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For finding their magnitudes that minimize the bit metric (14), it is the minimization problem of a quadratic function, i.e., differentiating (14) w.r.t |x2,R| and |x2,I| to find the global minima that are given as (15).
We address the design aspects of sparsening filters, including several approaches to minimize the bit error rate of MAP detectors.
As well known, these mapping strategies minimize the bit error rate for a given value of the symbol error rate.
These coefficients are computed to maximize the overall signal-to-interference plus noise ratio (SINR) at the FDE output and, therefore, minimize the bit error rate (BER).
The SBR envelope data, tonal component data, and noise-floor data are quantized and differentially coded in either the time or frequency direction in order to minimize the bit rate.
To minimize the bit error rate on the iterative decoding process, the minimum Euclidean distance between the received multiple constellation points should be maximized so that the receiver can successfully separate each transmitter's signal from the original superimposed signal.
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This paper proposes a design and optimization technique to minimize the bit-line voltage differential variation across process corners and voltages, which increases the read frequency by reducing the delay guard-band required at the design process corner.
A typical problem in image coding is rate minimization: minimize the number of bits used to encode an image while holding the image quality at or above some target level (e.g., transparent coding).
Moreover, the combined effects of atmospheric scintillation and beam wander induced pointing errors are considered in order to determine the optimum beam size that minimizes the bit error rate (BER) of the system for a fixed transmitter power and link length.
Recently, a TEQ design was proposed which directly minimizes the bit error rate (BER) of cyclic prefixed-based systems [18].
The novel algorithm is based on minimizing the bit error rate (BER) using a fast approximation of its gradient with respect to the equalizer coefficients.
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