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4. Subcarriers are allocated to subchannels separately in each major group for each OFDMA symbol. We rst allocate the pilot carriers within each cluster and then take all remaining data carriers within the symbol. The parameters vary with FFT sizes. After assigning the pilots, the remaining tones are now rst assigned a continuous increasing index ( logical subcarrier index, in the notation of Eklund et al. [2006]). These logical subcarriers are assigned to logical subchannels. In particular, the k-th subcarrier of the s-th subchannel is assigned to the following logical subcarrier index: Subcarrier(k, s) = Nsubchannels nk + {ps [nk modNsubchannels ] + DL_P ermBase}modNsubchannels (28.6) where Subcarrier(k, s): physical subcarrier index of subcarrier k in subchannel s; s: index number of a subchannel, s {0, . . . , Nsubchannels 1}; nk = (k + 13s) mod Nsubcarriers ; where k index of the subcarrier within a subchannel, k {0, . . . , Nsubcarriers 1}; ps [j ]: series obtained by rotating a base sequence cyclically to the left s times; IDcell : an integer ranging from 0 to 31, which identi es the particular BS segment and is speci ed by the MAC layer (it is identical to IDCell in the rst zone). An example of this subcarrier assignment can be found in Figure 28.10.

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Introduction to dialog boxes The MessageBox class The MsgBox function The InputBox function The CommonDialog class While working in the Windows environment, you have seen a number of dialog boxes. These dialog boxes are used for a variety of purposes, such as displaying values, prompting values, and performing file operations. VB .NET provides you with various functions and controls to implement dialog boxes in your application. In this chapter, you learn to use the MessageBox class and the MsgBox and InputBox functions. You also learn about the CommonDialog class.

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17. Double-click the new feature in the FeatureManager; a set of dimensions appear on the screen. Change the 4-inch dimension to 13.9 inches, and the 6-inch dimension to 11.9 inches. The cross break should now look like Figure 29.39.

(b) Determine the minimum value of the MSE, min , in terms of {ci }, h(t), and N0 The equivalent baseband impulse response of a channel is given by h(t, ) = A (t) B (t ) A BPSK modem with coherent detection using raised-cosine pulses with = 0 and ES = 1 is operating over this channel (a) Assume that A = B = 1 and ES /N0 = 10 dB and plot the probability of error versus rms /T for 0 < rms /T < 5, where R = 1/T is the bit rate of the channel Use the Gaussian assumption for the calculation of error rate With the Gaussian assumption, the ISI caused by channel multipath is treated as an additive Gaussian noise source The total noise affecting the system is the additive thermal noise with variance N0 plus the variance of the ISI term.

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Rm (k) and Sm (ej ) are related as a normal (long-time) Fourier transform pair. In other words, show that Sm (ej ) is the (long-time) Fourier transform of Rm (k), and vice versa. 8. To illustrate the effect of the window position, consider the periodic unit sample sequence

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(b) Repeat part (a) for B = 05, placing both plots in the same graph (c) Assume that A and B are independent slowly time-varying Rayleigh random variables with variance 1 and ES /N0 = 40 dB and repeat part (a) Assume that the variance of B is 05 and repeat part (b) PROJECTS Project 1 Performance Analysis of an Equalizer In this project we analyze the performance of an equalizer in a radio channel using MATLAB or an alternative computation tool The analysis uses derivations provided in Appendix 9A to calculate the mean square error (MSE) of the received signal for variety of equalizers The MSE is a measure of the signal to noise ratio of the equalized received signal When it is compared with the MSE before equalization, it reveals the effectiveness of the equalizer to improve the performance of the receiver.

Pilot Channels Pilot Channels Pilot Channels Pilot Channels F Indicator Control Channel F Indicator Control Channel F Traf c Channels F Traf c Channels F Traf c Channels F Traf c Channels F Traf c Channels F Traf c Channels NA NA NA NA NA NA NA NA NA

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