Impulse Response Shortening for Discrete Multitone Transceivers using Convex Optimization Approach
نویسندگان
چکیده
In this paper we propose a new criterion for solving the problem of channel shortening in multi-carrier systems. In a discrete multitone receiver, a time-domain equalizer (TEQ) reduces intersymbol interference (ISI) by shortening the effective duration of the channel impulse response. Minimum mean square error (MMSE) method for TEQ does not give satisfactory results. In [1] a new criterion for partially equalizing severe ISI channels to reduce the cyclic prefix overhead of the discrete multitone transceiver (DMT), assuming a fixed transmission bandwidth, is introduced. Due to specific constrained (unit morm constraint on the target impulse response (TIR)) in their method, the freedom to choose optimum vector (TIR) is reduced. Better results can be obtained by avoiding the unit norm constraint on the target impulse response (TIR). In this paper we change the cost function proposed in [1] to the cost function of determining the maximum of a determinant subject to linear matrix inequality (LMI) and quadratic constraint and solve the resulting optimization problem. Usefulness of the proposed method is shown with the help of simulations. Keywords—Equalizer, target impulse response, convex optimization, matrix inequality.
منابع مشابه
A minimum mean-squared error interpretation of residual ISI channel shortening for discrete multitone transceivers
Melsa et al. [1] presented a channel shortening technique for Discrete Multitone transceivers that reduces Intersymbol Interference (ISI) by forcing the effective channel’s impulse response to lie within a window of v+1 consecutive samples. Arslan et al. [2] claim that although this method is intuitive, no previous study has been made on its optimality. They comment on its optimality by simulat...
متن کاملEfficient Multi-Carrier Communication on the Digital Subscriber Loop
This thesis explores three distinct philosophies for improving the efficiency of multi-carrier communication on the digital subscriber loop. The first topic discussed is impulse response shortening for discrete multitone transceivers. The minimum mean-squared error impulse response shortener is reformulated to allow near-optimal rate performance. It is demonstrated that the best existing eigen-...
متن کاملCommunication Theory JOINT IMPULSE RESPONSE SHORTENING FOR DISCRETE MULTITONE SYSTEMS
In Discrete Multitone (DMT) transceivers, a cyclic prefix is inserted between transmitted symbols such that the linear convolution of the data and the channel impulse response becomes a circular one corresponding to term-by-term product in the frequency domain. If the cyclic prefix length is longer than that of the channel impulse response it avoids the intersymbol interference (ISI). To reduce...
متن کاملChannel Shortening for Doubly Selective Channels Using Teq, Mmse and Lms
In discrete multitone (DMT) transceivers an intelligent guard time sequence, called a cyclic prefix (CP), is inserted between the symbols to ensure that samples from one symbol do not interfere with the samples of another symbol. The length of the CP is determined by the length of the impulse response of the effective physical channel. Using a long CP reduces the throughput of the transceiver. ...
متن کاملOptimum channel shortening for discrete multitone transceivers
We propose an optimum channel shortening method for discrete multitone (DMT) transceivers. The proposed method shortens a given channel to a desired length while maximizing the number of bits transmitted on a DMT symbol. The key to the optimum solution is the de nition of the SNR in a subchannel using the equivalent signal, noise, and ISI paths in the system. Our simulation results show that th...
متن کامل