Electronic data discharge analysis

Electronic data discharge analysis

Electronic data discharge analysis

Question description

Electronic data discharge analysis: Imagine you are the office manager at a small doctor’s office. As the office manager, you are in charge of educating new hires.

Write a 700- to 1,050-word reference guide describing electronic data interchange (EDI).

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Include the following in your Electronic data discharge analysis summary:

  • Define EDI.
  • Explain how using EDI facilitates electronic transactions.
  • Explain how HIPAA has changed how health care information is transmitted in EDI.
  • Describe the relationship between Electronic Health Records, reimbursement, HIPAA, and EDI transactions.

Cite a minimum of two outside sources. For additional information on how to properly cite your sources check out the Reference and Citation Generator resource in the Center for Writing Excellence.

Format your paper according to APA guidelines.

Whenever partial discharge is initiated, high frequency transient current pulses will appear and persist for nanoseconds to a microsecond, then disappear and reappear repeatedly as the voltage sinewave goes through the zero crossing. The PD happens near the peak voltage both positive and negative. PD pulses are easy to measure using the high frequency current transducer (HFCT) method. The current transducer is clamped around the case ground of the component being tested. The severity of the PD is measured

Electronic data discharge analysis
Electronic data discharge analysis

by measuring the burst interval between the end of a burst and the beginning of the next burst. As the insulation breakdown worsens, the burst interval will shorten due to the breakdown happening at lower voltages. This burst interval will continue to shorten until a critical 2 millisecond point is reached. At this 2 ms point, the discharge is very close to the zero crossing and will fail with a full blown discharge and major failure. The HFCT method needs to be used because of the small magnitude and short duration of these PD events. The HFCT method is done while the component being tested stays energized and loaded. It is completely non-intrusive. Another method of measuring these currents is to put a small current-measuring resistor in series with the sample and then view the generated voltage on an oscilloscope via a matched coaxial cable.

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When PD, arcing or sparking occurs, electromagnetic waves propagate away from the fault site in all directions which contact the transformer tank and travel to earth (ground cable) where the HFCT is located to capture any EMI or EMP within the transformer, breaker, PT, CT, HV Cable, MCSG, LTC, LA, generator, large hv motors, etc. Detection of the high-frequency pulses will identify the existence of partial discharge, arcing or sparking. After PD or arcing is detected, the next step is to locate the fault area. Using the acoustic emission method (AE), 4 or more AE sensors are placed on the transformer shell where the AE and HFCT wavedata is collected at the same time. Bandpass filtering is used to eliminate interference from system noises.