An engineer is designing a transfer line. The line has 15 stations. Stations 1 through 10 should have the same reliability. Each station is expected to operate approximately 1000 cycles between failures. The last 5 stations are expected to break down about once every 600 cycles. Repair times will vary but should average about the equivalent of 12 cycles in duration. a. Find the availability of the line. b. Suppose you could add one buffer of size 20. Where would you place this buffer? Find the increase in availability

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
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An engineer is designing a transfer line. The line
has 15 stations. Stations 1 through 10 should have
the same reliability. Each station is expected to
operate approximately 1000 cycles between
failures. The last 5 stations are expected to break
down about once every 600 cycles. Repair times
will vary but should average about the equivalent
of 12 cycles in duration.
a. Find the availability of the line.
b. Suppose you could add one buffer of size 20.
Where would you place this buffer? Find the
increase in availability
Transcribed Image Text:An engineer is designing a transfer line. The line has 15 stations. Stations 1 through 10 should have the same reliability. Each station is expected to operate approximately 1000 cycles between failures. The last 5 stations are expected to break down about once every 600 cycles. Repair times will vary but should average about the equivalent of 12 cycles in duration. a. Find the availability of the line. b. Suppose you could add one buffer of size 20. Where would you place this buffer? Find the increase in availability
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