Chong Tak K T Li, Age 49307 N Broad St, Middletown, DE 19709

Chong Li Phones & Addresses

47 Browning Cir, Middletown, DE 19709 (302) 378-1705

309 Broad St, Middletown, DE 19709

Flushing, NY

707 Ace Memorial Dr, Hockessin, DE 19707

Dover, DE

Work

Company: Ta financial econometrics (master) - New York, NY Mar 2012 Position: Certified advanced programmer for sas

Education

School / High School: Xiamen University Jul 2009 Specialities: M.A. in Finance

Mentions for Chong Tak K T Li

Chong Li resumes & CV records

Resumes

Chong Li Photo 41

Master Student At Universitaet Stuttgart

Location:
Stuttgart Area, Germany
Industry:
Automotive
Work:
Daimler - shenzhen Jun 2012 - Nov 2012
Intern in quality department
United Nations - Greater New York City Area Jan 2011 - Mar 2011
Intern
GALAB LABORATORIES GmbH - Geestacht Mar 2010 - Jun 2010
Thesis Student
Shanghai Environmental Monitoring Center - shanghai Oct 2008 - Jan 2009
Intern
Education:
Universitaet Stuttgart 2010 - 2012
Master, Environmental Engineering Technology/Environmental Technology
Luebeck University of Applied Sciences 2009 - 2010
Bachelor's degree, Environmental Engineering Technology/Environmental Technology
East China University of Science and Technology 2006 - 2010
BS, Chemical Engineering
Skills:
Engineering, Fluent English, Quality Concept, Quality Management, Basic German, Sustainability, TS16949, VDA 6.3, Life Cycle Assessment, Umberto
Chong Li Photo 42

Chong Li

Chong Li Photo 43

Chong Li

Chong Li Photo 44

Chong Li

Chong Li Photo 45

Chong Li

Chong Li Photo 46

Chong Li

Chong Li Photo 47

Chong Yih Li

Chong Li Photo 48

Litigation Support Analyst At Transperfect Translations

Location:
Greater New York City Area
Industry:
Management Consulting

Publications & IP owners

Us Patents

Techniques And Apparatuses For Using Mini-Slots For Hybrid Automatic Repeat Request (Harq) Transmissions

US Patent:
2020037, Nov 26, 2020
Filed:
Aug 14, 2020
Appl. No.:
16/947751
Inventors:
- San Diego CA, US
Chong LI - Weehawken NJ, US
Wanshi CHEN - San Diego CA, US
Jing JIANG - San Diego CA, US
International Classification:
H04L 5/00
H04L 1/08
H04L 1/18
Abstract:
Certain aspects of the present disclosure generally relate to wireless communication. In some aspects, a user equipment may receive, from a base station, an indicator associated with a hybrid automatic repeat request (HARQ) process, wherein the indicator indicates a number of mini-slots to be bundled for a HARQ transmission of the HARQ process; and decode the HARQ transmission based at least in part on the mini-slots. In some aspects, a base station may transmit an indicator, associated with a HARQ process, to a user equipment, wherein the indicator indicates a number of mini-slots to be bundled for a HARQ transmission of the HARQ process; and transmit the HARQ transmission to the user equipment using the mini-slots. Numerous other aspects are provided.

Separate Measurement And Reporting For Different Transmit Receive Points

US Patent:
2020004, Feb 6, 2020
Filed:
Jul 31, 2018
Appl. No.:
16/050291
Inventors:
- San Diego CA, US
Chong Li - Weehawken NJ, US
Junyi Li - Chester NJ, US
International Classification:
H04W 56/00
H04B 7/06
H04W 24/10
H04B 17/309
Abstract:
Various aspects of the present disclosure generally relate to wireless communication. In some aspects, a user equipment may measure one or more synchronization signal blocks (SSBs); determine that the one or more SSBs are associated with a first transmit receive point (TRP) based at least in part on identification information, associated with the one or more SSBs, that distinguishes the first TRP from a second TRP with a same physical cell identifier (PCI) as the first TRP; and transmit a measurement report, associated with the first TRP, based at least in part on measuring the one or more SSBs and determining that the one or more SSBs are associated with the first TRP. Numerous other aspects are provided.

Tti Bundling For Urllc Ul/Dl Transmissions

US Patent:
2020003, Jan 30, 2020
Filed:
Oct 4, 2019
Appl. No.:
16/593800
Inventors:
- San Diego CA, US
Chong Li - Weehawken NJ, US
Jing Jiang - San Diego CA, US
Wanshi Chen - San Diego CA, US
Hao Xu - Beijing, CN
Haitong Sun - Cupertino CA, US
International Classification:
H04W 72/04
H04L 1/18
H04B 7/14
H04L 5/00
H04L 25/02
H04L 27/26
H04L 12/26
Abstract:
Transmission time interval (TTI) bundling for ultra-reliable low-latency communication (URLLC) uplink and downlink transmissions is discussed in which a base station or user equipments (UEs) determine conditions for one or more served UEs that would indicate enabling TTI bundling for data and/or control transmissions. The serving base station transmits an enablement signal signifying that TTI bundling will be performed for data and/or control transmissions. The enablement signal may include a bundle length for the transmission bundle. The data or control signal packets may then be repeatedly transmitted to the UEs a number of times corresponding to the bundle length.

Schemes For Recovery Of Embb's Rs Puncturing From Dynamic Multiplexing Of Urllc/Embb

US Patent:
2020000, Jan 2, 2020
Filed:
Mar 29, 2018
Appl. No.:
16/488150
Inventors:
Chong LI - Weehawken NJ, US
Jing JIANG - San Diego CA, US
Yu ZHANG - San Diego CA, US
Joseph Binamira SORIAGA - San Diego CA, US
Wanshi CHEN - San Diego CA, US
Tingfang JI - San Diego CA, US
- San Diego CA, US
International Classification:
H04L 5/02
H04L 5/00
Abstract:
Various aspects are described for schemes that address the potential puncturing of important reference signals (RSs) for enhanced mobile broadband (eMBB) applications, such as demodulation reference signal (DMRS), channel state information reference signal (CSIRS), tracking reference signal, and general reference signal. The schemes can be used for recovery of eMBB's RS puncturing from dynamic multiplexing of ultra-reliable-low-latency communications (URLLC) and eMBB. The schemes include a block-based scheme and an over-provisioning scheme. The schemes modify an existing RS pattern before puncturing occurs in response to a presence of the URLLC traffic. In addition, there can be an option not to use (e.g., disable) time-domain orthogonal cover code (TD-OCC) for the RSs.

Techniques For Selecting Rsma Spreading Code For Periodic Traffic In Internet-Of-Everything Devices

US Patent:
2019037, Dec 5, 2019
Filed:
May 22, 2019
Appl. No.:
16/419784
Inventors:
- San Diego CA, US
Chong LI - Weehawken NJ, US
International Classification:
H04W 72/00
H04L 5/00
H04W 72/12
H04W 8/00
H04W 72/04
Abstract:
Aspects of the present disclosure provide techniques to reduce overhead and improve resource management by efficiently selecting RSMA spreading code for periodic traffic in IoE devices. For example, in accordance with one technique, the IoE device, during an initial access to the base station, may notify the base station of the traffic periodicity of the IoE device such that the base station may assign a spreading code from a dedicated pool that is not utilized during the periodic access of the device. Additionally or alternatively, another technique to reduce overhead and improve resource management may include the IoE devices broadcasting the selected RSMA spreading code that the IoE devices intends to use in discovery broadcasts (DBs) along with the IoE device traffic periodicity such that the IoE devices may autonomously manage selection of RSMA spreading code that avoids collisions for the same traffic periodicity.

Techniques And Apparatuses For Using Mini-Slots For Hybrid Automatic Repeat Request (Harq) Transmissions

US Patent:
2019015, May 23, 2019
Filed:
Oct 30, 2018
Appl. No.:
16/174575
Inventors:
- San Diego CA, US
Chong LI - Weehawken NJ, US
Wanshi CHEN - San Diego CA, US
Jing JIANG - San Diego CA, US
International Classification:
H04L 5/00
H04L 1/18
Abstract:
Certain aspects of the present disclosure generally relate to wireless communication. In some aspects, a user equipment may receive, from a base station, an indicator associated with a hybrid automatic repeat request (HARQ) process, wherein the indicator indicates a number of mini-slots to be bundled for a HARQ transmission of the HARQ process; and decode the HARQ transmission based at least in part on the mini-slots. In some aspects, a base station may transmit an indicator, associated with a HARQ process, to a user equipment, wherein the indicator indicates a number of mini-slots to be bundled for a HARQ transmission of the HARQ process; and transmit the HARQ transmission to the user equipment using the mini-slots. Numerous other aspects are provided.

Synchronized Communication Across Wireless Communication Spectrum

US Patent:
2018028, Oct 4, 2018
Filed:
Mar 21, 2018
Appl. No.:
15/927801
Inventors:
- San Diego CA, US
Chong Li - Weehawken NJ, US
Junyi Li - Chester NJ, US
International Classification:
H04W 16/14
H04W 74/08
H04W 72/04
Abstract:
Various aspects of the disclosure relate to wireless communication that is synchronized across different wireless communication spectrum. For example, communication on an unlicensed spectrum may, in response to a particular trigger, switch to a licensed spectrum. Here, the switch may occur in a time synchronized manner (e.g., according to a frame structure). In addition, communication across such spectrum may be synchronized among multiple systems. For example, a controller may specify a reuse pattern to be used by the different systems for communication across unlicensed spectrum and licensed spectrum.

Indication Channel Techniques For Low Latency Wireless Communications

US Patent:
2018024, Aug 30, 2018
Filed:
Feb 1, 2018
Appl. No.:
15/886416
Inventors:
- San Diego CA, US
Chong Li - Weehawken NJ, US
Jing Jiang - San Diego CA, US
Alexandros Manolakos - San Diego CA, US
International Classification:
H04W 72/12
H04W 72/04
H04W 28/06
Abstract:
Methods, systems, and devices for wireless communication are described that provide for establishing periodic resources that may be used for low latency communications. An indication channel may be provided that may indicate that one or more higher latency transmissions may be punctured with low latency communications that are transmitted outside of the periodic resources. In some cases, the indication channel may be transmitted only in subsets of time resources, such as mini-slots of time resources within a slot, and a user equipment (UE) may monitor the indication channel to determine that a transmission is punctured. The UE may not monitor the indication channel in the periodic resources, and may thus conserve power compared to monitoring the indication channel in all time resources.

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