Copyright © 2009 IEEE.This article shows that suitably transmitted and processed, radar waveforms based on Golay sequences provide new primitives for adaptive transmission that enable better detection and finer resolution, while managing computational complexity at the receiver. The ability to exploit space-time adaptive processing is limited by the computational power available at the receiver, and increased flexibility on transmission only exacerbates this problem unless the waveforms are properly designed to simplify processing at the receiver.Robert Calderbank, Stephen D. Howard and Bill Mora
Radar signal coding is the art of shaping the signal in order to obtain a desirable waveform. The w...
In this paper, we investigate spectrally adaptive radar transmit waveform design and its effects on...
The recent developments in radar technology - powerful signal processors, increased modulation bandw...
Waveform diversity may offer several benefits to radar systems though often at the cost of reduced s...
Waveform diversity may offer several benefits to radar systems though often at the cost of reduced s...
The focus of this paper is on the design of waveforms for efficient spatial and temporal adaptivity ...
Abstract — This paper reviews recent developments in the field of adaptive processing for frequency ...
In this lecture, we provide an overview of some recent algorithms for radar waveform design. We firs...
The performance of modern radar systems mostly depends on the radiated waveforms, whose design is th...
The performance of modern radar systems mostly depends on the radiated waveforms, whose design is th...
Waveform diversity indicates the ability to adapt and diversify dynamically the waveform to the oper...
The performance of modern radar systems mostly depends on the radiated waveforms, whose design is th...
The performance of modern radar systems mostly depends on the radiated waveforms, whose design is th...
The performance of modern radar systems mostly depends on the radiated waveforms, whose design is th...
With the development of high speed digital processor and solid state power electronics, more flexibl...
Radar signal coding is the art of shaping the signal in order to obtain a desirable waveform. The w...
In this paper, we investigate spectrally adaptive radar transmit waveform design and its effects on...
The recent developments in radar technology - powerful signal processors, increased modulation bandw...
Waveform diversity may offer several benefits to radar systems though often at the cost of reduced s...
Waveform diversity may offer several benefits to radar systems though often at the cost of reduced s...
The focus of this paper is on the design of waveforms for efficient spatial and temporal adaptivity ...
Abstract — This paper reviews recent developments in the field of adaptive processing for frequency ...
In this lecture, we provide an overview of some recent algorithms for radar waveform design. We firs...
The performance of modern radar systems mostly depends on the radiated waveforms, whose design is th...
The performance of modern radar systems mostly depends on the radiated waveforms, whose design is th...
Waveform diversity indicates the ability to adapt and diversify dynamically the waveform to the oper...
The performance of modern radar systems mostly depends on the radiated waveforms, whose design is th...
The performance of modern radar systems mostly depends on the radiated waveforms, whose design is th...
The performance of modern radar systems mostly depends on the radiated waveforms, whose design is th...
With the development of high speed digital processor and solid state power electronics, more flexibl...
Radar signal coding is the art of shaping the signal in order to obtain a desirable waveform. The w...
In this paper, we investigate spectrally adaptive radar transmit waveform design and its effects on...
The recent developments in radar technology - powerful signal processors, increased modulation bandw...