikumar V. PRAGADA
  • Patent number: 10785607
    Abstract: Systems, methods, and instrumentalities are disclosed for processing a multi-level transmission sent on a common set of resources using superposition coding, comprising determining a first group radio network temporary identifier (GRNTI), wherein the GRNTI is associated with a broadcast transmission to a plurality of wireless transmit/receive units (WTRUs), determining a second GRNTI, wherein the second GRNTI is associated with a transmission to a subset of the plurality of WTRUs that received the first GRNTI, receiving the multi-level transmission, wherein the multi-level transmission comprises a first level message and a second level message, decoding the first level message from the multi-level transmission using the first GRNTI and preconfigured control information, and decoding the second level message from the multi-level transmission using the second GRNTI.
    Type: Grant
    Filed: May 12, 2017
    Date of Patent: September 22, 2020
    Assignee: InterDigital Patent Holdings, Inc.
    Inventors: Anantharaman Balasubramanian, Ravikumar V. Pragada
  • Patent number: 10779196
    Abstract: A station (STA) may include an antenna and a processor operatively coupled to the antenna. The antenna and the processor may be configured to receive a request message from an access point (AP). The request message may include identity information of one or more other STAs and an indication to perform measurements of the one or more other STAs. The antenna and the processor may be further configured to perform the measurements of the one or more STAs to determine a link metric associated with each STA of the one or more other STAs. The antenna and the processor may be further configured to send a reply message to the AP after the link metric associated with each STA of the one or more STAs is determined. The reply message may include results of the determination.
    Type: Grant
    Filed: November 15, 2018
    Date of Patent: September 15, 2020
    Assignee: InterDigital Patent Holdings, Inc.
    Inventors: Arnab Roy, Yugeswar Deenoo, Ravikumar V. Pragada
  • Publication number: 20200250993
    Abstract: An unmanned aerial system (UAS) may execute a mission planned by a UAS traffic management (UTM) system. The UAS may receive a mission planning response message from the UTM that includes a mission route for the UAS to navigate and a configuration of one or more trigger events. The mission route may be made up of a sequence of waypoints in an airspace. Each of the waypoints may be configured with a dynamic path conforming profile (PCP) a dynamic required navigation performance (RNP) value. The UAS may monitor at least the RNP value in one or more time intervals to determine if a trigger event occurs. The UAS may transmit a path conformance status report to the UTM upon determining that a trigger event of the one or more trigger events occurred. The path conformance status report may indicate conformance to one or more parameters specified in the PCP.
    Type: Application
    Filed: October 16, 2018
    Publication date: August 6, 2020
    Applicant: INTERDIGITAL PATENT HOLDINGS, INC.
    Inventors: Jun Li, Nagi Mahalingam, Anantharaman Balasubramanian, Ravikumar V. Pragada, Michel Roy
  • Patent number: 10715593
    Abstract: A method and apparatus for establishing peer-to-peer communication in a wireless network is described. A wireless transmit/receive unit (WTRU) may receive configuration information comprising periodic resources comprising time and subcarrier resources from a base station of a wireless network. The time and subcarrier resources may be used in discovery of other WTRUs. The WTRU is further configured to transmit an identification in the allocated resources and to transmit a synchronization signal to a peer WTRU for timing synchronization of the peer WTRU.
    Type: Grant
    Filed: July 31, 2018
    Date of Patent: July 14, 2020
    Assignee: InterDigital Patent Holdings, Inc.
    Inventors: Tao Deng, Ravikumar V Pragada, Eldad M Zeira
  • Publication number: 20200187108
    Abstract: A method and apparatus are described for supporting a two-stage device-to-device (D2D) discovery using a D2D interworking function (IWF). A D2D IWF component may be configured to perform mapping between an application running on an application server and a third generation partnership project (3GPP) network, and provide a set of application programming interfaces (APIs) to allow discovery to be provided as a service to D2D applications. An application identifier may be mapped to a 3GPP identifier. Further, a method and apparatus are described for performing client-server discovery. A first wireless transmit/receive unit (WTRU) may be configured for a listen-only operation, and a second WTRU may be configured to transmit beacons. The first and second WTRUs may perform a radio access network (RAN) discovery procedure at an access stratum (AS) layer. A method and apparatus for performing charging for D2D service using a D2D IWF are also described.
    Type: Application
    Filed: December 30, 2019
    Publication date: June 11, 2020
    Applicant: INTERDIGITAL PATENT HOLDINGS, INC.
    Inventors: Ravikumar V. Pragada, Saad Ahmad, Balaji Raghothaman, Samian J. Kaur, Pascal M. Adjakple, Ulises Olvera-Hernandez, Zhuorong Deng, Kiran K. Vanganuru, Gregory S. Sternberg, Guanzhou Wang, Michael F. Starsinic, Alexander Reznik, Juan Carlos Zuniga, Eldad M. Zeira
  • Patent number: 10652947
    Abstract: A wireless transmit/receive unit (WTRU) may receive from a network resource allocation information for device to device (D2D) communication. The WTRU may select, from the received resource allocation information for a transmission time interval (TTI), resources for a D2D channel. The WTRU may transmit, with use of the selected resources, data directly to another WTRU.
    Type: Grant
    Filed: March 16, 2018
    Date of Patent: May 12, 2020
    Assignee: InterDigital Patent Holdings, Inc.
    Inventors: Ravikumar V. Pragada, Saad Ahmad, Balaji Raghothaman, Ulises Olvera-Hernandez, Zhuorong Deng, Pascal M. Adjakple, Gregory S. Sternberg, Guanzhou Wang, Alexander Reznik
  • Publication number: 20200145963
    Abstract: Systems, methods, and instrumentalities are disclosed for active interference management. Active interference management may be provided for designated data regions and/or superzones. UAV-specific or other designated data regions (e.g., with data zones) may enable dynamic inter-cell interference management and high reliability command & control for UAVs in interference prone in environments. Data zone/region specific control channel search space may support inter-cell interference cancellation. Aggregation N levels (e.g., during EPDCCH encoding) may be dependent on an interference level of a zone. Data zone specific reference signals (DS-RS) may enable UAVs connected to neighboring cells to estimate an interference channel per zone. Interference management may be provided during semi-persistent scheduling (SPS) transmissions. Reliability of Physical Downlink Control Channel (PDCCH) may be enhanced (EPDCCH), e.g., with interference assistance signaling.
    Type: Application
    Filed: March 23, 2018
    Publication date: May 7, 2020
    Applicant: InterDigital Patent Holdings, Inc.
    Inventors: Anantharaman BALASUBRAMANIAN, Ravikumar V. PRAGADA
  • Publication number: 20200107276
    Abstract: A wireless transmit/receive unit (WTRU) receives first timing advances and first power control commands from a first eNodeB and second timing advances and second power control commands from a second eNodeB and transmits, to the first eNodeB, a first physical uplink control channel using a first uplink component carrier. The first physical uplink control channel has a first timing adjusted by the first timing advances but not by the second timing advances and a first power level adjusted by the first power control commands but not by the second power control commands. The WTRU transmits a second physical uplink control channel using a second uplink component carrier. The second physical uplink control channel has a second timing adjusted by the second timing advances but not by the first timing advances and a second power level adjusted by the second power control commands but not by the first power control commands.
    Type: Application
    Filed: December 2, 2019
    Publication date: April 2, 2020
    Applicant: InterDigital Patent Holdings, Inc.
    Inventors: Philip J. Pietraski, Rui Yang, Kai Li, Carl Wang, Tao Deng, Samian Kaur, Erdem Bala, Ravikumar V. Pragada
  • Patent number: 10608858
    Abstract: Methods and systems for operation in a wireless network are provided, the methods including receiving modulated data symbols and zeros in a frequency-domain, and mapping in the frequency-domain the modulated data symbols and zeros in an interleaved manner to sub-carriers within a resource allocation. The methods and systems further include generating a time-domain data signal based on the mapped sub-carriers, and generating a time domain cancellation signal by sign inverting and repeating a predetermined number of time-domain samples at a tail portion of the data signal. The methods and systems further include combining the time-domain data signal and the time domain cancellation signal to generate an exact zero tail data signal such that the exact zero tail data signal has a zero tail length equal to the predetermined number of time-domain samples, and transmitting the exact zero tail data signal.
    Type: Grant
    Filed: March 5, 2019
    Date of Patent: March 31, 2020
    Assignee: IDAC Holdings, Inc.
    Inventors: Erdem Bala, Mihaela C. Beluri, Kyle Jung-Lin Pan, Tao Deng, Liangping Ma, Yugeswar Deenoo, Ravikumar V. Pragada, Alphan Sahin
  • Publication number: 20200100187
    Abstract: Systems, methods, and instrumentalities are disclosed for power control for aerial wireless transmit receive units (WTRUs). Power control may be open loop and may be managed based on altitude. Open loop power control may be based partly on path loss estimation from neighboring cells and may be coordinated among interfering neighboring eNBs using path loss information. Dynamic power control may be driven by the WTRU. Reference signal transmissions by an eNB may use uplink resources for path loss estimation, and interference estimation may be based on uplink reference signals. Path loss estimation may be based on downlink reference signals. Dynamic blanking may be provided for Cell-specific Reference Signals (CRS), and random access (e.g. RACH) may be provided for aerial WTRUs.
    Type: Application
    Filed: March 16, 2018
    Publication date: March 26, 2020
    Inventors: Anantharaman Balasubramanian, Ravikumar V. Pragada
  • Publication number: 20200068590
    Abstract: Methods and apparatus may perform dual-band or multi-band mesh operations. A dual-band mesh station (MSTA) capable of operating in an O-band and a D-band may seek to join a mesh network, and may receive O-band beacons from at least one MSTA in the mesh network, where the O-band beacons may include D-band mesh information. The joining MSTA may transmit D-band beacons in a time-period specified by the O-band beacon, and on a condition that a beacon response message is received, may further transmit D-band association information via O-band management frames to join mesh network on the D-band. The joining MSTA may perform contention-free scheduled access in the D-band while sharing D-band transmission information in the O-band to enable concurrent communication in the D-band by neighboring multi-band MSTAs.
    Type: Application
    Filed: October 31, 2019
    Publication date: February 27, 2020
    Applicant: InterDigital Patent Holdings, Inc.
    Inventors: Onur Sahin, Arnab Roy, Monisha Ghosh, Yugeswar Deenoo, Ravikumar V. Pragada, Joseph S. Levy
  • Publication number: 20200053800
    Abstract: Methods, devices and systems are provided for performing a random access (RA) procedure. A wireless transmit/receive unit (WTRU) may be configured to receive RA resource sets, where each of the RA resource sets is associated with a node-B directional beam, select an RA resource set from among the RA resource sets, and initiate an RA procedure based on the selected RA resource set. The RA procedure may include selecting multiple preambles which include a preamble for each resource of a plurality of resources corresponding to the selected RA resource set. The WTRU may be configured to sequentially transmit the selected multiple preambles in sequential RA transmissions, and may be configured to receive, from a node-B, in response to the RA transmissions, at least one RA response (RAR), where each of the received at least one RAR corresponds to one of the transmitted multiple preambles.
    Type: Application
    Filed: September 25, 2019
    Publication date: February 13, 2020
    Applicant: IDAC Holdings, Inc.
    Inventors: Tao Deng, Philip J. Pietraski, Ravikumar V. Pragada, Yugeswar Deenoo, Janet A. Stern-Berkowitz, Moon-il Lee, Mihaela C. Beluri, Kyle Jung-Lin Pan
  • Publication number: 20200045574
    Abstract: A method for use by an S-REDS may comprise quasi-omni broadcasting a multi-relay channel measurement request to one or more RDSs. The S-REDS may receive a first multi-relay channel measurement report from a first RDS of the one or more RDSs. The first multi-relay channel measurement report may contain first channel measurement information associated with a channel between the first RDS and the S-REDS. The S-REDS may further receive a second multi-relay channel measurement report from the first RDS of the one or more RDSs. The second multi-relay channel measurement report contains second channel measurement information associated with a channel between the first RDS of the one or more RDSs and a D-REDS.
    Type: Application
    Filed: October 9, 2019
    Publication date: February 6, 2020
    Applicant: InterDigital Patent Holdings, Inc.
    Inventors: Xiaofei Wang, Guodong Zhang, Robert L. Olesen, Arnab Roy, Qian Zhang, Douglas R. Castor, Ravikumar V. Pragada
  • Publication number: 20200045606
    Abstract: Methods and apparatuses for millimeter wave (mmW) beam acquisition are disclosed. An apparatus may include a processor and a transceiver configured to receive configuration information from a first network node using a first radio access technology (RAT). The configuration information may include an index associated with a beam of a second network node and timing information corresponding to the first RAT. The second network node may use a second RAT. The apparatus may be further configured to transmit a measurement report to the first network node that includes a measurement of the beam and index associated with the beam of the second network node.
    Type: Application
    Filed: October 8, 2019
    Publication date: February 6, 2020
    Applicant: InterDigital Patent Holdings, Inc.
    Inventors: Carl Wang, Yingxue K. Li, Onur Sahin, Philip J. Pietraski, Ravikumar V. Pragada, Gregg A. Charlton
  • Patent number: 10536312
    Abstract: Systems, methods, and instrumentalities are disclosed for generating, transmitting, and/or receiving a hybrid spread waveform. The hybrid spread waveform may include a data portion and a hybrid guard interval (HGI) portion. The HGI portion may include a fixed prefix portion or a fixed suffix portion, and an adaptive low power tail (LPT) portion. The fixed prefix portion or the fixed suffix portion is a low power cyclic prefix (LPCP). The LPCP may be generated at least based on at least the channel delay spread and a power regrowth length. The adaptive LPT portion may be generated using a zero tail (ZT). The LPT is generated by inserting zeros at IFFT or DFT processing stage. A part of the adaptive LPT portion is used to carry data or control information. A waveform may be switched between a hybrid spread waveform and a fixed-CP waveform, e.g., via control signaling.
    Type: Grant
    Filed: December 2, 2016
    Date of Patent: January 14, 2020
    Assignee: IDAC Holdings, Inc.
    Inventors: Kyle Jung-Lin Pan, Mihaela C. Beluri, Ravikumar V. Pragada, Erdem Bala, Yugeswar Deenoo, Liangping Ma, Tao Deng, Vincent Roy
  • Patent number: 10524199
    Abstract: A method and apparatus are described for supporting a two-stage device-to-device (D2D) discovery using a D2D interworking function (IWF). A D2D IWF component may be configured to perform mapping between an application running on an application server and a third generation partnership project (3GPP) network, and provide a set of application programming interfaces (APIs) to allow discovery to be provided as a service to D2D applications. An application identifier may be mapped to a 3GPP identifier. Further, a method and apparatus are described for performing client-server discovery. A first wireless transmit/receive unit (WTRU) may be configured for a listen-only operation, and a second WTRU may be configured to transmit beacons. The first and second WTRUs may perform a radio access network (RAN) discovery procedure at an access stratum (AS) layer. A method and apparatus for performing charging for D2D service using a D2D IWF are also described.
    Type: Grant
    Filed: September 11, 2017
    Date of Patent: December 31, 2019
    Assignee: INTERDIGITAL PATENT HOLDINGS, INC.
    Inventors: Ravikumar V. Pragada, Saad Ahmad, Balaji Raghothaman, Samian J. Kaur, Pascal M. Adjakple, Ulises Olvera-Hernandez, Zhuorong Deng, Kiran K. Vanganuru, Gregory S. Sternberg, Guanzhou Wang, Michael F. Starsinic, Alexander Reznik, Juan Carlos Zuniga, Eldad M. Zeira
  • Publication number: 20190394764
    Abstract: A wireless transmit/receive unit (WTRU) (e.g., a millimeter WTRU (mWTRU)) may receive a first control channel using a first antenna pattern. The WTRU may receive a second control channel using a second antenna pattern. The WTRU tray demodulate and decode the first control channel. The WTRU may demodulate and decode the second control channel. The WTRU may determine, using at least one of: the decoded first control channel or the second control channel, beam scheduling information associated with the WTRU and whether the WTRU is scheduled for an mmW segment. The WTRU may form a receive beam using the determined beam scheduling information. The WTRU receive the second control channel using the receive beam. The WTRU determine, by demodulating and decoding the second control channel, dynamic per-TTI scheduling information related to a data channel associated with the second control channel.
    Type: Application
    Filed: September 4, 2019
    Publication date: December 26, 2019
    Applicant: IDAC HOLDINGS, INC.
    Inventors: Tao Deng, Yugeswar Deenoo, Philip J. Pietraski, Ravikumar V. Pragada
  • Patent number: 10499347
    Abstract: A wireless transmit/receive unit (WTRU) receives first timing advances and first power control commands from a first eNodeB and second timing advances and second power control commands from a second eNodeB and transmits, to the first eNodeB, a first physical uplink control channel using a first uplink component carrier. The first physical uplink control channel has a first timing adjusted by the first timing advances but not by the second timing advances and a first power level adjusted by the first power control commands but not by the second power control commands. The WTRU transmits a second physical uplink control channel using a second uplink component carrier. The second physical uplink control channel has a second timing adjusted by the second timing advances but not by the first timing advances and a second power level adjusted by the second power control commands but not by the first power control commands.
    Type: Grant
    Filed: June 2, 2017
    Date of Patent: December 3, 2019
    Assignee: InterDigital Patent Holdings, Inc.
    Inventors: Philip J. Pietraski, Rui Yang, Kai Li, Carl Wang, Tao Deng, Samian Kaur, Erdem Bala, Ravikumar V. Pragada
  • Publication number: 20190364453
    Abstract: Techniques may be used for interference measurement and management in directional mesh networks, including centralized and/or distributed approaches. A centralized node, such as an operations and maintenance (OAM) center, may use feedback from nodes in the mesh network to partition the nodes in the mesh network into clusters based on interference levels. Interference measurement reports may be used by the centralized node to update cluster membership. An initiating node in the mesh network may use topographical information to generate an initial interference cluster, and interference measurement frame (IMF) scheduling information may be used to schedule transmissions within the interference clusters. Techniques for opportunistic measurement campaigns, simultaneous measurement campaigns, link failure detection, and link re- acquisition in directional mesh networks may also be used.
    Type: Application
    Filed: August 12, 2019
    Publication date: November 28, 2019
    Applicant: IDAC Holdings, Inc.
    Inventors: Onur Sahin, Arnab Roy, Yugeswar Deenoo, Ravikumar V. Pragada, Philip J. Pietraski, Joseph S. Levy, Tao Deng