IPCM- Movable Satellite: Intelligent Propagation Impairments for Movable Satellite Communication Links at The Microwave Frequencies in Location

Our Invention "IPCM- Movable Satellite: is an intelligent propagation impairment for Movable Satellite Communication Links at the Microwave Frequencies in Location" is a method of determining communication link quality includes the steps of providing communications stations and VHF/UHF Sof...

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Hauptverfasser: Balakrishna, R, Manoj, Sumitha, Patil, Shamshekar, Vijayanand, S, Narayan, Sougandhika, Mohan Reddy, Ch. Ram, Ananda Kumar, K. S, A. Y., Prasad, Madhavi D., Sai
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creator Balakrishna, R
Manoj, Sumitha
Patil, Shamshekar
Vijayanand, S
Narayan, Sougandhika
Mohan Reddy, Ch. Ram
Ananda Kumar, K. S
A. Y., Prasad
Madhavi D., Sai
description Our Invention "IPCM- Movable Satellite: is an intelligent propagation impairment for Movable Satellite Communication Links at the Microwave Frequencies in Location" is a method of determining communication link quality includes the steps of providing communications stations and VHF/UHF Software Communications Satellites, base stations of a terrestrial cellular network with beacon transmitters that are used to transmit two types of signals from each communications station and providing a communications device that employs the communications stations with beacon receivers and the ability to process the two types of signals to provide a user of the communications device with a real time determination of link impairments and, from this, a determination of the type and quality of service that is available to the user. The invented technology also a multiple ground station and one or more satellites for communicating between mobile subscribers and a land-based communications network, such as the global/PSTN or the Internet. The multiple ground stations geographically dispersed minimize tool charges incurred routing calls from a mobile subscriber through the land network by reducing the need for long-distance calling. The station communicates with a given satellite using the same frequency spectrum, the subscriber capacity of the system increases and/or bandwidth requirements for the communications link between ground stations and satellites may be as per user required they can have reduced. The ground-based beam forming techniques enabling each satellite to transmit signal in multiple transmission beams, each beam supporting one or more mobile subscribers. Each beam may reuse the same frequency spectrum, thereby increasing the number of subscribers supported by each satellite. Multiple ground stations cooperatively relay signals through a given satellite in a manner complementary with ground-based beam forming. A low profile mobile in-motion antenna and transmit/receive terminal system for two-way "VSAT" type satellite communication using FSS service, preferably in Ku band, supporting at the same time TV signal reception from the same satellite or a separate DBS satellite located at the same or nearby geo-stationary orbital position.The "IPCM- Movable Satellite" first type of signal is a stable continuous wave tone that provides a reference signal level and the second type of signal is a coded waveform with distinguishable correlation properties and also the inv
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The invented technology also a multiple ground station and one or more satellites for communicating between mobile subscribers and a land-based communications network, such as the global/PSTN or the Internet. The multiple ground stations geographically dispersed minimize tool charges incurred routing calls from a mobile subscriber through the land network by reducing the need for long-distance calling. The station communicates with a given satellite using the same frequency spectrum, the subscriber capacity of the system increases and/or bandwidth requirements for the communications link between ground stations and satellites may be as per user required they can have reduced. The ground-based beam forming techniques enabling each satellite to transmit signal in multiple transmission beams, each beam supporting one or more mobile subscribers. Each beam may reuse the same frequency spectrum, thereby increasing the number of subscribers supported by each satellite. Multiple ground stations cooperatively relay signals through a given satellite in a manner complementary with ground-based beam forming. A low profile mobile in-motion antenna and transmit/receive terminal system for two-way "VSAT" type satellite communication using FSS service, preferably in Ku band, supporting at the same time TV signal reception from the same satellite or a separate DBS satellite located at the same or nearby geo-stationary orbital position.The "IPCM- Movable Satellite" first type of signal is a stable continuous wave tone that provides a reference signal level and the second type of signal is a coded waveform with distinguishable correlation properties and also the invented technology a processor and display are integrated with the user's communication device and function to process these two signals and provide a user-friendly interface through which information pertaining to determined levels of link impairments and the type and quality of service available at that given location and time is communicated to the user. 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The invented technology also a multiple ground station and one or more satellites for communicating between mobile subscribers and a land-based communications network, such as the global/PSTN or the Internet. The multiple ground stations geographically dispersed minimize tool charges incurred routing calls from a mobile subscriber through the land network by reducing the need for long-distance calling. The station communicates with a given satellite using the same frequency spectrum, the subscriber capacity of the system increases and/or bandwidth requirements for the communications link between ground stations and satellites may be as per user required they can have reduced. The ground-based beam forming techniques enabling each satellite to transmit signal in multiple transmission beams, each beam supporting one or more mobile subscribers. Each beam may reuse the same frequency spectrum, thereby increasing the number of subscribers supported by each satellite. Multiple ground stations cooperatively relay signals through a given satellite in a manner complementary with ground-based beam forming. A low profile mobile in-motion antenna and transmit/receive terminal system for two-way "VSAT" type satellite communication using FSS service, preferably in Ku band, supporting at the same time TV signal reception from the same satellite or a separate DBS satellite located at the same or nearby geo-stationary orbital position.The "IPCM- Movable Satellite" first type of signal is a stable continuous wave tone that provides a reference signal level and the second type of signal is a coded waveform with distinguishable correlation properties and also the invented technology a processor and display are integrated with the user's communication device and function to process these two signals and provide a user-friendly interface through which information pertaining to determined levels of link impairments and the type and quality of service available at that given location and time is communicated to the user. 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Y., Prasad</creatorcontrib><creatorcontrib>Madhavi D., Sai</creatorcontrib><collection>esp@cenet</collection></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext_linktorsrc</fulltext></delivery><addata><au>Balakrishna, R</au><au>Manoj, Sumitha</au><au>Patil, Shamshekar</au><au>Vijayanand, S</au><au>Narayan, Sougandhika</au><au>Mohan Reddy, Ch. Ram</au><au>Ananda Kumar, K. S</au><au>A. Y., Prasad</au><au>Madhavi D., Sai</au><format>patent</format><genre>patent</genre><ristype>GEN</ristype><title>IPCM- Movable Satellite: Intelligent Propagation Impairments for Movable Satellite Communication Links at The Microwave Frequencies in Location</title><date>2020-12-10</date><risdate>2020</risdate><abstract>Our Invention "IPCM- Movable Satellite: is an intelligent propagation impairment for Movable Satellite Communication Links at the Microwave Frequencies in Location" is a method of determining communication link quality includes the steps of providing communications stations and VHF/UHF Software Communications Satellites, base stations of a terrestrial cellular network with beacon transmitters that are used to transmit two types of signals from each communications station and providing a communications device that employs the communications stations with beacon receivers and the ability to process the two types of signals to provide a user of the communications device with a real time determination of link impairments and, from this, a determination of the type and quality of service that is available to the user. The invented technology also a multiple ground station and one or more satellites for communicating between mobile subscribers and a land-based communications network, such as the global/PSTN or the Internet. The multiple ground stations geographically dispersed minimize tool charges incurred routing calls from a mobile subscriber through the land network by reducing the need for long-distance calling. The station communicates with a given satellite using the same frequency spectrum, the subscriber capacity of the system increases and/or bandwidth requirements for the communications link between ground stations and satellites may be as per user required they can have reduced. The ground-based beam forming techniques enabling each satellite to transmit signal in multiple transmission beams, each beam supporting one or more mobile subscribers. Each beam may reuse the same frequency spectrum, thereby increasing the number of subscribers supported by each satellite. Multiple ground stations cooperatively relay signals through a given satellite in a manner complementary with ground-based beam forming. A low profile mobile in-motion antenna and transmit/receive terminal system for two-way "VSAT" type satellite communication using FSS service, preferably in Ku band, supporting at the same time TV signal reception from the same satellite or a separate DBS satellite located at the same or nearby geo-stationary orbital position.The "IPCM- Movable Satellite" first type of signal is a stable continuous wave tone that provides a reference signal level and the second type of signal is a coded waveform with distinguishable correlation properties and also the invented technology a processor and display are integrated with the user's communication device and function to process these two signals and provide a user-friendly interface through which information pertaining to determined levels of link impairments and the type and quality of service available at that given location and time is communicated to the user. The user's communication device is also provided with a booster system with an alternative high-gain antenna to increase communications opportunities in difficult operating environments. noe ELECTRONICS 806 PACViAGE -4TERMINAL FIG.8: SHOWS AN EXEMPLARY BOOSTER/HIGH-POWERED ANTENNA ASSEMBLY. 800 ANTENNA ELEMENTS STORED IN TUNE 810Ob ELECTRONICS FOLDED TRIPOD FIG. 9: IS AN EXEMPLARY EMBODIMENT OF THE BOO STER/HI GH -POWERED ANTENNA ASSEMBLY IN A DISASSEMBLED CONFIGURATION WITH ELEMENTS OF THE ANTENNA COLLAPSED AND SEPARATELY FITTED INTO STORAGE CONTAINERS.</abstract><oa>free_for_read</oa></addata></record>
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ELECTRICITY
TRANSMISSION
title IPCM- Movable Satellite: Intelligent Propagation Impairments for Movable Satellite Communication Links at The Microwave Frequencies in Location
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