Ultra-wide bandwidth time-hopping spread-spectrum impulse radio for wireless multiple-access communications
Moe Z. Win, R.A. Scholtz
Abstract
Moe Z. Win, R.A. Scholtz
Abstract
Attractive features of time-hopping spread-spectrum multiple-access systems employing impulse signal technology are outlined, and emerging design issues are described. Performance of such communications systems in terms of achievable transmission rate and multiple-access capability are estimated for both analog and digital data modulation formats under ideal multiple-access channel conditions.
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Attractive features of time-hopping spread-spectrum multiple-access systems employing impulse signal technology are outlined, and emerging design issues are described. Performance of such communications systems in terms of achievable transmission rate and multiple-access capability are estimated for both analog and digital data modulation formats under ideal multiple-access channel conditions.
Key concepts: Time-hopping, Spread spectrum, Computer science, Wireless, Electronic engineering, Frequency-hopping spread spectrum, Bandwidth (computing), Data transmission