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How to scale pitch and instrument recognition in monophonic recordings to polyphonic recordings.

The techniques we used for our recognition system have for the most part been applied to monophonic recordings. In moving to polyphonic recordings, we have to subtract out the portion of the sound signal due to the first note and repeat the pitch detection and instrument recognition algorithm for each successive note. We implemented a simple masking function to remove the portions of the spectrum contributed by the detected note. Our first trial used a simple binary mask and removed all the harmonics given a fundamental frequency, but this has the problem of removing potentially significant information if the next note is a harmonic of the first, as their spectrum would therefore overlap. We thus decided to use a more intelligent mask and remove parts of the spectrum using knowledge about the instrument that produced the note. The mask was constructed from the average harmonic envelope and fundamental frequency in a process similar to the inverse of sinusoidal harmonic modeling. However, we only work with the spectral amplitude and not with phase. Because the spectral amplitude of multiple notes is not linear, however, the harmonic peaks in a polyphonic tune cannot simply be subtracted as we have done. We note that accounting for the phase differences is a non-trivial problem, and the simplifying assumption of linearity in spectral amplitude is often used in polyphonic systems.

Questions & Answers

A golfer on a fairway is 70 m away from the green, which sits below the level of the fairway by 20 m. If the golfer hits the ball at an angle of 40° with an initial speed of 20 m/s, how close to the green does she come?
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A mouse of mass 200 g falls 100 m down a vertical mine shaft and lands at the bottom with a speed of 8.0 m/s. During its fall, how much work is done on the mouse by air resistance
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2. A sled plus passenger with total mass 50 kg is pulled 20 m across the snow (0.20) at constant velocity by a force directed 25° above the horizontal. Calculate (a) the work of the applied force, (b) the work of friction, and (c) the total work.
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you have been hired as an espert witness in a court case involving an automobile accident. the accident involved car A of mass 1500kg which crashed into stationary car B of mass 1100kg. the driver of car A applied his brakes 15 m before he skidded and crashed into car B. after the collision, car A s
Samuel Reply
can someone explain to me, an ignorant high school student, why the trend of the graph doesn't follow the fact that the higher frequency a sound wave is, the more power it is, hence, making me think the phons output would follow this general trend?
Joseph Reply
Nevermind i just realied that the graph is the phons output for a person with normal hearing and not just the phons output of the sound waves power, I should read the entire thing next time
Joseph
Follow up question, does anyone know where I can find a graph that accuretly depicts the actual relative "power" output of sound over its frequency instead of just humans hearing
Joseph
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A string is 3.00 m long with a mass of 5.00 g. The string is held taut with a tension of 500.00 N applied to the string. A pulse is sent down the string. How long does it take the pulse to travel the 3.00 m of the string?
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Source:  OpenStax, Elec 301 projects fall 2005. OpenStax CNX. Sep 25, 2007 Download for free at http://cnx.org/content/col10380/1.3
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