Patents by Inventor Christopher Alan White
Christopher Alan White 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: 9985799Abstract: A collaborative software-defined networking (SDN) based virtual private network (VPN) communication method includes: establishing, at a wireless access point, a private wireless local area network (WLAN) slice within a first wireless network in response to a request from a first user, wireless resources for the first wireless network being provided by the wireless access point; creating a VPN connection between the private WLAN slice and a second network; granting users access to the private WLAN slice and the VPN connection between the private WLAN slice and the second network; and routing traffic between the users granted access to the private WLAN slice and the VPN connection without transmission of the traffic to the second network through the VPN connection.Type: GrantFiled: September 5, 2014Date of Patent: May 29, 2018Assignee: Alcatel-Lucent USA Inc.Inventors: Mark M. Clougherty, Christopher Alan White
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Publication number: 20160073327Abstract: A collaborative software-defined networking (SDN) based virtual private network (VPN) communication method includes: establishing, at a wireless access point, a private wireless local area network (WLAN) slice within a first wireless network in response to a request from a first user, wireless resources for the first wireless network being provided by the wireless access point; creating a VPN connection between the private WLAN slice and a second network; granting users access to the private WLAN slice and the VPN connection between the private WLAN slice and the second network; and routing traffic between the users granted access to the private WLAN slice and the VPN connection without transmission of the traffic to the second network through the VPN connection.Type: ApplicationFiled: September 5, 2014Publication date: March 10, 2016Inventors: Mark M. CLOUGHERTY, Christopher Alan WHITE
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Patent number: 8995053Abstract: The present invention includes an optical amplifier and method for reducing the impact of transient events within an optical transmission system. Specifically, a positive transient power or amplifier setting adjustment limit is applied based upon a number of active channels or a current “steady state” operating condition. This adjustment limit is described in terms of a number of channels to be amplified. By controlling the adjustment limit in this manner, automatic control of the amplifier is provided for a loss of channel condition as well as for the addition of a single or few channel condition. If a larger positive transient occurs, the control will not adjust the power limit, and the positive transient power will therefore be suppressed.Type: GrantFiled: December 28, 2006Date of Patent: March 31, 2015Assignee: Alcatel LucentInventors: Daniel Charles Kilper, Christopher Alan White
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Patent number: 8441721Abstract: An example method includes receiving power measurements for a plurality of optical channels. Deviation measurements representing a difference between respective power measurements and corresponding power targets for the plurality of optical channels are created. Correctable deviations for the plurality of optical channels are determined based on the deviation measurements. The correctable deviations may be determined by projecting the measured deviations into a space that defines Raman gain profiles achievable with a set of channels and pumps. Pump settings for a plurality of pumps are determining based upon the correctable deviations for each channel by solving an optimization problem. The pump setting so determined may be applied to the plurality of pumps.Type: GrantFiled: December 30, 2009Date of Patent: May 14, 2013Assignee: Alcatel LucentInventor: Christopher Alan White
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Publication number: 20110157687Abstract: An example method includes receiving power measurements for a plurality of optical channels. Deviation measurements representing a difference between respective power measurements and corresponding power targets for the plurality of optical channels are created. Correctable deviations for the plurality of optical channels are determined based on the deviation measurements. The correctable deviations may be determined by projecting the measured deviations into a space that defines Raman gain profiles achievable with a set of channels and pumps. Pump settings for a plurality of pumps are determining based upon the correctable deviations for each channel by solving an optimization problem. The pump setting so determined may be applied to the plurality of pumps.Type: ApplicationFiled: December 30, 2009Publication date: June 30, 2011Inventor: Christopher Alan White
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Patent number: 7746548Abstract: Optical amplifier transient control methods and apparatus which limit the extent of cumulative transient gain errors in the rapid control of multiple optical amplifiers in a communication system. In an exemplary embodiment, if the input power to an optical amplifier drops below a predetermined threshold, the gain of the amplifier is set to clamp the output power of the amplifier to its initial level less the threshold, thereby preventing the continuous growth of gain error. This is based on the assumption that once the input power goes below the threshold, it should no longer go above the threshold until the transient condition is corrected. The present invention can operate to handle down-as well as up-transient events and is not amplifier technology dependent.Type: GrantFiled: August 29, 2007Date of Patent: June 29, 2010Assignee: Alcatel-Lucent USA Inc.Inventors: Daniel Charles Kilper, Christopher Alan White
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Publication number: 20080158659Abstract: The present invention includes an optical amplifier and method for reducing the impact of transient events within an optical transmission system. Specifically, a positive transient power or amplifier setting adjustment limit is applied based upon a number of active channels or a current “steady state” operating condition. This adjustment limit is described in terms of a number of channels to be amplified. By controlling the adjustment limit in this manner, automatic control of the amplifier is provided for a loss of channel condition as well as for the addition of a single or few channel condition. If a larger positive transient occurs, the control will not adjust the power limit, and the positive transient power will therefore be suppressed.Type: ApplicationFiled: December 28, 2006Publication date: July 3, 2008Inventors: Daniel Charles Kilper, Christopher Alan White
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Patent number: 7167299Abstract: A method and apparatus for controlling the pump powers of a broadband DWDM optical system using Raman amplification which determines pump settings that are advantageously directed to minimizing the peak-to-peak ripple of the channel powers with respect to a given per-channel target. The illustrative method and apparatus first formulates a linear programming optimization problem, and then solves the formulated linear program in order to derive a new set of pump powers to be applied to the Raman amplification pumps. In accordance with the principles of the invention, the formulated linear programming optimization problem advantageously includes one or more “virtual” channels in addition to the actual channels used in the optical transmission system. The linear program may be solved with use of any conventional linear programming solution technique, such as, for example, the simplex method.Type: GrantFiled: January 31, 2006Date of Patent: January 23, 2007Assignee: Lucent Technologies Inc.Inventors: Narasimhan Raghavan, David A Sadler, Christopher Alan White
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Patent number: 6715322Abstract: The process time required for fluorine doping of porous silica bodies to produce fluorine doped preforms for the manufacture of depressed index optical fibers is reduced by separating the doping step into a predeposit step, where “excess” fluorine is deposited on the silica particles, and a drive-in step where atomic fluorine is distributed into the silica particles. The drive-in step is conveniently combined with the sintering or consolidation step to further enhance the efficiency of the doping process.Type: GrantFiled: January 5, 2001Date of Patent: April 6, 2004Assignee: Lucent Technologies Inc.Inventors: Yoram De Hazan, John Burnette MacChesney, Thomas Edward Stockert, Christopher Alan White
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Publication number: 20040000171Abstract: The process time required for fluorine doping of porous silica bodies to produce fluorine doped preforms for the manufacture of depressed index optical fibers is reduced by separating the doping step into a predeposit step, where “excess” fluorine is deposited on the silica particles, and a drive-in step where atomic fluorine is distributed into the silica particles. The drive-in step is conveniently combined with the sintering or consolidation step to further enhance the efficiency of the doping process.Type: ApplicationFiled: January 5, 2001Publication date: January 1, 2004Inventors: Yoram De Hazan, John Burnette MacChesney, Thomas Edward Stockert, Christopher Alan White
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Patent number: 6594429Abstract: A new type of multimode fiber is provided, capable of being constructed without the need for chemical doping. The fiber contains a core region comprising a first material and one or more axially oriented elements disposed in the first material. The axially oriented elements (which typically extend throughout the length of the fiber) are configured to provide a graded effective refractive index profile or to provide more focused interaction with selected modes. The fiber further contains a cladding region surrounding the core region, where the cladding region exhibits a refractive index less than the effective refractive index of the portion of the core immediately adjacent the cladding region, i.e., there exists an index step at the core/cladding interface.Type: GrantFiled: October 20, 2000Date of Patent: July 15, 2003Assignee: Lucent Technologies Inc.Inventor: Christopher Alan White
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Patent number: 6392787Abstract: An improved lithographic process for fabricating articles comprising photonic band gap materials with micron-scale periodicities is provided, the process readily capable of being performed by current lithographic processes and equipment. The process involves providing a three-dimensional structure made up of a plurality of stacked layers, where each layer contains a substantially planar lattice of shapes of a first material, typically silicon, with interstices between the shapes. Each shape contacts at least one shape of an adjacent layer, the interstices throughout the plurality of layers are interconnected, and the interstices comprise a second material, e.g., silicon dioxide. Typically, the second material is etched from the interconnected interstices to provide a structure of the first material and air, this structure designed to provide a particular photonic band gap.Type: GrantFiled: September 1, 2000Date of Patent: May 21, 2002Assignee: Agere Systems Guardian Corp.Inventors: Raymond A. Cirelli, Omkaram Nalamasu, Sanjay Patel, Stanley Pau, George P Watson, Christopher Alan White, Robert Waverly Zehner
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Patent number: 6119510Abstract: The invention provides an improved process for determining the characteristics of dispersed particles. The process involves directing waves (acoustic or light) into a dispersion, and measuring the attenuation of the waves for particular frequencies to provide an attenuation spectrum. The measured attenuation spectrum is then compared to a set of theory-based calculated attenuation spectra to determine the particle size distribution corresponding to the measured attenuation spectrum. Unlike previous processes, the particle size distribution is capable of being accurately determined by a single inversion algorithm, thus eliminating burdensome steps of previous methods.Type: GrantFiled: August 31, 1998Date of Patent: September 19, 2000Assignee: Lucent Technologies Inc.Inventors: Melanie Carasso, Sanjay Patel, Jorge Luis Valdes, Christopher Alan White