- •Федеральное агентство связи
- •канд. филос. наук Логутова М.А.
- •Данное учебное пособие предназначено для студентов технических специальностей первого и второго курсов, а также студентов заочного факультета всех технических специальностей как для аудиторной, так и для самостоятельной работы.
- •Практическое пособие составлено на основе современных аутентичных текстов и статей на английском языке. Статьи взяты из оригинальных источников с учетом их информативности и соответствия научно-техническим достижениям.
- •Оглавление
- •Telegraph
- •Computers
- •Telephone
- •(СибГУТИ)
- •А. В. Фирсова
- •АНГЛИЙСКИЙ ЯЗЫК
- •Reading & Translating Proficiency
- •Учебное пособие
- •Новосибирск
- •Утверждено редакционно-издательским советом СибГУТИ
- •Рецензенты: канд. пед. наук, доцент Фенина Н.Г.
- •Telegraph
- •History of Telegraph
- •Electrical Telegraph
- •Samuel Morse
- •The Birth of the Recording Telegraph
- •Samuel Morse Petitions to Build Telegraph Line
- •Samuel Morse Applies for European Patents
- •Introduction to the Art of Photography
- •Building of the First Telegraph Line
- •First Commercial Telegraph Line
- •Improved Telegraph Mechanism and Code
- •Replacing the Pony Express
- •Before Photography
- •The First Photographers
- •Negative to Positive Process
- •Other Early Processes
- •Flexible Roll Film
- •Photographic Prints
- •Instant Photography
- •Early Cameras
- •Modern Cameras
- •Digital Cameras
- •Flashlights and Flashbulbs
- •Photographic Filters
- •Robotics
- •Robotics Theory and Science Fiction
- •First Robots Emerge
- •Timeline of Computerized Robotics
- •Modern Robotics
- •Electromagnet
- •Invention of the First Electromagnet
- •Improvements on Sturgeon's Invention
- •Sturgeon's Later Life
- •Electromagnetic waves
- •Heinrich Hertz
- •Hertz's Education
- •Hertz's Work and Discoveries
- •What Hertz Missed
- •Other Scientific Interests
- •Honors
- •Electricity and Electronics
- •Humans and electricity
- •Generating electricity
- •Speed of light
- •What Is Light?
- •What Is the Speed of Light?
- •Lightspeed and Gravitational Waves
- •Travel Times for Light
- •Semiconductor
- •Electron Doping
- •History of Semiconductors
- •Transistor
- •Basic Point-Contact Transistor Structure
- •Benefits of Transistors
- •Microchip
- •What Is a Microchip?
- •How Microchips Are Made
- •Uses of the Microchip
- •Jack Kilby and Robert Noyce
- •Integrated Circuit (Microchip)
- •Why the Integrated Circuit Was Needed
- •Patents for the Integrated Circuit
- •Commercial Release
- •Electrical Current
- •Units for Electrical Current
- •Ohm's Law Governing Electrical Current
- •Direct Current
- •Alternating Current
- •CMOS Inverter
- •Lasers
- •Before the Laser
- •The Ruby Laser
- •The Gordon Gould Laser
- •The Gas Laser
- •Hall's Semiconductor Injection Laser
- •Patel's Carbon Dioxide Laser
- •Walker's Laser Telemetry
- •Laser Eye Surgery
- •Best Flashcard Study App: Flashcards+
- •Best Overall Study App: Evernote
- •Best Scanner Study App: Scanner Pro
- •Best Exam Tracking Study App: Exam Countdown Lite
- •Computers
- •The 8 Best Study Apps to Get in 2020
- •Best Free: My Study Life
- •Best Organizational Study App: iStudiez Pro Legend
- •Best Brainstorming Study App: XMind
- •Best Notetaking Study App: Dragon Anywhere
- •History of Computers
- •The Language Before the Hardware
- •The Earliest Processors
- •Dawn of Modern Computers
- •Transitioning Toward Transistors
- •History of Supercomputers
- •When Supercomputers Were Invented
- •Seymour Cray Goes Solo
- •More Computer Designers Emerge
- •Intel Joins the Race
- •History of Tablet Computers
- •One million pixels
- •The early tablets
- •PDAs: when tablets were simpler
- •The first true tablets
- •The iPad gets it right
- •History of Apple Computers
- •The Early Years
- •The Macintosh Computer
- •The iMac and the iPod
- •The iPhone
- •Compact Disk/CD
- •The Floppy Disk
- •The Computer Keyboard
- •The Computer Mouse
- •Printers
- •Computer Memory
- •History of the Computer Keyboard
- •The QWERTY Keyboard
- •Early Breakthroughs
- •Video Display Terminals
- •Electronic Impulses and Hand-Held Devices
- •The Pen Is Not Mightier Than the Keyboard
- •Why Keyboards Persist
- •Thumbs and Voice
- •History of Ethernet
- •Robert Metcalfe and Ethernet
- •Robert Metcalfe Today
- •UMTS (Universal Mobile Telecommunications System)
- •Inside the Technology
- •Global Roaming
- •UMTS (Universal Mobile Telecommunications System) – универсальная мобильная телекоммуникационная система
- •The Modern Smartphone
- •Who Invented Smartphones?
- •PDAs and Cell Phones
- •Smartphone Mania Spreads From East to West
- •Apple’s iPhone
- •Bluetooth Invention
- •The Somewhat Dark Backstory
- •Bluetooth’s Swedish Origins
- •Lack of Competition
- •WiFi
- •What Is WiFi?
- •How Does WiFi Work?
- •Who Invented WiFi?
- •Who Owns the WLAN Patent?
- •Invention of Radio Telegraphy
- •Space Telegraphy
- •Broadcasting Begins
- •Radio Waves
- •Radio Waves in Astronomy
- •Sources of Radio Waves in the Universe
- •Radio Astronomy
- •Radio Interferometry
- •Radio's Relationship to Microwave Radiation
- •Spot Beam
- •Transponder
- •Active Transponders
- •Passive Transponders
- •GPS Jammer
- •Operation of GPS
- •Application of GPS jammers
- •Ku Band
- •Ku Band Difficulties
- •Ku Band Satellite Service Downlink Usage Frequency Range
- •Ku Band Dish Antenna Compatibility
- •Importance of Satellite Antenna Dish Parabola
- •Television
- •TV-GPS Technology
- •Components of a TV-GPS System
- •How the Basic TV-GPS System Works
- •Geostationary Satellite
- •How Television works
- •Main Elements of the TV Process
- •Video Source
- •Transmitter
- •Receiver (TV set)
- •Display Device
- •Sound Device
- •Three Major Ways to Receive TV Signals
- •Broadcast Television
- •Satellite TV
- •Cable TV
- •TV Technology Elements
- •Cathode Ray Tube
- •Color Process
- •How to Create Color
- •Antenna
- •Picture Quality
- •Data routing
- •Censorship
- •Zapps
- •Zoom virtual backgrounds
- •How to use virtual backgrounds on desktop.
- •How to use virtual backgrounds on the mobile app
- •Touch up my appearance
- •Vocabulary:
- •beta version – тестовая версия
- •host conferences – проводить конференции
- •end-to-end encryption
- •АНГЛИЙСКИЙ ЯЗЫК
- •Reading & Translating Proficiency
formance. If they connect in the center of the dish, it is likely that the dish is not warped.
Therefore, use either the tri-supports or quad supports as they will greatly assist in keeping the Ku-band feed horn highly stable, even in high winds.
When the button hook feed moves in the wind, Ku-band reception can easily drop out. By putting guy wires on the button hook feed, the user will create the much needed support in the event that the user is unable to obtain a tri support or quad support.
Vocabulary:
affiliate feeds – партнерские каналы bandwidth – пропускная способность signal degradation – искажение сигнала vulnerable – уязвимый, незащищенный coax cable – коаксиальный кабель mesh dish – сетчатая тарелка
warpage causes – причины деформации backhauls – транзитное соединение frequency spectrum – радиочастотный спектр сompatibility – совместимость
Television
TV-GPS Technology
TV-GPS is a technology from Rosum Corporation of California. Basically, it is a GPS tracking technology that makes use of television broadcasting signals to intensify or strengthen GPS signals. It is slated for use in urban areas where most people own a television (so the TV broadcasting signals are extremely strong) and where the regular GPS monitoring or tracking is rendered ineffectual because of great interference from electromagnetic noise and obstruction from concrete skyscrapers.
Components of a TV-GPS System
A TV-GPS system needs a device with a Rosum TV Measurement Module or RTMM which gives the TV-GPS device the capability to intercept TV signals, process digital signals and store information. There is also a location server which is loaded with an application that can process enormous amounts of data so as to calculate the location of devices with an RTMM chipset
. Furthermore, there are several monitor units that are scattered around and within the area where TV-GPS units will be used. Their main task is to monitor the strength, the frequencies, the timing, and all other information pertaining to TV broadcast signals in the area. Finally, there needs to be a way to communicate information to and from the location server to the TV-GPS components. The Internet, GPRS and SMS (Short Messaging Service) are used for this purpose.
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In a TV-GPS Plus system, a Pseudo-TV Transmitter (PTT) phenomenally strengthens and localizes TV signals for 3-D rendering and precise positioning. This component also performs all functions the monitoring unit provides.
How the Basic TV-GPS System Works
First of all, the monitor unit collects all the information about TV signals within its range. The device gathers information on the channels that are being utilized in the area and the timing of the TV signals. The information is then sent to the location server via the Internet.
The location server then processes the information and sends area-specific TV and digital signal information to the RTMM capable TV-GPS enabled devices. The RTMM in the TV-GPS devices then use the returned data to find the optimal TV channel and signal in the area and performs range calculations. Once this is completed, the TV-GPS devices sends the resulting information back to the location server.
The location server uses RTMM-provided information and GPS satellite input to compute the actual location of the TV-GPS device. After its location has been established, it now sends processed information to the RTMM requesting address or location information to the network or service provider.
TV-GPS has a very large advantage over traditional GPS signaling by using TV broadcast signals.
•These signals are generally more powerful than GPS signals, which means range is greatly increased.
•They also have lower frequencies than GPS signals so they can penetrate concrete structures more easily, which provides the possibility of indoor coverage.
•The frequencies used greatly vary, as there are many broadcast channels.
•The TV-GPS can choose to use the channel with the strongest signal, which means TV-GPS can work almost anywhere in the urban landscape.
•Finally, TV signals have greater bandwidth than plain GPS signals, so more accurate positional data and other ancillary details can be returned.
Vocabulary:
tracking technology – технология отслеживания skyscraper – небоскреб, высотка
intercept – радиоперехват chipset – набор микросхем render – выводить, отображать
ancillary details – вспомогательные детали revolve – вращаться
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