| M. A. Hasan and V. K. Bhargava, "Architecture for a low complexity rate-adaptive Reed--Solomon encoder," IEEE Trans. Comput., vol. 44, pp. 938--942, July 1995. |
....during implementation in terms of selecting the basis used to represent elements of the field. The two most common types of bases used in conventional hardware and software implementations are the standard and normal bases. Other, less commonly used bases such as the dual [16] and triangular bases [55] have advantages in certain implementations but are considered outside the scope of this dissertation. In a standard basis the elements of GF(p m ) are represented as linear combinations of the basis set 1, 2 , m 2 , m 1 , where is a root of the irreducible polynomial ....
M.A. Hasan and V.K. Bhargava, "Architecture for a low complexity rate-adaptive ReedSolomon encoder," IEEE Transaction on Computers, vol. 44, no. 7, July 1995, pp. 938-942.
....informed. This is because the generator polynomial coefficients in Fig. 2 needs to be changed for each change in b6 . The new coefficients can be obtained either from a ROM storing the coefficients for all possible values of b6 or by updating the coefficients via the strategy in [12]. 4.2. Energy Savings In this subsection, we employ the DAT based reconfigurable RS codec as the outer transceiver digital communication system of Fig. 1. The desired is 9 : Yc AW . Further, we assume that the inner transceiver is fixed, and 1 varies from 7 8 to 9 : 8 , ....
M. A. Hasan and V. K. Bhargava, "Architecture for a lowcomplexity rate-adaptive Reed-Solomon encoder," IEEE Trans. on Computers, vol. 44, no. 7, pp. 938--942, July 1995.
No context found.
M. A. Hasan and V. K. Bhargava, "Architecture for a low complexity rate-adaptive Reed--Solomon encoder," IEEE Trans. Comput., vol. 44, pp. 938--942, July 1995.
No context found.
M. A. Hasan and V. K. Bhargava, "Architecture for a low complexity rate-adaptive Reed--Solomon encoder," IEEE Trans. Comput., vol. 44, pp. 938--942, July 1995.
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