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With T ≥ N t, a rate L/T T × N t STBC S is called full-rank or fully diverse or is said to achieve the maximum diversity gain if the difference of any two matrices M1, M2 ∈ S is full-rank, i.e., minM1 ≠M1, M2, M2 ∈ S rank(M1 − M2) = N t.
Table 1 Maximum diversity gain for the various schemes.
Thus, we have shown that COSTBCs achieve the maximum diversity gain in a 2-hop network.
Therefore, the maximum diversity gain is doubled at the price of SNR.
From the analysis of Section 3.1.2, the maximum diversity gain of user 2 in (38) is.
From (26), it follows that using a single antenna, maximum diversity gain point can be achieved.
Then, maximum diversity gain is achieved provided that K ≤ M - L + 1.
It leads to criteria for the transmitted signal, especially for achieving maximum diversity gain.
FC FC-no precoding HC NC NC-no precoding Maximum diversity gain of user 1 Maximum diversity gain of user 2 Table 2 Transmitted signal for the full-cooperation scheme.
These optimal block-sizes allow us to minimize the sum-correlation between subcarriers and to achieve maximum diversity gain.
Superposing user's own data and data from the other user can double the maximum diversity gain of each user.
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