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By National Research Council, Division on Engineering and Physical Sciences, Computer Science and Telecommunications Board, Committee on Information Technology and Creativity, Marjory S. Blumenthal, Alan S. Inouye, William J. Mitchell

Computer technological know-how has drawn from and contributed to many disciplines and practices because it emerged as a box in the midst of the twentieth century. these interactions, in flip, have contributed to the evolution of data expertise â€" new different types of computing and communications, and new purposes â€" that proceed to boost from the artistic interactions among laptop technology and different fields.

Beyond Productivity argues that, at first of the twenty first century, info know-how (IT) is forming a robust alliance with inventive practices within the arts and layout to set up the interesting new, area of data expertise and inventive practicesâ€"ITCP. There are significant advantages to be won from encouraging, aiding, and strategically making an investment during this domain.

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Extra resources for Beyond Productivity Information, Technology, Innovation, and Creativity

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3, pp. 872–877, May 2005. References 27 24. Q. Zou, A. Tarighat, and A. H. Sayed, “Joint compensation of IQ imbalance and phase noise in OFDM wireless systems,” IEEE Trans. , vol. 57, no. 404–414, Feb. 2009. 25. S. M. Alamouti, “A simple transmit diversity technique for wireless communications,” IEEE J. Select. , vol. 16, no. 8, pp. 1451–1458, Oct. 1998. 26. V. Tarokh, N. Seshadri, and A. R. Calderbank, “Space-Time codes for high data rate wireless communication: performance criterion and code construction,” IEEE Trans.

33 Fig. n/ D ˛t r received signal have relation according to Fig. 4. 1 Compensation Assuming that t and r are known by the transmitter and receiver, respectively. n/, similar as the pre-FFT approach described in [26]. At the receiver, the compensation can be carried out similarly as that in Eq. 4). 5), we can remove the impact of RX IQ imbalance, and simple single tap equalization can be used to detect the transmitted symbol. 21) is known, then, similar as Eq. 25) where ı is a regularization parameter.

R. Chrabieh and S. Soliman, “IQ imbalance mitigation via unbiased training sequences,” Proc. IEEE Globecom 2007. 26. A. Tarighat and A. H. Sayed, “Joint compensation of transmitter and receiver impairments in OFDM systems,” IEEE Trans. Wireless Commun. vol. 6, no. 1, pp. 240–247, Jan. 2007. 27. -J. -H. Sheen, “Joint calibration of transmitter and receiver impairments in directconversion radio architecture,” IEEE Trans. , vol. 11, no. 2, pp. 832–841, Feb. 2012. References 47 28. W. Kirkland and K.

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Beyond Productivity Information, Technology, Innovation, and Creativity by National Research Council, Division on Engineering and Physical Sciences, Computer Science and Telecommunications Board, Committee on Information Technology and Creativity, Marjory S. Blumenthal, Alan S. Inouye, William J. Mitchell


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