handwritten) Use the Ms word template provided. The answers should be typed (nat Background: An FR...
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handwritten) Use the Ms word template provided. The answers should be typed (nat Background: An FR equation is given below: Y(n)-bx(n-0) given •[by bys) are the coefficients, (x(n), x(n-1)....((n-L) + 1)) are signal samples. • Lis the length of the filter given as 20 (n = 20). You are provided with filas BUFF ADAT for coefficients (b,) and BUFF B.DAT for signal samples (x(n-1)). Perform the following tasks: 1. Select an appropriate DSP processor from the Analogue DSP devices range for implementation of the FIR equation above, Justify your choice 2. Based on your analysis of the RR equation and data provided, discuss in step- by-step with examples on how you can efficienty implement FIR using the DSP processor you selected in task 1. 3. Implement the FIR equation above using the processor you selected in task 1. using assembly language and clearly follow the implementation steps you provided in task 2. Use the data files provided above for your implementation. Your implementation should automatically use the odd values only (not manual removal of the even values) Provide an error free code of your implementation 4. From the FIR equation expansion where n = 20, Y(n) = Y(1) + F(2) +-Y(20). Provida 1(1), 1(3), Y(5) (7) and 1(9) values obtained from your implementation in task 3 above. 5. Discuss why are DSP Processors often used to implement digital signal processing algorithms. (300 words Maximum). Provide appropriate references, handwritten) Use the Ms word template provided. The answers should be typed (nat Background: An FR equation is given below: Y(n)-bx(n-0) given •[by bys) are the coefficients, (x(n), x(n-1)....((n-L) + 1)) are signal samples. • Lis the length of the filter given as 20 (n = 20). You are provided with filas BUFF ADAT for coefficients (b,) and BUFF B.DAT for signal samples (x(n-1)). Perform the following tasks: 1. Select an appropriate DSP processor from the Analogue DSP devices range for implementation of the FIR equation above, Justify your choice 2. Based on your analysis of the RR equation and data provided, discuss in step- by-step with examples on how you can efficienty implement FIR using the DSP processor you selected in task 1. 3. Implement the FIR equation above using the processor you selected in task 1. using assembly language and clearly follow the implementation steps you provided in task 2. Use the data files provided above for your implementation. Your implementation should automatically use the odd values only (not manual removal of the even values) Provide an error free code of your implementation 4. From the FIR equation expansion where n = 20, Y(n) = Y(1) + F(2) +-Y(20). Provida 1(1), 1(3), Y(5) (7) and 1(9) values obtained from your implementation in task 3 above. 5. Discuss why are DSP Processors often used to implement digital signal processing algorithms. (300 words Maximum). Provide appropriate references,
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Answer rating: 100% (QA)
1For the implementation of the FIR equation above I would suggest using the Analog Devices ADSP21489 SHARC Processor This processor is wellsuited for FIR applications due to its highperformance digita... View the full answer
Related Book For
Integrated Accounting
ISBN: 978-1285462721
8th edition
Authors: Dale A. Klooster, Warren Allen, Glenn Owen
Posted Date:
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