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Published byClaribel Heath Modified over 9 years ago
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Motivation Wireless Communication Environment Noise Multipath (ISI!) Demands Multimedia applications High rate Data communication Reliability
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Solutions Some Possible Solutions Use more bandwidth (limited resource!) Use strong codes (computational complexity!) Use multiple antennas (hardware complexity!) Choose Multiple Antennas Multiple Antenna (Requires flat fading channel!) Solution Multiple Antenna + OFDM
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Implementation of STC + OFDM
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Space-Time Diversity Signal at j th antenna is Decision metric
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Alamouti’s Scheme Space-time code matrix Signal Received Estimates
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Adaptive OFDM (AOFDM) Single user AOFDM =>Adapt. bits allocation/Optimal Power allocation Multi-User AOFDM – Static TDMA/FDMA =>(Wastage of Frequency band(s)?) So, why not exploit spatial separation of users. and – Minimize the overall transmit power by allocating subcarriers to the users & bits transmitted on each subcarrier and power level transmitted on each subcarrier => (1. Overheads at Base Station! 2. What?? If fast fading channel!!)
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MU-OFDM with subcarrier, bit and power allocation
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Nonoptimal solution Subjected to the constraints C 1 : C 2 : Minimize Where k is the user index and n is the subcarrier index, is the number of bits of the k th user assigned to the n th subcarrier, is the set of all possible values of is the required received power (in energy per symbol) in a subcarrier for reliable reception of c bits/symbol when the channel gain is unity and is the magnitude of the channel gain of the n th subcarrier as seen by the k th user.
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Optimization Relax the requirement c k,n D to allow c k,n to be a real number within i.e. c k,n [0,M]. To deal with constraint C 2, let new factor k,n [0,1] as a sharing factors of the n th subcarrier to k th user. The new optimization problem becomes where c k,n and k,n has to satisfy, Here is a lower bound to the minimum power P * T
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Problem definition Incrementally correcting approaches for the following- Dynamic MUMC system which will efficiently take care of users in and out of the system. Correcting bit allocation strategy in time-varying MCM/MUMC system where time variations can be of various degrees – - Slowly fading - Medium fade - Fast fading
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Core system(s) to work on At least adaptive MUOFDM as an adaptive MUMC system. OFDM + STC and/or concatenation of any other coding technique to get more degree of freedom to work with.
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