Abstract:
Method, system and process for receiving, processing and transmitting signals, including the steps of: receiving a Global Positioning System (GPS) signal for generating from said signal a processed location finder signal and processing and filtering an input signal into a processed and filtered code division multiple access (CDMA) processed cross-correlated filtered in-phase and quadrature-phase signal used in a mobile cellular system and processing a second input signal into orthogonal frequency multiplexed (OFDM) processed in-phase and quadrature-phase signal used in an internet network, wherein said cellular system and said internet network are distinct. Processing of input signal into time division multiple access (TDMA) processed filtered signal.
Abstract:
Wired and mobile cascaded communication systems and processors used in wired and wireless local area network (WLAN) and mobile systems with touch screen generated communication and control signal and position finding signals. Systems with distinct modulators for wired, WLAN and mobile systems operated in separate network and systems. The WLAN includes use of orthogonal frequency division multiplexed (OFDM) signal, the mobile communication system includes use of time division multiple access (TDMA) signal and Code Division Multiple Access (CDMA) signal. Cascaded communication system includes receiving, processing and transmitting a Bluetooth signal. Communication system and WLAN has non-linearly amplified amplifier and linearly amplified amplifier for signal amplification and transmission and non-quadrature modulator and a quadrature modulator. Quadrature modulator is used for modulation of TDMA or CDMA filtered cross-correlated in-phase and quadrature-phase baseband signals. Position finding with processor for processing and providing processed location finding signals received from multiple GPS satellites and processed location finding signals received from land based cellular transmitters.
Abstract:
The problem of simpler user operation of a Multiple Input Multiple Output (MIMO) wireless communication system is solved by a system and method having touch screen operation, which does not require the use of push buttons. A processed location finder signal received from two or more Global Positioning System (GPS) satellite transmitters and from two or more land based transmitters, received in different radio frequency bands is further processed into cross-correlated in-phase and quadrature-phase time division multiple access (TDMA) baseband signal. A signal is processed into a Code Division Multiple Access (CDMA) and an orthogonal frequency division multiplexed (OFDM) signal and into a cross-correlated in-phase and quadrature-phase CDMA signal, wherein the TDMA and CDMA signal is used in a cellular system and the OFDM signal in a wireless system and the cellular system and the wireless system are distinct systems. The modulator comprises a non-quadrature modulator and a distinct quadrature modulator. Multiple transmitters include a first transmit amplifier operated in a first radio frequency (RF) band in a linearly amplified (LINA) mode and a second transmit amplifier operated in a second radio frequency (RF) band with second amplifier operated in a non-linearly amplified (NLA) mode. The system includes a receiver and demodulator for receiving and demodulating a transmitted signal, wherein the receiver includes an antenna array of four or more antennas for receiving a transmitted signal.
Abstract:
A Global Positioning System (GPS), a touch screen generated signal, a first Orthogonal Frequency Division Multiplexed (OFDM) signal, a first Code Division Multiple Access (CDMA) signal and a first Time Division Multiple Access (TDMA) signal is received by two or more antennas and is processed into processed GPS, touch screen, OFDM, CDMA and TDMA signal and is provided to a subscriber unit-interface circuitry. The processed CDMA signal is a cross-correlated in-phase and quadrature-phase baseband signal. One or more of the processed GPS, touch screen, first OFDM, first CDMA or first TDMA baseband signal is provided for cascade processing, modulation and transmission into a second OFDM, second CDMA or second TDMA signal, wherein the second signal is distinct from the first signal. The transmitter has two or more antennas for transmission and linearly and a non-linearly amplified amplifier for linear and for non-linear amplification of modulated signals.
Abstract:
Method and process for receiving, demodulating, equalizing and processing of Modulation Demodulation Format Selectable (MFS) received signal, received from two or more than two antennas and from diversity receivers. Baseband processing filtering and adaptively equalizing demodulated signals and providing filtered equalized burst operated Time Division Multiplexed (TDM) cross-correlated in-phase and quadrature phase signal, spread spectrum Code Division Multiple Access (CDMA) signal and Orthogonal Frequency Division Multiplexed (OFDM) signals. Demodulation of peak limited cross-correlated OFDM signals. Demodulation and adaptive equalization of receive filtered signal, wherein the received filtered signal is mis-matched to transmit filtered signal. Process for receiving and demodulating MFS signals received from modulated linearly amplified and transmit filtered modulated non-linearly amplified (NLA) signal transmitters. Demodulation and processing of cross-correlated TDM, spread, spectrum and OFDM signals.
Abstract:
Voice over Internet Protocol (VoIP) voice signal processed into Orthogonal Frequency Division Multiplexed (OFDM) or Orthogonal Frequency Division Multiple Access (OFDMA) signal. Processor and transmit filter for processing and filtering a signal and for providing a Time Division Multiple Access (TDMA) signal. Processing and filtering a signal and providing cross-correlated in-phase and quadrature-phase filtered baseband signal. Modulator and a transmitter for modulation and transmission of selected or combined signal. A two antenna receiver for receiving transmitted signal, a demodulator, receiver filter and receiver processor for demodulation, filtering and processing of received TDMA signal. Receive filter for filtering of the TDMA signal is mismatched to the transmit filter for filtering of the TDMA signal and receive processor for processing provides processed received baseband mis-match filtered cross-correlated in-phase and quadrature-phase TDMA signal. Processor and transmit baseband filter for processing and filtering a signal and for providing cross-correlated in-phase and quadrature-phase filtered baseband signal including a location finder signal. VoIP multimode Wireless Local Area Network (WLAN), wireless fidelity (Wi-Fi), Global Mobile System (GSM) cellular network, spread spectrum and CDMA systems. Transmitter operated as a linearly amplified or linearized amplifier transmitter and a second transmitter operated as a Non-Linearly Amplified (NLA) transmitter.
Abstract:
Voice and location finder Analog to digital (A/D) converted signal is processed and provided to Orthogonal Frequency Division Multiplexed (OFDM), Orthogonal Frequency Division Multiple Access (OFDMA), Time Division Multiple Access (TDMA), Global Mobile System (GSM), spread spectrum and Wideband Code Division Multiple Access (WCDMA) baseband processor, filter, modulation format selectable modulator and transmitter. Receiver and modulation format selectable demodulator for location finder satellite and ground based location finder, Wireless Local Area Network (WLAN), wireless fidelity (Wi-Fi), world wide web (www) and cellular network provided signals. Modulator and a transmitter for modulation and transmission of selected or combined signal having two distinct transmitters operated in separate radio frequency (RF) bands. Receiver with two antennas for receiving transmitted signal, a demodulator, receive filter and receiver processor for demodulation, filtering and processing of received TDMA signal. Receive filter for filtering of the TDMA signal is mismatched to the transmit TDMA baseband filter. Receive processor provides received baseband mis-match filtered cross-correlated in-phase and quadrature-phase TDMA signal.
Abstract:
Cross-Correlated Time Division Multiple Access (TDMA), Spread Spectrum, Code Division Multiple Access (CDMA) and Orthogonal Frequency Division Multiplexed (OFDM) modulated OFDM receiver and demodulator systems. Receiver for receiving a Time Division Multiple Access (TDMA) modulated signal having a first modulation format and a second modulated signal having a second modulation format and demodulator, filter and processor for demodulating, filtering and processing the received TDMA modulated signal and for filtered, processed cross-correlated in-phase and quadrature-phase baseband signals and demodulating the second modulated signal providing a demodulated baseband signal. A demodulator system containing two demodulators for demodulating the received signal. Receiver for receiving a Time Division Multiple Access (TDMA) and a Orthogonal Frequency Division Multiplexed (OFDM) modulated signal. A demodulator, filter and processor for demodulating, filtering and processing the received TDMA modulated signal and for providing demodulated filtered, processed TDMA cross-correlated in-phase and quadrature-phase baseband signals and demodulating the spread spectrum modulated signal and providing a demodulated filtered spread spectrum signal.
Abstract:
A position finder and communication system processes signals received from multiple satellite and land based locations and generates processed position finder signal. A first cross-correlator and a transmit baseband filter generates cross-correlated in-phase and quadrature-phase processed filtered baseband signals from an input signal and a second cross-correlator generates cross-correlated in-phase and quadrature-phase processed spread spectrum signals. A processor processes data, voice or video signal into Orthogonal Frequency Division Multiplexed (OFDM) or into Orthogonal Frequency Division Multiple Access (OFDMA) processed data, voice or video signal. The processed position finder signal is further processed jointly with one or more of the signals generated by the first or second processed cross-correlated signal or with the processed OFDM or OFDMA signal and the jointly processed signal is provided to a quadrature modulator for quadrature modulation and transmission of the quadrature modulated signal. The transmitter for transmission of the quadrature modulated signal includes a first amplifier operated in a first radio frequency (RF) band in a linearly amplified (LINA) mode and a second amplifier operated in a second radio frequency (RF) band operated in a non-linearly amplified (NLA) mode. The cross-correlated in-phase and quadrature-phase processed filtered baseband signals and cross-correlated in-phase and quadrature-phase processed spread spectrum signals are used in a cellular communication system and the OFDM or OFDMA signal is used in a wireless local area network, wherein the cellular communication system and wireless local area network are distinct communication systems and networks.
Abstract:
The problem of being able to use in a practical way a single communication and remote control device, instead of requiring the use of multiple communication and multiple remote control devices for communication and automobile door opener and or ignition starters, is solved by this invention. A wireless signal is transmitted by cellular transmission, received and processed in an automobile for control of a door lock or control of ignition. Processed location finder, touch screen, time division multiple access (TDMA), Code Division Multiple Access (CDMA), orthogonal frequency division multiplex (OFDM) signals are provided for wireless transmission. Location finder Global Positioning System (GPS) signal and non GPS signals are received and processed. In addition to cellular system components, wireless local area networks (WLAN) and/or other wideband/broadband network devices, such as orthogonal frequency division multiplex (OFDM) transmitters and receivers are incorporated into the cellular devices. Radio Frequency Identification (RFID) devices are used in conjunction with Multiple Input Multiple Output (MIMO) communications systems. Signal transmitters include cross-correlated in-phase and quadrature phase quadrature modulated signals and also non-quadrature polar modulated signal transmitters and diversity transceivers.