H04B1/7093

MODIFIED INTERFACE CIRCUIT WITH ENHANCED COMMUNICATION PERFORMANCE
20220110016 · 2022-04-07 · ·

An electronic device (such as an access point) is described. This electronic device includes an interface circuit that wirelessly communicates with a second electronic device (such as another access point or a client or station that is associated with the access point), where the interface circuit is compatible with an existing IEEE 802.11 standard having a predefined maximum bandwidth or a corresponding predefined maximum sampling rate. During operation, the interface circuit may communicate with the second electronic device using a bandwidth or a corresponding sampling rate that exceeds the predefined maximum bandwidth or the predefined maximum sampling rate, where the bandwidth or the sampling rate is used in a physical layer and a media access control (MAC) layer of the interface circuit, and where a filter bandwidth of a filter in the interface circuit (such as an analog filter) is modified to accommodate the bandwidth or the sampling rate.

MODIFIED INTERFACE CIRCUIT WITH ENHANCED COMMUNICATION PERFORMANCE
20220110016 · 2022-04-07 · ·

An electronic device (such as an access point) is described. This electronic device includes an interface circuit that wirelessly communicates with a second electronic device (such as another access point or a client or station that is associated with the access point), where the interface circuit is compatible with an existing IEEE 802.11 standard having a predefined maximum bandwidth or a corresponding predefined maximum sampling rate. During operation, the interface circuit may communicate with the second electronic device using a bandwidth or a corresponding sampling rate that exceeds the predefined maximum bandwidth or the predefined maximum sampling rate, where the bandwidth or the sampling rate is used in a physical layer and a media access control (MAC) layer of the interface circuit, and where a filter bandwidth of a filter in the interface circuit (such as an analog filter) is modified to accommodate the bandwidth or the sampling rate.

M-ary differential chaos shift keying method based on chaotic shape-forming filter

The present disclosure discloses an M-ary DCSK method based on chaotic shape-forming filtering. The method includes the following steps: at S1, parameters of a communication system are set; at S2, HP information and LP information to be sent in each time slot are prepared; at S3, the information to be sent is modulated; at S4, a chaotic carrier is generated through a chaotic shape-forming filter; at S5, a transmitted signal is prepared; at S6, down-carrier frequency and matched filter is performed to a received signal; at S7, the sampling of a maximum SNR point is performed to an output signal of a matched filter; at S8, the decision of high priority information bits is resumed; and at S9, the decision of low priority information bits is resumed.

M-ary differential chaos shift keying method based on chaotic shape-forming filter

The present disclosure discloses an M-ary DCSK method based on chaotic shape-forming filtering. The method includes the following steps: at S1, parameters of a communication system are set; at S2, HP information and LP information to be sent in each time slot are prepared; at S3, the information to be sent is modulated; at S4, a chaotic carrier is generated through a chaotic shape-forming filter; at S5, a transmitted signal is prepared; at S6, down-carrier frequency and matched filter is performed to a received signal; at S7, the sampling of a maximum SNR point is performed to an output signal of a matched filter; at S8, the decision of high priority information bits is resumed; and at S9, the decision of low priority information bits is resumed.

Method for receiving an image signal and method for transmitting an image signal
11108615 · 2021-08-31 · ·

In accordance with an embodiment of the present invention, a method for receiving a signal, comprising the estimation step for estimating time and frequency shifts that are embedded in the received signal, to cancel-out shifts, wherein the method refers to the non-commutative shift parameter space of co-dimension 2.

Method for receiving an image signal and method for transmitting an image signal
11108615 · 2021-08-31 · ·

In accordance with an embodiment of the present invention, a method for receiving a signal, comprising the estimation step for estimating time and frequency shifts that are embedded in the received signal, to cancel-out shifts, wherein the method refers to the non-commutative shift parameter space of co-dimension 2.

Circuits for continuous-time clockless analog correlators

Circuits for continuous-time analog correlators are provided, comprising: a first VCO that receives an input signal and that outputs a first pulse frequency modulated (PFM) output signal; a second VCO that receives a reference signal and that outputs a second PFM output signal; a first phase frequency detector (PFD) that receives the first PFM output signal and the second PFM output signal and that produces a first PFD output signal; a first delay cell that receives the first PFM output signal and that produces a first delayed signal (DS); a second delay cell that receives the second PFM output signal and that produces a second DS; a second PFD that receives the first DS and the second DS and that produces a second PFD output signal; and a capacitor-digital-to-analog converter (capacitor-DAC) that receives the first PFD output signal and the second PFD output signal and that produces a correlator output.

Reconfigurable Filter Based on Commutation of Single Frequency Resonators
20210203049 · 2021-07-01 ·

Adaptive RF filters based on modulated resonators are provided. The filter architecture is based on time-interleaved commutation of passive RF resonators. The architecture can behave as a two-port filter network, with a fully tunable instantaneous filter bandwidth. The filters are applicable as miniaturized, environment-aware RF signal processing components and can be used in mobile communications.

Reconfigurable Filter Based on Commutation of Single Frequency Resonators
20210203049 · 2021-07-01 ·

Adaptive RF filters based on modulated resonators are provided. The filter architecture is based on time-interleaved commutation of passive RF resonators. The architecture can behave as a two-port filter network, with a fully tunable instantaneous filter bandwidth. The filters are applicable as miniaturized, environment-aware RF signal processing components and can be used in mobile communications.

ANTENNA SYSTEM AND BASE STATION
20210167804 · 2021-06-03 ·

This application provides an antenna system and a base station. The antenna system includes a radiation array, a transceiver (TRX) unit, and a filter bank. The radiation array includes a transmit antenna element group and a receive antenna element group that are separately disposed. The transmit antenna element group is configured to transmit a signal, and the receive antenna element group is configured to receive a signal. The TRX unit includes a transmit module and a receive module. The filter bank includes a first-type filter and a second-type filter. The first-type filter is connected between the transmit antenna element group and the transmit module, and the second-type filter is connected between the receive antenna element group and the receive module. The antenna system in this application can reduce interference between a passive intermodulation (PIM) signal generated by a transmitted signal and a received signal.