Patents by Inventor Yi-Hsiu Wang
Yi-Hsiu Wang 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: 20150304811Abstract: Accurate position capability can be quickly provided using a Wireless Local Area Network (WLAN). When associated with a WLAN, a wireless device can quickly determine its relative and/or coordinate position based on information provided by an access point in the WLAN. Before a wireless device disassociates with the access point, the WLAN can periodically provide time, location, and decoded GPS data to the wireless device. In this manner, the wireless device can significantly reduce the time to acquire the necessary GPS satellite data (i.e. on the order of seconds instead of minutes) to determine its coordinate position.Type: ApplicationFiled: June 30, 2015Publication date: October 22, 2015Inventor: Yi-Hsiu Wang
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Patent number: 9100786Abstract: Accurate position capability can be quickly provided using a Wireless Local Area Network (WLAN). When associated with a WLAN, a wireless device can quickly determine its relative and/or coordinate position based on information provided by an access point in the WLAN. Before a wireless device disassociates with the access point, the WLAN can periodically provide time, location, and decoded GPS data to the wireless device. In this manner, the wireless device can significantly reduce the time to acquire the necessary GPS satellite data (i.e. on the order of seconds instead of minutes) to determine its coordinate position.Type: GrantFiled: November 1, 2013Date of Patent: August 4, 2015Assignee: QUALCOMM IncorporatedInventor: Yi-Hsiu Wang
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Patent number: 8909252Abstract: Accurate position capability can be quickly provided using a Wireless Local Area Network (WLAN). When associated with a WLAN, a wireless device can quickly determine its relative and/or coordinate position based on information provided by an access point in the WLAN. Before a wireless device disassociates with the access point, the WLAN can periodically provide time, location, and decoded GPS data to the wireless device. In this manner, the wireless device can significantly reduce the time to acquire the necessary GPS satellite data (i.e. on the order of seconds instead of minutes) to determine its coordinate position.Type: GrantFiled: November 1, 2013Date of Patent: December 9, 2014Assignee: QUALCOMM IncorporatedInventor: Yi-Hsiu Wang
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Patent number: 8855685Abstract: Accurate position capability can be quickly provided using a Wireless Local Area Network (WLAN). When associated with a WLAN, a wireless device can quickly determine its relative and/or coordinate position based on information provided by an access point in the WLAN. Before a wireless device disassociates with the access point, the WLAN can periodically provide time, location, and decoded GPS data to the wireless device. In this manner, the wireless device can significantly reduce the time to acquire the necessary GPS satellite data (i.e. on the order of seconds instead of minutes) to determine its coordinate position.Type: GrantFiled: December 1, 2011Date of Patent: October 7, 2014Assignee: QUALCOMM IncorporatedInventor: Yi-Hsiu Wang
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Publication number: 20140057654Abstract: Accurate position capability can be quickly provided using a Wireless Local Area Network (WLAN). When associated with a WLAN, a wireless device can quickly determine its relative and/or coordinate position based on information provided by an access point in the WLAN. Before a wireless device disassociates with the access point, the WLAN can periodically provide time, location, and decoded GPS data to the wireless device. In this manner, the wireless device can significantly reduce the time to acquire the necessary GPS satellite data (i.e. on the order of seconds instead of minutes) to determine its coordinate position.Type: ApplicationFiled: November 1, 2013Publication date: February 27, 2014Applicant: QUALCOMM IncorporatedInventor: Yi-Hsiu Wang
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Publication number: 20140057653Abstract: Accurate position capability can be quickly provided using a Wireless Local Area Network (WLAN). When associated with a WLAN, a wireless device can quickly determine its relative and/or coordinate position based on information provided by an access point in the WLAN. Before a wireless device disassociates with the access point, the WLAN can periodically provide time, location, and decoded GPS data to the wireless device. In this manner, the wireless device can significantly reduce the time to acquire the necessary GPS satellite data (i.e. on the order of seconds instead of minutes) to determine its coordinate position.Type: ApplicationFiled: November 1, 2013Publication date: February 27, 2014Applicant: QUALCOMM IncorporatedInventor: Yi-Hsiu Wang
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Patent number: 8509488Abstract: Satellite-based navigation techniques can help determine a user's position on a map and can also determine directions to a destination. Functionality can be implemented to determine the user's orientation and direction of motion based on a captured image taken in the direction of motion. The captured image may be preprocessed to compensate for a camera angle and to vary image properties before being transmitted to a server. The user's orientation may be determined based, at least in part, on knowledge of a user's position on a map and comparing the captured image to a set of other images. Walking directions can accordingly be tailored based on the user's orientation.Type: GrantFiled: February 24, 2010Date of Patent: August 13, 2013Assignee: QUALCOMM IncorporatedInventors: Per K. Enge, Yi-Hsiu Wang
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Patent number: 8184754Abstract: Spurs cause significant problems with signal detecting, amplifier gain adjustment, and signal decoding. Various techniques can be used to mitigate the effects of spurs on a received signal. Generally, these techniques work by either canceling or ignoring the spurs. For example, a pilot mask can be used to ignore pilot information in one or more sub-channels. A Viterbi mask can determine the weighting given to bits in a sub-channel based on spur and data rate information. Channel interpolation can compute a pseudo channel estimate for a sub-channel known to have a spur location can be computed by interpolating the channel estimates of adjacent good sub-channels. Filtering of the received signal using a low-pass filter, a growing box filter, or a low-pass filter with self-correlation can be used to cancel a spur.Type: GrantFiled: April 6, 2011Date of Patent: May 22, 2012Assignee: Qualcomm Atheros, Inc.Inventors: Won-Joon Choi, Jeffrey M. Gilbert, Yi-Hsiu Wang, Xiaoru Zhang
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Patent number: 8184505Abstract: A method for determining portions of a GPS satellite signal may use non-coherent integration to determine a repeated pattern such as a preamble. Once the repeated pattern is determined, portions of the GPS satellite signal that may be determined with partial correlation sums. Sensitivity to satellite signals may be increased by computing more partial correlation sums on portions of the GPS satellite signal. In one embodiment, time of day information may be determined from the GPS satellite signal with partial correlation sums.Type: GrantFiled: March 23, 2011Date of Patent: May 22, 2012Assignee: Qualcomm Atheros, Inc.Inventors: Yi-Hsiu Wang, Dennis Hilgenberg
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Patent number: 8155018Abstract: A set of global location signals, an SBAS (Satellite Based Augmentation System), or an ACI (ambient country identifier) signal can be used to automatically provide location awareness for a WLAN device. If one of the set of global location signals, the SBAS signal, or the ACI signal is detected, then the WLAN device can configure itself to comply with channel and power settings for the country/region having the detected signal(s). After configuration, the WLAN device can be “locked” to the country/region having the signal(s), thereby ensuring legal operation of the WLAN device even after subsequent restarts. If one of the signals is not detected, then the WLAN device can be configured in a default mode, e.g. an “open mode” in which end users can configure the WLAN device by entering a country of operation or a “common mode” in which the channel and transmit power settings meet global spectrum usage requirements.Type: GrantFiled: November 3, 2008Date of Patent: April 10, 2012Assignee: Qualcomm Atheros, Inc.Inventors: Michael R. Green, Yi-Hsiu Wang
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Publication number: 20120076122Abstract: Accurate position capability can be quickly provided using a Wireless Local Area Network (WLAN). When associated with a WLAN, a wireless device can quickly determine its relative and/or coordinate position based on information provided by an access point in the WLAN. Before a wireless device disassociates with the access point, the WLAN can periodically provide time, location, and decoded GPS data to the wireless device. In this manner, the wireless device can significantly reduce the time to acquire the necessary GPS satellite data (i.e. on the order of seconds instead of minutes) to determine its coordinate position.Type: ApplicationFiled: December 1, 2011Publication date: March 29, 2012Applicant: Qualcomm Atheros, Inc.Inventor: Yi-Hsiu Wang
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Patent number: 8095155Abstract: Accurate position capability can be quickly provided using a Wireless Local Area Network (WLAN). When associated with a WLAN, a wireless device can quickly determine its relative and/or coordinate position based on information provided by an access point in the WLAN. Before a wireless device disassociates with the access point, the WLAN can periodically provide time, location, and decoded GPS data to the wireless device. In this manner, the wireless device can significantly reduce the time to acquire the necessary GPS satellite data (i.e. on the order of seconds instead of minutes) to determine its coordinate position.Type: GrantFiled: October 13, 2010Date of Patent: January 10, 2012Assignee: Qualcomm Atheros, Inc.Inventor: Yi-Hsiu Wang
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Patent number: 8000227Abstract: Current OFDM systems use a limited number of symbols and/or sub-channels to provide approximations for channel estimations and pilot tracking, i.e. phase estimations. For example, two training symbols in the preamble of a data packet are used to provide channel estimation. Four of the fifty-four sub-channels are reserved for providing phase estimation. However, noise and other imperfections can cause errors in both of these estimations, thereby degrading system performance. Advantageously, decision feedback mechanisms can be provided to significantly improve channel estimation and pilot tracking in OFDM systems. The decision feedback mechanisms can use data symbols in the data packet to improve channel estimation as well as data sub-channels to improve pilot tracking.Type: GrantFiled: January 15, 2010Date of Patent: August 16, 2011Assignee: Atheros Communications, Inc.Inventors: Qinfang Sun, Won-Joon Choi, Jeffrey M. Gilbert, Ning Zhang, Yi-Hsiu Wang, Tao-Fei Samuel Ng
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Patent number: 7936642Abstract: A method for determining portions of a GPS satellite signal may use non-coherent integration to determine a repeated pattern such as a preamble. Once the repeated pattern is determined, portions of the GPS satellite signal that may be determined with partial correlation sums. Sensitivity to satellite signals may be increased by computing more partial correlation sums on portions of the GPS satellite signal. In one embodiment, time of day information may be determined from the GPS satellite signal with partial correlation sums.Type: GrantFiled: January 2, 2008Date of Patent: May 3, 2011Assignee: Atheros Communications, Inc.Inventors: Yi-Hsiu Wang, Dennis Hilgenberg
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Patent number: 7924932Abstract: A Viterbi decoding system interprets bits in received QAM constellations as many-valued parameters rather than binary valued parameters. It performs the Viterbi algorithm using these many-valued parameters to provide results superior to hard decision decoding. Rather than applying a hard 0-1 function to the QAM data, the system uses a non-stepped linear or curved transfer function to assign values to the bits. In another aspect, a system differentiates between data bits based on their estimated reliability, giving more emphasis to decoding reliable bits than unreliable bits using any of a variety of techniques. By differentiating between good and bad bits and de-emphasizing or ignoring unreliable bits, the system can provide a significant reduction in uncorrectable errors and packet loss.Type: GrantFiled: November 9, 2009Date of Patent: April 12, 2011Assignee: Atheros Communications, Inc.Inventors: John S. Thomson, Paul J. Husted, Ardavan Maleki Tehrani, Jeffrey M. Gilbert, William J. McFarland, Lars E. Thon, Yi-Hsiu Wang
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Patent number: 7899472Abstract: Accurate position capability can be quickly provided using a Wireless Local Area Network (WLAN). When associated with a WLAN, a wireless device can quickly determine its relative and/or coordinate position based on information provided by an access point in the WLAN. Before a wireless device disassociates with the access point, the WLAN can periodically provide time, location, and decoded GPS data to the wireless device. In this manner, the wireless device can significantly reduce the time to acquire the necessary GPS satellite data (i.e. on the order of seconds instead of minutes) to determine its coordinate position.Type: GrantFiled: July 31, 2006Date of Patent: March 1, 2011Assignee: Atheros Communications, Inc.Inventor: Yi-Hsiu Wang
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Publication number: 20110025557Abstract: Accurate position capability can be quickly provided using a Wireless Local Area Network (WLAN). When associated with a WLAN, a wireless device can quickly determine its relative and/or coordinate position based on information provided by an access point in the WLAN. Before a wireless device disassociates with the access point, the WLAN can periodically provide time, location, and decoded GPS data to the wireless device. In this manner, the wireless device can significantly reduce the time to acquire the necessary GPS satellite data (i.e. on the order of seconds instead of minutes) to determine its coordinate position.Type: ApplicationFiled: October 13, 2010Publication date: February 3, 2011Inventor: Yi-Hsiu Wang
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Patent number: 7835456Abstract: Spurs cause significant problems with signal detecting, amplifier gain adjustment, and signal decoding. Various techniques can be used to mitigate the effects of spurs on a received signal. Generally, these techniques work by either canceling or ignoring the spurs. For example, a pilot mask can be used to ignore pilot information in one or more sub-channels. A Viterbi mask can determine the weighting given to bits in a sub-channel based on spur and data rate information. Channel interpolation can compute a pseudo channel estimate for a sub-channel known to have a spur location can be computed by interpolating the channel estimates of adjacent good sub-channels. Filtering of the received signal using a low-pass filter, a growing box filter, or a low-pass filter with self-correlation can be used to cancel a spur.Type: GrantFiled: December 6, 2007Date of Patent: November 16, 2010Assignee: Atheros Communications, Inc.Inventors: Won-Joon Choi, Jeffrey M. Gilbert, Yi-Hsiu Wang, Xiaoru Zhang
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Patent number: 7800531Abstract: A method for determining a position uses an access point array, a reference station, a location server and a client terminal. The reference station may include a GPS receiver to acquire and track GPS satellites. GPS data may be provided to the location server. The access point array may be configured to minimize interference and may be coupled by a network to the location server. The client terminal may include a GPS receiver. A frequency offset for the client terminal may be determined by examining a frequency offset of the reference station and relative offset frequencies of the access points. This frequency offset may advantageously increase the sensitivity of the client terminal to GPS signals. The client terminal may provide GPS data to the location server, which server may determine the position of the client terminal based on data from the client terminal and the reference station.Type: GrantFiled: March 6, 2008Date of Patent: September 21, 2010Assignee: Atheros Communications, Inc.Inventors: Yi-Hsiu Wang, Qinfang Sun
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Publication number: 20100111212Abstract: Current OFDM systems use a limited number of symbols and/or sub-channels to provide approximations for channel estimations and pilot tracking, i.e. phase estimations. For example, two training symbols in the preamble of a data packet are used to provide channel estimation. Four of the fifty-four sub-channels are reserved for providing phase estimation. However, noise and other imperfections can cause errors in both of these estimations, thereby degrading system performance. Advantageously, decision feedback mechanisms can be provided to significantly improve channel estimation and pilot tracking in OFDM systems. The decision feedback mechanisms can use data symbols in the data packet to improve channel estimation as well as data sub-channels to improve pilot tracking.Type: ApplicationFiled: January 15, 2010Publication date: May 6, 2010Applicant: Atheros Communications, Inc.Inventors: Qinfang Sun, Won-Joon Choi, Jeffrey M. Gilbert, Ning Zhang, Yi-Hsiu Wang, Tao-Fei Samuel Ng