On the ICI Mitigation Techniques in High Mobility MIMO-OFDM Systems with Parallel ICI Cancellation under Various Normalized Doppler Spreads

Article ID

669L1

On the ICI Mitigation Techniques in High Mobility MIMO-OFDM Systems with Parallel ICI Cancellation under Various Normalized Doppler Spreads

Walid M. Raafat
Walid M. Raafat Al Azhar University, Cairo
Mohamed I. Youssef
Mohamed I. Youssef
Ibrahim F. Tarrad
Ibrahim F. Tarrad
DOI

Abstract

The signals of LF and VLF are rapidly alternated by the earth’s surface; and there are various propagation models currently used by the wireless industry for signal transmission within the frequency range 150-1800 MHz. Hata-Okumura two rays model are one of them. The problem of Inter Carrier Interference (ICI) arising from the Doppler shift caused by the high mobility in areas covered by OFDM based systems via High Altitude Platforms (HAPs). The proposed scheme presented is for Doppler assisted channel estimation with the parallel interference cancellation with decision statistical combining scheme (PIC-DSC) for high mobility MIMO-OFDM systems to improve the ICI cancellation which is essential in enhancing the BER performance which induces a large frequency offset error.

On the ICI Mitigation Techniques in High Mobility MIMO-OFDM Systems with Parallel ICI Cancellation under Various Normalized Doppler Spreads

The signals of LF and VLF are rapidly alternated by the earth’s surface; and there are various propagation models currently used by the wireless industry for signal transmission within the frequency range 150-1800 MHz. Hata-Okumura two rays model are one of them. The problem of Inter Carrier Interference (ICI) arising from the Doppler shift caused by the high mobility in areas covered by OFDM based systems via High Altitude Platforms (HAPs). The proposed scheme presented is for Doppler assisted channel estimation with the parallel interference cancellation with decision statistical combining scheme (PIC-DSC) for high mobility MIMO-OFDM systems to improve the ICI cancellation which is essential in enhancing the BER performance which induces a large frequency offset error.

Walid M. Raafat
Walid M. Raafat Al Azhar University, Cairo
Mohamed I. Youssef
Mohamed I. Youssef
Ibrahim F. Tarrad
Ibrahim F. Tarrad

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Walid M. Raafat. 2015. “. Global Journal of Research in Engineering – F: Electrical & Electronic GJRE-F Volume 15 (GJRE Volume 15 Issue F7): .

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Crossref Journal DOI 10.17406/gjre

Print ISSN 0975-5861

e-ISSN 2249-4596

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GJRE-F Classification: FOR Code: 090609
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On the ICI Mitigation Techniques in High Mobility MIMO-OFDM Systems with Parallel ICI Cancellation under Various Normalized Doppler Spreads

Walid M. Raafat
Walid M. Raafat Al Azhar University, Cairo
Mohamed I. Youssef
Mohamed I. Youssef
Ibrahim F. Tarrad
Ibrahim F. Tarrad

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