Patents by Inventor Angelo Poloni
Angelo Poloni 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).
-
Patent number: 12155740Abstract: A communication circuit supports a first communication protocol and a second communication protocol that is different from the first communication protocol. A number of signals include first signals conveying first information messages and second signals conveying second information messages. The first information messages include a repetitive message having fixed repeated content and the second information messages include a non-repetitive message having variable content. The first signals and the second signals are transmitted via the communication circuit using the first communication protocol for the first signals and the second communication protocol for the second signals.Type: GrantFiled: January 10, 2024Date of Patent: November 26, 2024Assignee: STMicroelectronics S.r.l.Inventors: Lorenzo Guerrieri, Angelo Poloni, Edoardo Lauri
-
Publication number: 20240163353Abstract: A communication circuit supports a first communication protocol and a second communication protocol that is different from the first communication protocol. A number of signals include first signals conveying first information messages and second signals conveying second information messages. The first information messages include a repetitive message having fixed repeated content and the second information messages include a non-repetitive message having variable content. The first signals and the second signals are transmitted via the communication circuit using the first communication protocol for the first signals and the second communication protocol for the second signals.Type: ApplicationFiled: January 10, 2024Publication date: May 16, 2024Inventors: Lorenzo Guerrieri, Angelo Poloni, Edoardo Lauri
-
Patent number: 11909849Abstract: A communication circuit supports a first communication protocol and a second communication protocol that is different from the first communication protocol. A number of signals include first signals conveying first information messages and second signals conveying second information messages. The first information messages include a repetitive message having fixed repeated content and the second information messages include a non-repetitive message having variable content. The first signals and the second signals are transmitted via the communication circuit using the first communication protocol for the first signals and the second communication protocol for the second signals.Type: GrantFiled: August 30, 2019Date of Patent: February 20, 2024Assignee: STMicroelectronics S.r.l.Inventors: Lorenzo Guerrieri, Angelo Poloni, Edoardo Lauri
-
Publication number: 20200084301Abstract: A communication circuit supports a first communication protocol and a second communication protocol that is different from the first communication protocol. A number of signals include first signals conveying first information messages and second signals conveying second information messages. The first information messages include a repetitive message having fixed repeated content and the second information messages include a non-repetitive message having variable content. The first signals and the second signals are transmitted via the communication circuit using the first communication protocol for the first signals and the second communication protocol for the second signals.Type: ApplicationFiled: August 30, 2019Publication date: March 12, 2020Inventors: Lorenzo Guerrieri, Angelo Poloni, Edoardo Lauri
-
Patent number: 10333538Abstract: The present disclosure is directed to a method and system for compensating mismatches among sub-converters in a time interleaved analog digital converter structure. A digital finite impulse response (FIR) equalization filtering unit is coupled to outputs of the sub-converters. The FIR filtering unit includes a digital FIR filter dedicated to each sub-converter. The FIR filtering coefficient is adapted specifically for each sub-converter to achieve a compensation for sub-converter mismatches and inter-symbol interference (ISI) equalization.Type: GrantFiled: June 8, 2018Date of Patent: June 25, 2019Assignee: STMICROELECTRONICS S.R.L.Inventors: Stefano Valle, Edoardo Lauri, Angelo Poloni
-
Patent number: 8675756Abstract: A method for identifying a corrupted received signal that includes symbols is described. Each symbol may have a value of a Galois field associated therewith. The receiver may be configured to store a logarithm of normalized probability mass functions and corresponding Galois field values for each of the symbols. The normalized probability mass functions may be normalized with respect to a greatest probability mass function of a given symbol. The method may include comparing, for each symbol, a logarithm of normalized probability of an n-th best probability value with a respective threshold, counting a number of the logarithms that exceed the respective threshold and generating, for each symbol, a score corresponding to the number. The method may also include calculating a moving average of the scores, and comparing the moving average with an output threshold and flagging a just received symbol as corrupted based upon the comparison.Type: GrantFiled: July 25, 2011Date of Patent: March 18, 2014Assignee: STMicroelectronics S.R.L.Inventors: Angelo Poloni, Stefano Valle, Stefano Vincenti
-
Patent number: 8543889Abstract: A method is for generating, for each check node related to a parity check equation of a LDPC code, signals representing a first output table of corrected values of symbols of a word received through a communication channel and transmitted according to the LDPC code, and signals representing a second output table of the logarithm of the ratio between the respective probability of correctness of the values of same coordinates in the first output table and their corresponding maximum probability of correctness. The method is implemented by processing the components of a first input table of values of a Galois Field of symbols that may have been transmitted and of a second input table of corresponding probability of correctness of each value.Type: GrantFiled: June 29, 2011Date of Patent: September 24, 2013Assignee: STMicroelectronics S.r.l.Inventors: Mauro Natuzzi, Angelo Poloni, Stefano Valle
-
Publication number: 20120020400Abstract: A method for identifying a corrupted received signal at a receiver is described. A received signal may include symbols. Each symbol may have a value of a Galois field associated therewith. The receiver may be configured to store a logarithm of normalized probability mass functions and corresponding Galois field values for each of the plurality of symbols. The normalized probability mass functions may be normalized with respect to a greatest probability mass function of a given symbol of the plurality of symbols. The method may include comparing, for each of the plurality of symbols, a logarithm of normalized probability of an n-th best probability value with a respective threshold, counting a number of the logarithms that exceed the respective threshold and generating, for each of the plurality of symbols, a score corresponding to the number.Type: ApplicationFiled: July 25, 2011Publication date: January 26, 2012Applicant: STMicroelectronics S.r.I.Inventors: Angelo POLONI, Stefano Valle, Stefano Vincenti
-
Publication number: 20110320916Abstract: A method is for generating, for each check node related to a parity check equation of a LDPC code, signals representing a first output table of corrected values of symbols of a word received through a communication channel and transmitted according to the LDPC code, and signals representing a second output table of the logarithm of the ratio between the respective probability of correctness of the values of same coordinates in the first output table and their corresponding maximum probability of correctness. The method is implemented by processing the components of a first input table of values of a Galois Field of symbols that may have been transmitted and of a second input table of corresponding probability of correctness of each value.Type: ApplicationFiled: June 29, 2011Publication date: December 29, 2011Applicant: STMicroelectronics S.r.l.Inventors: Mauro NATUZZI, Angelo POLONI, Stefano VALLE
-
Patent number: 7953379Abstract: A calibration method for reducing modulation errors in a telecommunication transmitter apparatus includes providing a plurality of pairs of test signals; the test signals of each pair are substantially in quadrature to each other, and the pairs of test signals are at least in part different with all the pairs of test signals that have a substantially equal energy. A plurality of modulated signals are generated, with each modulated signal that is generated by modulating a corresponding pair of test signals. A plurality of transformed signals are calculated, each one corresponding to the square of a corresponding modulated signal in the frequency domain. A plurality of partial error indicators are calculated, each one as a function of the modulus of a corresponding transformed signal. The partial error indicators are indicative of the modulation errors associated with the modulated signals.Type: GrantFiled: February 29, 2008Date of Patent: May 31, 2011Assignee: STMicroelectronics, S.r.l.Inventor: Angelo Poloni
-
Patent number: 7925228Abstract: A calibration method and system for reducing modulation errors in a telecommunication transmitter apparatus includes providing a pair of test signals, which are substantially in quadrature to each other, and to repeat an estimation loop. The estimation loop starts with generating a modulated signal by modulating the test signals (the modulation introducing a modulation error) and continues by obtaining a squared signal corresponding to the square of the modulated signal. A transformed signal corresponding to the squared signal in the frequency domain is then calculated. The estimation loop further includes calculating an error indicator, indicative of the modulation error, according to the modulus of the transformed signal. A compensation, to be applied to the test signals for counterbalancing the modulation error, is calculated according to the error indicator and is then applied to the test signals.Type: GrantFiled: February 29, 2008Date of Patent: April 12, 2011Assignee: STMicroelectronics, S.r.l.Inventors: Angelo Poloni, Stefano Valle
-
Patent number: 7769113Abstract: In order to execute, as a function of a received signal (r), a procedure of channel estimation in a transmission channel with memory in a telecommunications system, there is envisaged an operation of estimation of a delay spread associated to said channel, said operation of estimation comprising calculation of a root mean square value (?rms) of delay spread by means of a step of evaluation of crossings with a threshold level of a quantity associated to a transfer function of said channel. Said step of evaluation of crossings comprises evaluating a mean number of crossings (?0) of the real and imaginary parts of said channel transfer function with a threshold level corresponding to the zero level. Example application is to OFDM telecommunications systems and in particular wireless systems according to the IEEE 802.11a WLAN standard or the HyperlanII WLAN standard.Type: GrantFiled: December 20, 2005Date of Patent: August 3, 2010Assignee: STMicroelectronics S.r.l.Inventors: Angelo Poloni, Filippo Silva, Stefano Valle
-
Publication number: 20090221246Abstract: A calibration method and system for reducing modulation errors in a telecommunication transmitter apparatus includes providing a pair of test signals, which are substantially in quadrature to each other, and to repeat an estimation loop. The estimation loop starts with generating a modulated signal by modulating the test signals (the modulation introducing a modulation error) and continues by obtaining a squared signal corresponding to the square of the modulated signal. A transformed signal corresponding to the squared signal in the frequency domain is then calculated. The estimation loop further includes calculating an error indicator, indicative of the modulation error, according to the modulus of the transformed signal. A compensation, to be applied to the test signals for counterbalancing the modulation error, is calculated according to the error indicator and is then applied to the test signals.Type: ApplicationFiled: February 29, 2008Publication date: September 3, 2009Applicant: STMICROELECTRONICS S.R.L.Inventors: Angelo POLONI, Stefano VALLE
-
Publication number: 20090221247Abstract: A calibration method for reducing modulation errors in a telecommunication transmitter apparatus includes providing a plurality of pairs of test signals; the test signals of each pair are substantially in quadrature to each other, and the pairs of test signals are at least in part different with all the pairs of test signals that have a substantially equal energy. A plurality of modulated signals are generated, with each modulated signal that is generated by modulating a corresponding pair of test signals. A plurality of transformed signals are calculated, each one corresponding to the square of a corresponding modulated signal in the frequency domain. A plurality of partial error indicators are calculated, each one as a function of the modulus of a corresponding transformed signal. The partial error indicators are indicative of the modulation errors associated with the modulated signals.Type: ApplicationFiled: February 29, 2008Publication date: September 3, 2009Applicant: STMICROELECTRONICS S.R.L.Inventor: Angelo Poloni
-
Publication number: 20060159203Abstract: In order to execute, as a function of a received signal (r), a procedure of channel estimation in a transmission channel with memory in a telecommunications system, there is envisaged an operation of estimation of a delay spread associated to said channel, said operation of estimation comprising calculation of a root mean square value (?rms) of delay spread by means of a step of evaluation of crossings with a threshold level of a quantity associated to a transfer function of said channel. Said step of evaluation of crossings comprises evaluating a mean number of crossings (?0) of the real and imaginary parts of said channel transfer function with a threshold level corresponding to the zero level. Example application is to OFDM telecommunications systems and in particular wireless systems according to the IEEE 802.11a WLAN standard or the Hyperlanll WLAN standard.Type: ApplicationFiled: December 20, 2005Publication date: July 20, 2006Applicant: STMicroelectronics S.r.lInventors: Angelo Poloni, Filippo Silva, Stefano Valle