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Bit Error Rate in AWGN Channels - Matlab Simulation (Part II)

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Using trigonometric identity, equation 1 can be separated into cosine and sine basis functions as follows. Note: If you are interested in knowing more about BPSK modulation and demodulation, kindly visit this article. In this simulation methodology, there is no need to simulate each and every sample of the BPSK waveform as per equation 1.

Only the value of a symbol at the symbol-sampling time instant is considered. The results are plotted in Figure 3. The results will be same as Figure 3. For more such examples refer the book available as PDF and paperback — Digital Modulations using Matlab: build simulation models from scratch. Rate this article: 5 votes, average: 4. I have checked it. It does work as intended.

I hope you are using the Python version 3. Why complex baseband equivalent model The passband model and equivalent baseband model are fundamental models for simulating a communication system. Figure 1: BPSK constellation. Pyhton code does not work Reply. Post your valuable comments!!! Cancel reply. This site uses cookies responsibly. Learn more in our privacy policy. Manage consent. Close Privacy Overview This website uses cookies to improve your experience while you navigate through the website.

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The cookie is used to store the user consent for the cookies in the category "Analytics". The cookie is used to store the user consent for the cookies in the category "Other. Thanks in advance. Hi Nayan, glad to know you found the posts useful. Thank you. Hello Joe Help me please. Hey joe, i have some some code for NOMA in which i have only transmitter side, no modulation Will you please update my code as i am beginner in NOMA and trying to understand things but i am stuck in it.

However, this is not the only way to do this. We can also use ifelse conditional statement to perform this mapping. Hello sir, Your posts are very helpful. Can u provide the code for that? But it is also possible to go for different modulation schemes to the users.

Hi Dr joe Can you please give me refrences used for understand OP? Hi, please go through the papers given in the reference section. Can you explain how probability of error is calculated from the constellation of the first reference paper? We'll cover that in a future post.

Hi Abdelrahim, the results depend on several parameters like distance, target rates etc. One explanation for this behavior would be: although the far user is allocated higher power, he suffers from interference due to the near user's data.

The near user does not have this interference problem because he performs SIC. Hence, the near user has better performance than the far user. Hi Abdelrahim, the near user has a good channel with the Base station, while the far user does not.

So, the near user can decode the far user's signal accurately and also do SIC. Dear Dr. Hi there Joe : I really love all the work that you have put in. Thank youu so much! Hi Joe, thank you for this useful post. Hi,Dr i check references for OP but i don't found it if you can share with me the article you used to make condition in matlab code i will be thankful. Hi, you can follow the steps given in reference 1 to derive expressions for this system. Hello Everyone, could anyone provide some information on "Outage Probablity" and how it performs?

Hi, the received signal must be strong enough to be sensed and reliably decoded by the receiver. When it is not strong enough, we say that the receiver is in outage. We find the outage probability by counting the number of times the received power or rate falls below a predefined threshold.

After performing the respective modulations, both users will have N symbols. Next you can perform superposition coding of symbols as before. So I've no idea about it. Hi, we'll see more about power allocation and user pairing strategies in future posts. But this may not always be true for the far users because they suffer from interference, as you mentioned. For the far user, other factors like power allocation, channel conditions must also be considered.

Hi, You can just modify the distances in the code provided in this post itself. I am facing some errors in the same. I have mailed my queries to you. Could you please check them? Hi Parva, I made some corrections in your code. It is working now. Mailed it to you. But now the performance of users got reversed, far user is performing better than near user. Is it correct?

Can I send my file to you for checking it? Can you send the code matlab for me too plz Abdelrahimjomaa2 gmail. Hi Joe. I am thinking about the effect of channel equalizer on BER. I checked the paper [1] BER theoretical , it seems that the model of [1] did not consider equalizer and the result was based on demodulating the raw received signal un-equalized.

However, it seems the equalizer is essential. If possible, could you please advise some insights on this question? Hi joe, from where you have taken free space path loss calculations? Hello Everyone I am extremely looking forward to your new blogs on this subject. Best regards. Hi Joe, great post! Learned a lot. Could you please inform me how do I calculate the Theoretical Outage Probabilities for the far and near users , and then plot with the Analytical Outage Probabilities?

Thanks a lot for your help! Hello, you have source code matlab for this general? I need it, you can sent to me by mail: thienthanhaovai gmail. Hi , Have you got the code for physical layer security? Can you pls help me with it? Best Regards,. Thank you Joe for explain hybrid beamforming with some codes. Dear Joe, please kindly reach out to me at chekwas engineer. Hello Joe, I want to ask a questions. It's that still using h1 with d1 is distance from BS to user 1 or how?

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Bit Error Rate (BER) in Digital Communication using MatLab in Arabic

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