Automatic Target Detection Patents (Class 342/90)
  • Patent number: 7907081
    Abstract: An imaging system operative in a frequency range starting from X band and including the terahertz region has a receiving antenna having a spheroidal reflector. One or more arrays of detectors disposed at the focus adjacent to the reflector of the receiving antenna provides for imaging targets within a range of a few meters around the second focus of the spheroidal reflector. Images of targets such as of concealed objects under clothing are generated and displayed as is known in the art. A method for manufacturing reflectors of receiving antennae given a detection range and a focal range is provided.
    Type: Grant
    Filed: December 25, 2006
    Date of Patent: March 15, 2011
    Assignee: Rafael - Armament Development Authority Ltd.
    Inventor: Yonatan Noyman
  • Patent number: 7881671
    Abstract: A system supporting data retrieval from a plurality of wireless sensor nodes is defined. The system includes the plurality of wireless sensor nodes and a data retrieval device. The plurality of wireless sensor nodes include a transceiver receiving a first signal and transmitting a second signal. The second signal includes a sensed datum or an encoded statistic based on the sensed datum identified at the plurality of wireless sensor nodes. The data retrieval device includes a plurality of antennas transmitting the first signal toward the plurality of wireless sensor nodes and receiving the second signal from the plurality of wireless sensor nodes, and a processor coupled to receive the received second signal from the plurality of antennas, the processor defining a virtual receive signal from the received second signal for the plurality of antennas and processing the defined virtual receive signal to determine the identified sensed datum.
    Type: Grant
    Filed: April 18, 2006
    Date of Patent: February 1, 2011
    Assignee: Wisconsin Alumni Research Foundation
    Inventors: Akbar M. Sayeed, Thiagarajan Sivanadyan
  • Patent number: 7864103
    Abstract: A height-finding 3D avian radar comprises an azimuthally scanning radar system with means of varying the elevation pointing angle of the antenna. The elevation angle can be varied by employing either an antenna with multiple beams, or an elevation scanner, or two radars pointed at different elevations. Heights of birds are determined by analyzing the received echo returns from detected bird targets illuminated with the different elevation pointing angles.
    Type: Grant
    Filed: April 27, 2007
    Date of Patent: January 4, 2011
    Assignee: Accipiter Radar Technologies, Inc.
    Inventors: Peter T. Weber, Timothy J. Nohara
  • Patent number: 7830297
    Abstract: A method of classifying radar emitters includes the steps of: (a) receiving pulses from multiple radar emitters over a plurality of consecutive first time intervals; (b) identifying pulses in each of the plurality of consecutive first time intervals corresponding to one or more first pulse trains using a first algorithm and de-interleaving the identified pulses from the plurality of first time intervals; (c) associating received pulses not identified and de-interleaved using the first algorithm with a plurality of consecutive second time intervals; and (d) identifying further pulses in each of the plurality of consecutive second time intervals corresponding to one or more second pulse trains using a second algorithm different from the first algorithm and de-interleaving the identified further pulses from the pulses associated with the plurality of consecutive second time intervals. Each consecutive second time interval is formed from two or more consecutive first time intervals.
    Type: Grant
    Filed: December 20, 2007
    Date of Patent: November 9, 2010
    Assignee: ITT Manufacturing Enterprises, Inc.
    Inventors: Paul C. Wang, Matthew Orr, Mitchell Sparrow, Martin Apa
  • Patent number: 7825848
    Abstract: Method, tracking system, and intercept missile for tracking highly maneuverable target objects. The method includes estimating the motion of the at least one target object via a mathematical method that includes a filter method relating to a model assumption for estimating at least one of the motion and an orientation of the target object. The filter method includes a semi-martingale algorithm for estimating motion.
    Type: Grant
    Filed: April 17, 2008
    Date of Patent: November 2, 2010
    Assignee: LFK-Lenkflugkoerpersysteme GmbH
    Inventor: Alfred Schoettl
  • Patent number: 7821870
    Abstract: An acoustic tone at a predetermined frequency is detected after being reflected and modulated by an unknown moving object. Acoustic features are extracted from the reflected acoustic tone using acoustic spectral analysis. A dimensionality of the acoustic features is reduced, and the reduced dimensionality features are statistically classified to identify the object.
    Type: Grant
    Filed: August 19, 2005
    Date of Patent: October 26, 2010
    Assignee: Mitsubishi Electric Research Laboratories Inc.
    Inventor: Bhiksha Ramakrishnan
  • Patent number: 7817082
    Abstract: Techniques to image life forms through obstructions and at long standoff ranges employ a radar system that simultaneously transmits a plurality of RF pulse trains having different transmission frequencies and receives returns of the RF pulse trains reflected from a life form target. The returns are processed to generate digital radar data associated with the transmission frequency of each RF pulse train. The digital radar data is segmented and averaged to generate a Doppler spectrum response associated with the transmission frequency of each RF pulse train. Target classification is performed using the Doppler spectrum responses to extract biometric data describing the life form target.
    Type: Grant
    Filed: March 11, 2007
    Date of Patent: October 19, 2010
    Assignee: VAWD Applied Science and Technology Corporation
    Inventors: Wesley Howard Dwelly, Vinh Nguyen Adams
  • Publication number: 20100259440
    Abstract: An apparatus and method for receiving electromagnetic waves using photonics includes a transmission unit transmitting electromagnetic waves in intervals; a time delay unit coupled to the transmission unit and controlling the transmission unit to transmit the electromagnetic waves in the intervals; an antenna receiving the electromagnetic waves reflected from the target; an interferoceiver coupled to the antenna and receiving the electromagnetic waves from the antenna, the interferoceiver comprising an optical recirculation loop to produce replica electromagnetic waves; and a computer identifying the target from the reflected electromagnetic waves.
    Type: Application
    Filed: April 6, 2010
    Publication date: October 14, 2010
    Inventors: Ming-Chiang Li, Weimin Zhou
  • Publication number: 20100245154
    Abstract: An object ranging system operates by transmitting alternating up and down frequency sweeps which have randomly distributed slopes as a result of random selection of local frequency peaks and valleys according to predetermined probability tables, and determining the beat frequency obtained when combining the transmitted signal with its reflection from an object.
    Type: Application
    Filed: June 10, 2008
    Publication date: September 30, 2010
    Applicant: MITSUBISHI ELECTRIC CORPORATION
    Inventor: Wieslaw Jerzy Szajnowski
  • Patent number: 7804445
    Abstract: A system and method combine multiple data streams in an efficient and optimal manner, based on new techniques, to determine range, relative angle and velocity with respect to a point of reference. Embodiments of the present invention take advantage of the multiple data streams to provide improved performance when the data is contaminated with environmental and system noise. Embodiments of the present invention may be applied to data output from different target estimation systems, including radar, sonar, ultrasonic and laser systems. In addition, embodiments of the present invention may be implemented in systems with multiple tones and multiple antennas, and generally work in multipath environments.
    Type: Grant
    Filed: March 2, 2006
    Date of Patent: September 28, 2010
    Assignee: BAE Systems Information and Electronic Systems Integration Inc.
    Inventor: Paul D. Fiore
  • Publication number: 20100241009
    Abstract: A system is disclosed for wirelessly detecting movement of a target. The system comprises a reference oscillator, a transmitter, a receiver, a demodulator, and a processor, wherein: the reference oscillator generates references frequencies for the transmitter, the receiver, and the demodulator; the transmitter generates a continuous-wave signal at a frequency based on the transmitter reference frequency and wirelessly transmits it to the target; the receiver wirelessly receives a reflected signal from the target having a phase angle corresponding to movement of the target and converts the reflected signal into an intermediate frequency signal based on the receiver reference frequency; the demodulator demodulates the intermediate frequency signal into an in-phase component and a quadrature component; and the processor converts the in-phase component and the quadrature component into a movement signal corresponding to movement of the target.
    Type: Application
    Filed: March 19, 2010
    Publication date: September 23, 2010
    Applicant: Wright State University
    Inventor: Douglas T. Petkie
  • Patent number: 7800527
    Abstract: The system and method for standoff detection of human carried explosives (HCE) automatically detects HCE (112) up to a range of (200) meters and within seconds alerts an operator to HCE (112) threats. The system (100) has radar only, or both radar and video sensors, a multi-sensor processor (102), an operator console (120), handheld displays (122), and a wideband wireless communications link. The processor (102) receives radar and video feeds and automatically tracks and detects all humans (110) in the field of view. Track data continuously cues the narrow beam radar (118) to a subject of interest (110), (112) the radar (106), (108) repeatedly interrogating cued objects (110), (112), producing a multi-polarity radar range profile for each interrogation event. Range profiles and associated features are automatically fused over time until sufficient evidence is accrued to support a threat/non-threat declaration hypothesis.
    Type: Grant
    Filed: October 11, 2005
    Date of Patent: September 21, 2010
    Inventors: Robert J. Douglass, John D. Gorman, Thomas J. Burns
  • Patent number: 7786925
    Abstract: A method and apparatus determines the shape of an orbiting or airborne object. A radar determines the general location and a telescope is directed toward the object to form an image of background stars, which will be occluded by the object. The image is compared with a memorized star map, to identify the region of the image in the map. Stars visible in the map which are not visible in the image are listed. The invisible stars are paired with next adjacent visible stars to form star pairs. The midpoints are identified of lines extending between star pairs. Segment lines are drawn between a midpoint and the next closest midpoint. The segment lines define an outline of the object.
    Type: Grant
    Filed: May 13, 2009
    Date of Patent: August 31, 2010
    Assignee: Lockheed Martin Corporation
    Inventors: Peter W. Knibbe, John B. Stetson
  • Publication number: 20100214154
    Abstract: There is disclosed a system and method for detecting targets. A transmitter may transmit a first inverse transform signal, the first inverse transform signal derived from a reference image of a first reference target at a first aspect angle. A receiver may receive a return signal reflected from a scene. A detector may determine, based on the return signal, if an object similar to the first target at the first aspect angle is detected within the scene.
    Type: Application
    Filed: February 20, 2009
    Publication date: August 26, 2010
    Inventors: Frank A. Birdsong, JR., Lloyd E. Kinsey, JR.
  • Patent number: 7777671
    Abstract: The invention relates to a radar system which comprises: (a) at least two transmitting units for simultaneously, and in synchronization transmitting electromagnetic radiation in distinct frequencies f1, f2, f3 . . . towards a space of interest; and (b) at least one receiving unit tuned to a frequency of nf1+mf2+qf3 . . . , wherein n, m, q . . . being integers not equal to zero, for receiving a non-linear response of said radiation from objects located within the said space of interest.
    Type: Grant
    Filed: July 12, 2005
    Date of Patent: August 17, 2010
    Assignee: Rafael-Armament Development Authority, Ltd
    Inventors: Itzhak Schnitzer, Avner Rosenberg, Alon Deutsch
  • Patent number: 7777672
    Abstract: The invention relates to a radar system which comprises: (a) at least two transmitting units for simultaneously, and in synchronization transmitting electromagnetic radiation in distinct frequencies f1, f2, f3 . . . towards a space of interest; and (b) at least one receiving unit tuned to a frequency of nf1+mf2+qf3 . . . , wherein n, m, q . . . being integers not equal to zero, for receiving a non-linear response of said radiation from objects located within the said space of interest, and wherein the system is characterized in that said transmitted pulses are narrow pulses having duration in the range of between about 1 nanoseconds and about 100 nanoseconds.
    Type: Grant
    Filed: January 16, 2008
    Date of Patent: August 17, 2010
    Assignee: Rafael-Armament Development Authority Ltd.
    Inventors: Itzhak Schnitzer, Avner Rosenberg, Alon Deutsch
  • Patent number: 7768444
    Abstract: A system for detecting weapons is provided. The system includes a radar system transmitting electromagnetic radiation, analyzing reflected signals to detect a weapon, and generating reflected signal data. An energy field parameter system receives the reflected signal data and sets a plurality of energy field parameters. An energy field system transmits energy at a location associated with the detected weapon.
    Type: Grant
    Filed: January 29, 2008
    Date of Patent: August 3, 2010
    Inventor: Christopher J. Rourk
  • Patent number: 7760135
    Abstract: Systems and methods are presented for associating time slices of a received signal with previously encountered time slices. A parameter determination component determines at least one parameter for each received time slice. A content addressable memory stores a plurality of parameter values associated with the previously encountered time slices. The content addressable memory is searchable such that the determined at least one parameter for each received time slice can be compared to the stored plurality of parameter values to provide a memory output. An emitter matching component associates a given received time slice with one of a plurality of emitters according to the memory output.
    Type: Grant
    Filed: November 27, 2007
    Date of Patent: July 20, 2010
    Assignee: Lockheed Martin Corporation
    Inventors: Stan W. Driggs, Thomas J. Eckenrode, Walter S. Richter, Jerry L. Twoey
  • Patent number: 7760088
    Abstract: According to an embodiment, an intrusion detection sensor includes a microwave sensor (120) that transmits microwaves toward a detection area, receives the microwaves reflected by an object present in the detection area, and outputs a reflected wave reception intensity signal according to the received intensity; a direction variable antenna device (110); a scanning measurement means (131) that provides an instruction to scan the transmission/reception direction to the direction variable antenna device (110) to determine a relationship with the output of the reflected wave reception intensity signal; a detection target object presence determination means (132) that determines whether or not a detection target object is present based on the determined relationship; and an alarm signal output control means (133) that outputs an alarm signal when it is determined that a detection target object is present.
    Type: Grant
    Filed: June 22, 2006
    Date of Patent: July 20, 2010
    Assignee: Optex Co., Ltd.
    Inventor: Masatoshi Tsuji
  • Publication number: 20100149020
    Abstract: The present invention extends to methods, systems, and computer program products for detecting targets across beams at roadway intersections. Embodiments of the invention include tracking a target across a plurality of beams of a multiple beam radar system in a roadway intersection and updating track files for targets within a roadway intersection. Returns from a plurality of radar beams monitoring a roadway intersection are divided into range bins. Identified energy in the range bins is used to compute the position of targets within a roadway intersection. When the position of a target is computed, it is determined if the position is a new position for an existing target or if the position is the position of a new target.
    Type: Application
    Filed: February 23, 2010
    Publication date: June 17, 2010
    Inventors: David V. Arnold, Bryan R. Jarrett, Thomas W. Karlinsey, Jonathan L. Waite, Brad Giles, Randy St. John
  • Patent number: 7719461
    Abstract: The invention, called “ORSE Track Fusion”, combines sensor tracks from dispersed sites, when limited communication bandwidth does not permit sharing of individual measurements. Since estimation errors due to maneuver biases are not independent for each sensor, optimal fusion of tracks produced by Kalman filters requires transmission of all the filter gain matrices used to update each sensor track prior to the fusion time. For this reason, prior art has resorted to suboptimal designs. ORSE Track Fusion according to aspects of the invention overcomes this disadvantage by propagating, transmitting, and fusing separately calculated covariance matrices for random and bias estimation errors. Furthermore, with ORSE, each sensor can have its own criteria in forming its track, and track fusion can be performed with different criteria at each processing site. Thus, ORSE Track Fusion has the unique flexibility to optimize track fusion simultaneously for multiple criteria to serve multiple users.
    Type: Grant
    Filed: August 5, 2008
    Date of Patent: May 18, 2010
    Assignee: Lockheed Martin Corporation
    Inventors: Purusottam Mookerjee, Frank J. Reifler
  • Publication number: 20100109938
    Abstract: A method of classifying items from reflected signals returned from said items is disclosed, the method comprising: processing said return signals to discriminate between a first set of signals indicative of items of interest and a further set of signals indicative of clutter; identifying items from said first set of signals and classifying them as a first class of item; processing said further set of signals to identify a second set of signals indicative of further items of interest; identifying items from said second set of signals and classifying them as a second class of item.
    Type: Application
    Filed: January 31, 2008
    Publication date: May 6, 2010
    Inventors: Gordon Kenneth Andrew Oswald, Edwin Christopher Carter, Per Arne Vincent Utsi, Samuel Julius Pumphrey, Desmond Keith Phillips, Michael Hugh Burchett, Allan Geoffrey Smithson, Jonathan Peter Edgecombe
  • Patent number: 7692573
    Abstract: A system and methods enable efficient data association of input sensor data with uniquely identified candidate targets. The methods may use information provided by a target status history database, a target geolocation history database, and a target technical characteristics database, as well as data processing procedures provided by an algorithm rules database.
    Type: Grant
    Filed: July 1, 2008
    Date of Patent: April 6, 2010
    Assignee: The United States of America as represented by the Secretary of the Navy
    Inventor: Clarence J. Funk
  • Publication number: 20100073216
    Abstract: A FMCW-type radar device generates snapshot data from a beat signal that represents a received condition of the radar device every modulation period. Auto-correlation matrices generated by the snapshot data every modulation period are averaged every set of plural periods. The radar device calculates the target azimuth of a target object such as a preceding vehicle based on the averaged auto-correlation matrix based on MUSIC (MUltiple SIgnal Classification) method. This averaging is performed by weighting average based on an amount of mixed noise (or an interference amount) contained in the snapshot data in each modulation period. A weighting coefficient to be applied to the auto-correlation matrix in each modulation period is set to a value corresponding to the amount of mixed noise, namely, the interference amount of this modulation period. The weighting coefficient becomes large when the interference amount is small, and on the other hand, becomes small when it is large.
    Type: Application
    Filed: September 15, 2009
    Publication date: March 25, 2010
    Applicant: DENSO CORPORATION
    Inventors: Mai Sakamoto, Kazuma Natsume, Yuu Watanabe, Hideki Shirai, Chiharu Yamano
  • Patent number: 7683822
    Abstract: The invention relates to the methods and systems for remotely detecting metal items, for example, weapons, concealed in cloths or belongings and may be used in security complexes. The proposed system contains a phased antenna array 1 radiating a continuous frequency-modulated ultra high or super high frequency signal and scanning a controlled space, a receiver 2 of reflected signals, a processor 3, a display 4, and a video camera 5.
    Type: Grant
    Filed: December 31, 2007
    Date of Patent: March 23, 2010
    Inventors: Nikolay Yurievich Danilov, Vladimir Avenirovich Kropotov
  • Patent number: 7679546
    Abstract: An apparatus and method of determining location of an object hidden from view. The apparatus includes an imaging tool for detecting hidden objects. The imaging tool includes a housing including a first end and a second end, a display supported by the first end of the housing, and a tracking device supported by the second end of the housing. The imaging tool also includes a transmitter supported by the housing and operable to transmit electromagnetic radiation toward a hidden target, an analysis module supported by the housing and operable to analyze feedback data related to the interaction between the target and the electromagnetic radiation, and an image module operable to receive data from the analysis module to generate an image on the display.
    Type: Grant
    Filed: September 20, 2007
    Date of Patent: March 16, 2010
    Assignee: Techtronic Power Tools Technology Limited
    Inventors: Scott D. Bublitz, Jeffrey C. Hessenberger, John S. Scott, Matthew J. Mergener, David S. Holbrook
  • Patent number: 7646332
    Abstract: Apparatus and method for real-time determination of radar cross sections is disclosed using interleaved gridding. Radar cross section calculations are amenable to an implementation on parallel processors wherein the shooting window is subdivided into smaller areal units that are assigned to the parallel processors in an alternating fashion, such that the calculations performed by a single processor are not localized to a single area of the shooting window. As further disclosed, the shooting and bouncing ray technique for calculating radar cross sections is implemented using the apparatus and method disclosed herein.
    Type: Grant
    Filed: August 9, 2007
    Date of Patent: January 12, 2010
    Assignee: Raytheon Company
    Inventors: Chul J. Lee, Sean T. Price
  • Patent number: 7629918
    Abstract: An RFDE system includes an RFDE transmitter and at least one RFDE antenna. The RFDE transmitter and antenna direct high power electromagnetic energy towards a target sufficient to cause high energy damage or disruption of the target. The RFDE system further includes a targeting system for locating the target. The targeting system includes a radar transmitter and at least one radar antenna for transmitting and receiving electromagnetic energy to locate the target. The RFDE system also includes an antenna pointing system for aiming the at least one RFDE antenna at the target based on the location of the target as ascertained by the targeting system. Moreover, at least a portion of the radar transmitter or the at least one radar antenna is integrated within at least a portion of the RFDE transmitter or the at least one RFDE antenna.
    Type: Grant
    Filed: December 15, 2005
    Date of Patent: December 8, 2009
    Assignee: Raytheon Company
    Inventors: Kenneth W. Brown, David J. Canich, Russell F. Berg
  • Patent number: 7629920
    Abstract: The proper timing or alignment for coherent or noncoherent integration of radar pulses returned from a potentially moving target is determined by determining the entropy associated with sets of range samples based on a plurality of different velocity hypotheses. That set associated with the minimum entropy is deemed to be the correct velocity hypothesis, and integration is then performed using the velocity hypothesis so determined.
    Type: Grant
    Filed: September 26, 2007
    Date of Patent: December 8, 2009
    Assignee: Lockheed Martin Corporation
    Inventors: Parker L. Kuhl, Rao M. Nuthalapati, Harry Urkowitz
  • Patent number: 7626534
    Abstract: A target tracking method uses sensor(s) producing target signals subject to positional and/or angular bias, which are updated with sensor bias estimates to produce updated target-representative signals. Time propagation produces time-updated target states and sensor positional and angular biases. The Jacobian of the state dynamics of a target model produces the state transition matrix for extended Kalman filtering. Target state vector and bias covariances of the sensor are time propagated. The Kalman measurement residual is computed to produce state corrections, which are added to the time updated filter states to thereby produce (i) target state updates and (ii) sensor positional and angular bias updates.
    Type: Grant
    Filed: June 12, 2007
    Date of Patent: December 1, 2009
    Assignee: Lockheed Martin Corporation
    Inventors: Jeffrey B. Boka, Purusottam Mookerjee, Naresh R. Patel
  • Patent number: 7626535
    Abstract: Various embodiments are described herein for a track quality based multi-target tracker and an associated method. The method includes associating a measurement with a track, generating measurement association statistics for the track, generating and updating a track quality value for a track based on a measurement-to-track association likelihood, and updating track lists based on the track quality value and the measurement association statistics of the tracks in these lists. The tracker includes structure for carrying out this method.
    Type: Grant
    Filed: June 1, 2007
    Date of Patent: December 1, 2009
    Assignee: Raytheon Company
    Inventors: Zhen Ding, Abhijit Sinha, Thia Kirubarajan, Mohamad Farooq
  • Patent number: 7616526
    Abstract: An object localizing system comprises sensor devices at different sites, each sensor device being capable of detecting a signal from an object, and control means for repeatedly responding to the outputs of the sensor devices by selecting a sub-set of the devices and determining the amount by which the times at which the devices of the sub-set receive the signal are delayed with respect to each other to enable calculation of the current location of the object. Each sensor device can be switched between a master mode, in which the device is operable to transmit events derived from a signal from an object, and a slave mode, in which the device is responsive to such events from another sensor device for processing its own signal in order to determine the time delay between receipt of the signals by the sensors of the respective devices.
    Type: Grant
    Filed: August 31, 2006
    Date of Patent: November 10, 2009
    Assignee: Mitsubishi Denki Kabushiki Kaisha
    Inventor: Wieslaw Jerzy Szajnowski
  • Patent number: 7605747
    Abstract: A method for determining or compensating for the positional errors of a sensor tracking a target comprises the steps of operating the sensor to generate sensed information relating to the target and adding any sensor positional bias update information to produce updated sensed information. The target state is propagated to produce time updated state estimates. The Jacobian of the state dynamics and the state transition matrix for the extended Kalman filter algorithm are computed. The covariance of a state vector is time propagated using the state transition matrix.
    Type: Grant
    Filed: August 14, 2006
    Date of Patent: October 20, 2009
    Assignee: Lockheed Martin Corporation
    Inventors: Purusottam Mookerjee, Jeffrey B. Boka
  • Patent number: 7605746
    Abstract: An in-vehicle radar device has a transmission section for emitting an electromagnetic wave, a scanning section for horizontally scanning the electromagnetic wave emitted by the transmission section, and a reception section for receiving a reflected wave reflected by a target with respect to the electromagnetic wave emitted by the transmission section. The in-vehicle radar device detects, based on an elapsed time from when the transmission section emitted the electromagnetic wave until the reception section receives the reflected wave and the scanning direction of the electromagnetic wave by the scanning section, at least a position and a horizontal width of the target reflecting the electromagnetic wave.
    Type: Grant
    Filed: November 6, 2008
    Date of Patent: October 20, 2009
    Assignee: Omron Corporation
    Inventors: Yoshio Matsuura, Masao Komaya
  • Patent number: 7602329
    Abstract: The present invention relates to systems and methods of tracking and/or avoiding harm to certain devices or humans. According to one exemplary embodiment, a method of tracking individual assets may include obtaining position data of an asset via a GPS receiver in communication with a position sensor associated with the asset, processing position data and sensor data via a processing component associated with the position sensor that receives the position data from the GPS receiver, and communicating sensor data to a host device via a communication interface associated with the position sensor and configured to enable wireless communication between the position sensor and the host device.
    Type: Grant
    Filed: October 31, 2007
    Date of Patent: October 13, 2009
    Assignee: Shotspotter, Inc.
    Inventors: Scott Manderville, Kevin Baxter, Fred Holmes, Ken Fisher
  • Patent number: 7586436
    Abstract: A radar device separates directions of a plurality of targets, obtained from combinations of antenna beams, with a high accuracy. The radar device includes: a direction calculating unit for calculating a primary direction, which is the direction of a target, from a combination of characterizing quantities calculated by a signal detector from the reception waves of at least two beams that partially overlap, among the beams radiated in the plurality of directions; and a direction integrating unit for, when a plurality of primary directions calculated by the direction calculating unit is present, calculating an integrated direction, which is the true target direction, from an area in which distribution of the plurality of primary directions is a predetermined density or greater, based on the primary directions belonging to the area.
    Type: Grant
    Filed: September 11, 2003
    Date of Patent: September 8, 2009
    Assignee: Mitsubishi Denki Kabushiki Kaisha
    Inventors: Toshio Wakayama, Takashi Sekiguchi, Atsushi Okamura, Masayoshi Ito, Takayuki Inaba, Masashi Mitsumoto
  • Patent number: 7576688
    Abstract: Moving objects are detected with a radar by collecting samples of a received signal over an integration period. The terms of a match function contain a product of a sample of said received signal and a delayed-in-time, Doppler-shifted replica of a transmission and depend on parameters that describe an object that caused a reflection of the transmission. The most probable values of the parameters are found by maximizing the match function through Fourier transforming a vector consisting of terms of the match function. Those of said products that contain a non-zero contribution of said delayed-in-time, Doppler-shifted replica of a transmission are actually computed while the others of said products are zero Only non-zero blocks of the products count as final terms to the vector to be Fourier transformed that have nonzero value while intermittent blocks that have zero value are left out.
    Type: Grant
    Filed: February 20, 2006
    Date of Patent: August 18, 2009
    Assignee: Eigenor Oy
    Inventor: Markku Sakari Lehtinen
  • Patent number: 7576682
    Abstract: A method for radar target detection and angle estimation in the presence of jamming includes the steps of receiving a signal from a radar array having elements arranged in rows and columns; performing deterministic row-based beamforming on the received signal to obtain row sum azimuth beams; performing deterministic column-based beamforming on the received signal to obtain column sum elevation beams; performing one-dimensional maximum likelihood estimation on the row sum azimuth beams to obtain an estimated target elevation angle and an adaptive array sum azimuth beam; performing one-dimensional maximum likelihood estimation on the column sum elevation beams to obtain an estimated target azimuth angle and an adaptive array sum elevation beam; and performing target detection based on the adaptive array sum azimuth beam and the adaptive array sum elevation beam.
    Type: Grant
    Filed: March 14, 2006
    Date of Patent: August 18, 2009
    Assignee: Lockheed Martin Corporation
    Inventor: Kai Bor Yu
  • Patent number: 7573419
    Abstract: The present inventive concept for bistatic or monostatic radar utilization discloses a method and a system for unambiguous angle resolution of a sparse wide-band array antenna by utilizing an ultra wide-band signal, generally a wide-band noise signal which may be continuous bandwidth limited white or colored noise. The noise signal is typically generated and radiated by a transmitting antenna covering the entire reception range of a receiving sparse antenna array. An echo signal is received by the sparse receiving array containing n antenna elements, which are generally positioned with separation distances of several wavelengths without creating strong grating lobes due to the type of generated transmit signal.
    Type: Grant
    Filed: May 21, 2003
    Date of Patent: August 11, 2009
    Assignee: Telefonaktiebolaget LM Ericsson (publ)
    Inventor: Kent Olof Falk
  • Patent number: 7570193
    Abstract: A method and apparatus for processing signal pulses received by a device to identify the presence or absence of a waveform is provided. The waveform may have a long duration and may have a sparse energy distribution. An example of such a waveform is the bin-5 radar waveform. Based on the arrival rate of pulses, filtering of pulses is performed. The pulses that are not filtered out are grouped into bursts and information about the bursts is stored in a burst history. For example, the burst history might store the number of pulses in the burst and an inter-burst interval time. Entries over a certain age may be deleted from the burst history. The burst history is analyzed to determine if the pulses conform to a pattern associated with the waveform. The analysis may be based on various statistics. In an embodiment, only time domain information is analyzed.
    Type: Grant
    Filed: September 20, 2007
    Date of Patent: August 4, 2009
    Assignee: Bandspeed, Inc.
    Inventor: Nils Bagge
  • Patent number: 7567203
    Abstract: A system and method for target classification for an aircraft surveillance radar is provided. In one implementation, the track classifier provides tracks with an updated probability value based on its likelihood to conform to aircraft and non-aircraft target behavior. The track classifier identifies false tracks that may arise from weather and biological targets, and can detect aircrafts lacking Secondary Surveillance Radar (SSR) data. Various features and combinations of features are evaluated using a proposed clustering performance index (CPI) and used to discriminate between aircrafts and false tracks.
    Type: Grant
    Filed: April 10, 2006
    Date of Patent: July 28, 2009
    Assignee: Raytheon Canada Limited
    Inventors: Reza M. Dizaji, Hamid Ghadaki
  • Patent number: 7554485
    Abstract: A radar sensor and a corresponding method for distance and cruise control of a vehicle are described; using this sensor and method, objects in front of the vehicle in the direction of travel are detected and at least the variables: distance, relative velocity, and azimuth angle of the detected objects are ascertained with regard to the vehicle, the change over time of the reflection point of the radar beam on the object and classification of the detected object being determined as a function of the change over time of the reflection point.
    Type: Grant
    Filed: July 7, 2005
    Date of Patent: June 30, 2009
    Assignee: Robert Bosch GmbH
    Inventor: Ruediger Jordan
  • Patent number: 7551122
    Abstract: A method for determination of a filling level of a product contained in a tank, comprising the steps of generating and transmitting an electromagnetic signal; propagating the transmitted electromagnetic signal towards the product in the tank; receiving echo signals resulting from reflections at impedance transitions encountered by the transmitted electromagnetic signal; classifying one of the echo signals as a surface echo signal resulting from reflection at a surface of the product inside the tank; evaluating an additional echo signal; providing, if an amplitude of the additional echo signal is greater than a predetermined disturbance echo threshold, a signal indicative thereof; and determining the filling level based on the surface echo signal.
    Type: Grant
    Filed: December 6, 2007
    Date of Patent: June 23, 2009
    Assignee: Rosemount Tank Radar AB
    Inventors: Håkan Delin, Per Karlsson
  • Patent number: 7545307
    Abstract: The present invention describes a new QR enclosing voting scheme that allows the extraction of base signatures of objects using a shortest path QR algorithm, providing a probability distribution measuring the occurrence of each random projection base of the object under consideration. The method is very effective in extracting the overall base signatures of a given class of objects. The novelty of this approach is that it is not tailored to the nature of the objects, thus generally applicable, and unmanned. Random projections (RP) have been a powerful tool to reduce the dimensionality of an object while preserving class separation. The inventive voting scheme, after RP, further reduces the dimensionality to no more than the number of the training objects.
    Type: Grant
    Filed: December 15, 2005
    Date of Patent: June 9, 2009
    Assignee: Raytheon Company
    Inventor: David B. Shu
  • Patent number: 7538715
    Abstract: An unknown location for a transmitter/receiver is determined using a calibration process. An area is established with reference receivers at known locations and a mobile transmitter provides a location signal. An alternative embodiment uses reference transmitters and a mobile receiver. For calibration, the transmitter is placed at multiple measured locations and signal measurements are taken to generate a calibration map. Multiple signal measurements may be taken at each receiver, and multiple receivers may be used. In one embodiment, signal measurements include a near-field phase. In operation, one or more location signals are measured at one or more receivers. The measured signals are compared with the calibration maps to generate a set of comparison maps which are combined to generate a likelihood map. A likely region and most likely location are determined from the likelihood map and may be displayed relative to a map of the environment.
    Type: Grant
    Filed: August 8, 2006
    Date of Patent: May 26, 2009
    Assignee: Q-Track Corporation
    Inventors: David Wesley Langford, Hans Gregory Schantz
  • Patent number: 7522091
    Abstract: A processor using a first Kalman filter estimates a host vehicle state from speed and yaw rate, the latter of which may be from a yaw rate sensor if speed is greater than a threshold, and, if less, from a steer angle sensor and speed. Road curvature parameters are estimated from a curve fit of a host vehicle trajectory or from a second Kalman filter for which a state variable may be responsive to a plurality of host state variables. Kalman filters may incorporate adaptive sliding windows. Curvature of a most likely road type is estimated with an interacting multiple model (IMM) algorithm using models of different road types. A road curvature fusion subsystem provides for fusing road curvature estimates from a plurality of curvature estimators using either host vehicle state, a map database responsive to vehicle location, or measurements of a target vehicle with a radar system.
    Type: Grant
    Filed: December 24, 2004
    Date of Patent: April 21, 2009
    Assignee: Automotive Systems Laboratory, Inc.
    Inventors: Shan Cong, Shi Shen, Lang Hong
  • Patent number: 7522089
    Abstract: A system and method is presented for detecting and classifying slow-moving and hovering helicopters from a missile's look-down Doppler radar that is compatible with the existing base of Doppler radars. This approach uses definable attributes of a helicopter rotor assembly and its extended Doppler rotor return to differentiate “rotor samples” from other samples (steps 123, 125), extract features such as bandwidth, activity, angle, and shape from the rotor samples (step 127), and classify a potential target as a helicopter or other based on the extracted rotor features and the known attributes of the helicopter rotor assembly (step 129). A target report including a classification target, range, range-rate, and angle of the extended rotor return is suitably passed to a tracking processor (step 121).
    Type: Grant
    Filed: June 12, 2006
    Date of Patent: April 21, 2009
    Assignee: Raytheon Company
    Inventors: Bernard Radza, Joseph Henning, Sunny Ali, John Mincer, Randal Walters
  • Patent number: 7515088
    Abstract: A method of detecting weather on an aircraft uses a weather radar system. The method includes determining a classification of weather and automatically adjusting the weather radar system in response to the classification of the weather. The classification of the weather can relate to weather type and maturity levels.
    Type: Grant
    Filed: September 27, 2006
    Date of Patent: April 7, 2009
    Assignee: Rockwell Collins, Inc.
    Inventors: Daniel L. Woodell, Roy E. Robertson
  • Patent number: 7515094
    Abstract: An apparatus for measuring at least one of unintentional and intentional electromagnetic emissions for at least one of enabling electromagnetic location of predetermined electronic equipment giving off such at least one of such unintentional and intentional electromagnetic emissions, tagging such predetermined electronic equipment and tracking such predetermined electronic equipment and various combination thereof. The apparatus comprises an emitter mechanism for providing an amplified electromagnetic energy which at least one of amplifies and changes a frequency content of the at least one of such unintentional and intentional electromagnetic emissions signature of a targeted electronic device by using an applied electromagnetic field generated by the emitter mechanism. There is a receiver for receiving the at least one of such unintentional and intentional electromagnetic emissions signature of such targeted electronic device.
    Type: Grant
    Filed: October 18, 2005
    Date of Patent: April 7, 2009
    Assignee: Nokomis, Inc.
    Inventor: Walter J. Keller, III
  • Patent number: 7511654
    Abstract: Systems, methods, and devices for detecting land mines and unexploded ordnance are disclosed. A first embodiment may be construed as a method that includes: inserting an antenna into the ground; transmitting an electromagnetic signal into the ground via the antenna; receiving a response via the antenna; and processing the response to generate an image which can be examined to determine whether a mine exists within proximity of the antenna.
    Type: Grant
    Filed: January 12, 2006
    Date of Patent: March 31, 2009
    Assignee: The United States of America as represented by the Secretary of the Army
    Inventors: Geoffrey H. Goldman, Marc A. Ressler