Patents by Inventor Pascal M. Adjakple
Pascal M. Adjakple 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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Publication number: 20180048498Abstract: Systems, methods, and instrumentalities are disclosed for Uplink operation in LTE unlicensed spectrum (LTE-U). A wireless transmit/receive unit (WTRU) may receive licensed assisted access (LAA) configuration information, e.g., for a first cell from a second cell. The first cell may be associated with operation in an unlicensed band, and the second cell may be associated with operation in a licensed band. The WTRU may determine whether a first subframe subframe is a sounding reference signal (SRS) subframe for the first cell. If the first subframe is an SRS subframe for the first cell, the WTRU may determine SRS resources for the first subframe and determine whether the WTRU is triggered to transmit an SRS transmission in the first subframe. If it is determined the WTRU is triggered to transmit the SRS transmission in the first subframe, the WTRU may transmit the SRS transmission on the SRS resources for the first subframe.Type: ApplicationFiled: January 28, 2016Publication date: February 15, 2018Applicant: INTERDIGITAL PATENT HOLDINGS, INC.Inventors: Janet A. Stern-Berkowitz, Pouriya Sadeghi, J. Patrick Tooher, Samian Kaur, Marian Rudolf, Pascal M. Adjakple
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Publication number: 20180020500Abstract: Systems and methods are disclosed for a WTRU to operate using multiple schedulers. The WTRU may exchange data with the network over more than one data path, such that each data path may use a radio interface connected to a different network node and each node may be associated with an independent scheduler. For example, a WTRU may establish a RRC connection between the WTRU and a network. The RRC connection may establish a first radio interface between the WTRU and a first serving site of the network and a second radio interface between the WTRU and a second serving site of the network. The RRC connection may be established between the WTRU and the MeNB and a control function may be established between the WTRU and the SCeNB. The WTRU may receive data from the network over the first radio interface or the second radio interface.Type: ApplicationFiled: September 5, 2017Publication date: January 18, 2018Applicant: INTERDIGITAL PATENT HOLDINGS, INC.Inventors: Ghyslain Pelletier, Paul Marinier, Diana Pani, Stephen E. Terry, Pascal M. Adjakple, Samian Kaur
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Patent number: 9867174Abstract: A method and apparatus may be used to enable reception of a downlink (DL) shared channel in a cooperative multipoint transmission (CoMP). The method and apparatus may determine whether CoMP is applied to a transmission. The method and apparatus may acquire other CoMP related information. The method and apparatus may apply to non-transparent CoMP scenarios.Type: GrantFiled: August 13, 2014Date of Patent: January 9, 2018Assignee: InterDigital Patent Holdings, Inc.Inventors: Guodong Zhang, Ghyslain Pelletier, Afshin Haghighat, Paul Marinier, Christopher Cave, Pascal M. Adjakple, Allan Y. Tsai
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Publication number: 20170374611Abstract: 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: ApplicationFiled: September 11, 2017Publication date: December 28, 2017Applicant: 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
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Publication number: 20170374579Abstract: Embodiments may include methods, systems, and apparatuses for integrating a first radio access technology and a second radio access technology in a wireless transmit/receive unit (WTRU). The embodiments may include: gathering, by the WTRU, one or more metrics related to uplink/downlink transmissions; determining, based on the one or more metrics, that an amount of data from the first radio access technology should be offloaded to the second radio access technology; transmitting a first portion of the data to a base station using the first radio access technology; and transmitting a second portion of the data to a wireless local access network (WLAN) access point (AP) using the second radio access technology, wherein the WLAN AP is connected to the base station through an interface.Type: ApplicationFiled: December 23, 2015Publication date: December 28, 2017Applicant: INTERDIGITAL PATENT HOLDINGS, INC.Inventors: Guanzhou Wang, Ghyslain Pelletier, Diana Pani, Pascal M. Adjakple
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Publication number: 20170367036Abstract: An NR network slicing architecture may be used to facilitate network slice discovery and selection. Mechanisms to discover and select network slices may differ depending on whether a user equipment is in an idle mode or a connected mode. Further, in various examples, the network slice discovery and selection may be performed by a UE, a radio access network (RAN), or a core network (CN), based on a variety of selection criteria.Type: ApplicationFiled: June 15, 2017Publication date: December 21, 2017Inventors: Wei Chen, Pascal M. Adjakple, Joseph M. Murray, Qing LI, Guodong Zhang, Lakshmi R. Iyer, Allan Y. Tsai, Qian Zhang, Tianyi Xu
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Publication number: 20170367120Abstract: The application describes an apparatus including a non-transitory memory including instructions to perform random access in a beam sweeping network having a cell. The network includes a downlink sweeping subframe, an uplink sweeping subframe and a regular sweeping subframe. The apparatus also includes a processor operably coupled to the non-transitory memory. The processor is configured to execute the instructions of selecting an optimal downlink transmission beam transmitted by the cell during the downlink sweeping subframe. The processor is also configured to execute the instructions of determining an optimal downlink reception beam from the optimal downlink transmission beam. The processor is further configured to execute the instructions of determining a random access preamble and a physical random access channel (PRACH) resource via resource selection from the optimal downlink transmission beam.Type: ApplicationFiled: June 15, 2017Publication date: December 21, 2017Inventors: Joseph M. MURRAY, Pascal M. ADJAKPLE, Wei CHEN, Lakshmi R. IYER, Qian (Emily) ZHANG, Allan Y. TSAI, Guodong ZHANG, Qing LI
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Publication number: 20170367110Abstract: Current approaches to transmitting uplink data in a network often require resources to be granted. In an example, a node or apparatus may configure a plurality of devices to operate in a grant-less mode in accordance with a respective grant-less access allocation, such that, when the plurality of devices transmit messages uplink in the network, the messages are transmitted using frequency resources defined by the respective grant-less access allocation, and the plurality of devices transmit the messages without being granted access to transmit the messages, so as to operate in the grant-less mode.Type: ApplicationFiled: June 15, 2017Publication date: December 21, 2017Inventors: Qing Li, Guodong Zhang, Pascal M. Adjakple, Lakshmi R. Iyer, Allan Y. Tsai, Qian Zhang, Wei Chen, Joseph M. Murray, Tianyi Xu
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Publication number: 20170367116Abstract: Current approaches to transmitting uplink data in a network often require resources to be granted. In an example, a node or apparatus may configure a plurality of devices to operate in a grant-less mode in accordance with a respective grant-less access allocation. Grant-less operations may be managed, for example, to meet the reliability and latency requirements and battery life requirements for different types of devices. For example, the state transition between grant-less and grant based may be managed.Type: ApplicationFiled: June 15, 2017Publication date: December 21, 2017Inventors: Qing Li, Guodong Zhang, Pascal M. Adjakple, Allan Y. Tsai, Qian Zhang, Lakshmi R. Iyer, Wei Chen, Joseph M. Murray, Tianyi Xu
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Publication number: 20170366311Abstract: Flexibly configured containers consisting of resources within time-frequency blocks may be used to support multiple numerologies in new radio architectures. Uplink control may be defined in resources within a container, or in dedicated resources, by various nodes. Sounding reference signal resources may be dynamically configured for each numerology. The sequence length may be adapted, as well as the time domain location of symbols. Time, frequency, and orthogonal resources may be allocated via a downlink control channel or a radio resource control. Sounding reference signals may be pre-coded, and pre-coding weights may be based on a codebook or non-codebook approaches, e.g., via a radio resource control or a downlink RRC or DL control channel. Pre-coded sounding reference signals may be adapted to user equipment antenna configuration. Further, NR-SRS may be used as UL demodulation RS (DM-RS).Type: ApplicationFiled: June 15, 2017Publication date: December 21, 2017Inventors: Lakshmi R. Iyer, Guodong Zhang, Qian Zhang, Allan Y. Tsai, Joseph M. Murray, Pascal M. Adjakple, Qing Li, Tianyi Xu, Wei Chen, Ahmed ElSamadouny, Salman Khan, Yifan Li
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Publication number: 20170332272Abstract: A method and apparatus for multiple radio access technology (multi-RAT) access mode operation for a wireless transmit/receive unit (WTRU) are disclosed. A WTRU and a network may enable a multi-RAT access mode of operation based on at least one of WTRU subscription, a service agreement of the WTRU, a roaming status of the WTRU, a selected access point name (APN), an Internet protocol (IP) flow class, a subscriber profile identity for the WTRU, requested quality of service, or a proximity indication indicating proximity to a cell supporting multi-RAT access mode. The WTRU may send a capability indication of support of multi-RAT access to a network, wherein the multi-RAT access mode is enabled based on the capability indication. A partial handover of bearers may be performed. In performing the handover, the target cell is determined based on a priority rule.Type: ApplicationFiled: July 13, 2017Publication date: November 16, 2017Applicant: InterDigital Patent Holdings, Inc.Inventors: Pascal M. Adjakple, Ulises Olvera-Hernandez, Peter S. Wang, Kai Liu, Saad Ahmad
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Publication number: 20170332359Abstract: New radio download numerology allocation information may be obtained through master information block data, system information block data, radio resource control signals, or signals or a physical downlink numerology indication channel, and used along with a reference signal detected in a search space to obtain resource element positions in an antenna port reference signal in a resource block that belongs to a particular band slice according to a reference signal allocation scheme for a band slice numerology. A physical download control may then be decoded based upon one or more resource elements of the reference signal, allowing the connection of, e.g., an enhanced mobile broadband, massive machine type communication, or ultra-reliable/low-latency application to a communications network thereby. Alternatively, multiple physical downlink control channels may be blindly demodulated at each of a number calculated reference signal locations, and one channel selected based on passing a cyclic redundancy check.Type: ApplicationFiled: May 11, 2017Publication date: November 16, 2017Inventors: Allan Y. Tsai, Lakshmi R. Iyer, Guodong Zhang, Qian Zhang, Pascal M. Adjakple, Qing Li, Joseph M. Murray, Tianyi Xu, Wei Chen, Ahmed ElSamadouny, Salman Khan, Yifan Li
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Publication number: 20170311278Abstract: Methods, systems, and devices may assist in reducing signaling load that occur based on paging and handover. Methods, systems, and devices may be based on UE states, a radio access network registration area (RRA) or tracking/paging area with different architectural approaches (e.g., hierarchical or distributed), dynamic RRA management, radio access network based paging, and radio access network based user equipment (UE) mobility management.Type: ApplicationFiled: April 20, 2017Publication date: October 26, 2017Inventors: Pascal M. Adjakple, Qing Li, Joseph M. Murray, Wei Chen
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Publication number: 20170310431Abstract: Hybrid automatic repeat request (HARQ) processes, indicators, and similar methods may be used improve new radio performance in a number of ways. For example HARQ processes may be retransmitted, even before a response is expected, a number of times. Separate acknowledgement may be provided for various code blocks within a single transport block. Multi-bit ACK/NACK signaling may be used to efficiently express the status of individual code blocks or groups of code blocks within a transmission block. Grantless transmissions may be acknowledged implicitly, e.g., via responses comprising downlink control information or sent via a physical hybrid automatic repeat request indicator channel.Type: ApplicationFiled: April 20, 2017Publication date: October 26, 2017Inventors: Lakshmi R. Iyer, Allan Y. Tsai, Tianyi Xu, Guodong Zhang, Pascal M. Adjakple, Qing Li, Wei Chen, Qian Zhang, Joseph M. Murray
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Publication number: 20170311290Abstract: System information can include a basic set of system information and additional system information. A UE can receive the basic set of system information and then later request or receive the additional system information. Messages can use tags which can be used to look up locally stored system information. If a tag does not correspond to any locally stored system information, the system information and an associated tag can then be requested. Messages can be indicative of a cluster identity associated with cells. When the UE goes into a new cell, the cluster identity can be checked to see if system information from a prior call can be reused.Type: ApplicationFiled: April 20, 2017Publication date: October 26, 2017Inventors: Pascal M. Adjakple, Joseph M. Murray, Qing Li, Wei Chen, Allan Y. Tsai, Guodong Zhang
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Publication number: 20170311276Abstract: The present application is at least directed to an apparatus on a 5G network. The apparatus includes a non-transitory memory including instructions stored thereon for performing configuration of an initial access signal in the 5G network. The apparatus also includes a processor, operably coupled to the non-transitory memory, capable of executing an instruction of monitoring transmission of a downlink sweeping subframe including a beam sweeping block carrying a downlink initial access signal. The processor is capable of also executing the instruction of detecting the downlink initial access signal carrying a synchronization channel. The processor is capable of also executing the instruction of determining, based on the synchronization channel, an identity of the beam sweeping block associated with the downlink initial access signal. The present application is also directed to an apparatus configured to perform downlink synchronization of a cell in the 5G network.Type: ApplicationFiled: April 20, 2017Publication date: October 26, 2017Inventors: Allan Y. TSAI, Lakshmi R. IYER, Guodong ZHANG, Joseph M. MURRAY, Qing LI, Wei CHEN, Pascal M. ADJAKPLE, Tianyi XU
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Publication number: 20170303228Abstract: Methods and apparatus are described for transmitting and receiving data by a wireless transmit/receive unit (WTRU) over the control plane. The methods may receive data without the use of an Internet Protocol (IP) address. In an example method, a WTRU may enter an evolved packet system (EPS) mobility management (EMM)-registered control plane only (CPO) state after receiving an attach accepted message for CPO operation, and enter an EMM-deregistered state after receiving a detach message, a tracking area update (TAU) reject message or an attach reject message. In another method, a WTRU may switch between operational modes that use an IP address and a user plane to transmit and receive data, and the CPO mode.Type: ApplicationFiled: June 19, 2017Publication date: October 19, 2017Applicant: InterDigital Patent Holdings, Inc.Inventors: Mahmoud Watfa, Ulises Olvera-Hernandez, Pascal M. Adjakple, Kai Liu, Peter S. Wang, Saad Ahmad, Behrouz Aghili
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Publication number: 20170303183Abstract: Methods and apparatus are described for providing compatible mapping for backhaul control channels, frequency first mapping of control channel elements (CCEs) to avoid relay-physical control format indicator channel (R-PCFICH) and a tree based relay resource allocation to minimize the resource allocation map bits. Methods and apparatus (e.g., relay node (RN)/evolved Node-B (eNB)) for mapping of the Un downlink (DL) control signals, Un DL positive acknowledgement (ACK)/negative acknowledgement (NACK), and/or relay-physical downlink control channel (R-PDCCH) (or similar) in the eNB to RN (Un interface) DL direction are described. This includes time/frequency mapping of above-mentioned control signals into resource blocks (RBs) of multimedia broadcast multicast services (MBMS) single frequency network (MBSFN)-reserved sub-frames in the RN cell and encoding procedures for these.Type: ApplicationFiled: June 29, 2017Publication date: October 19, 2017Applicant: INTERDIGITAL TECHNOLOGY CORPORATIONInventors: Kalpendu R. Pasad, Sung-Hyuk Shin, Mihaela C. Beluri, Marian Rudolf, Pascal M. Adjakple, John W. Haim
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Publication number: 20170303267Abstract: Methods and systems for transmitting uplink control information in an LTE Advanced system are disclosed. A user device may determine whether uplink control information and/or available channels meet certain criteria and determine whether the uplink control information should be transmitted on a physical uplink control channel, a physical uplink shared channel, or both, based on the criteria. Criteria may include the size of the uplink control information (absolute size or relative to space available on a channel or a threshold value), the type of control information bits, the number of available (i.e., active or configured) component carriers, and the amount of power that may be required to transmit the uplink control information on more than one channel.Type: ApplicationFiled: June 28, 2017Publication date: October 19, 2017Applicant: INTERDIGITAL PATENT HOLDINGS, INC.Inventors: Sung-Hyuk Shin, Pascal M. Adjakple, John W. Haim, Janet A. Stern-Berkowitz, Vincent Roy
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Patent number: 9788358Abstract: Systems and methods are disclosed for a WTRU to operate using multiple schedulers. The WTRU may exchange data with the network over more than one data path, such that each data path may use a radio interface connected to a different network node and each node may be associated with an independent scheduler. For example, a WTRU may establish a RRC connection between the WTRU and a network. The RRC connection may establish a first radio interface between the WTRU and a first serving site of the network and a second radio interface between the WTRU and a second serving site of the network. The RRC connection may be established between the WTRU and the MeNB and a control function may be established between the WTRU and the SCeNB. The WTRU may receive data from the network over the first radio interface or the second radio interface.Type: GrantFiled: July 8, 2015Date of Patent: October 10, 2017Assignee: InterDigital Patent Holdings, Inc.Inventors: Ghyslain Pelletier, Paul Marinier, Diana Pani, Stephen E. Terry, Pascal M. Adjakple, Samian Kaur