The transfer function of a continuous causal LTI system is given below. is undecided. ?(s) =1/s-3 To stabilize the system, a backstop with a constant K coefficient is required as shown in the figure below. It is desired to make the HSÇ stable by pulling the unstable pole to the stable region with the feeding. a K Calculate whether there is a feedback coefficient and, if so, the range of values.

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The transfer function of a continuous causal LTI system is given below. is undecided. ?(s) =1/s-3 To stabilize the system, a backstop with a constant K coefficient is required as shown in the figure below. It is desired to make the HSÇ stable by pulling the unstable pole to the stable region with the feeding. a K Calculate whether there is a feedback coefficient and, if so, the range of values.

Bir sürekli nedensel DZD sistemin transfer fonksiyonu aşağıdaki verildiği gibi SGSÇ
kararsızdır.
1
H(s) =
S- 3
Sistemi kararlı hale getirmek için aşağıdaki şekilde gösterildiği gibi sabit K katsayılı bir geri
besleme ile kararsız kutbu kararlı bölgeye çekilerek SGSÇ kararlı yapılmak istenmektedir. Bir K
geri besleme katsayısının olup olmadığını ve eğer var ise değer aralığını hesaplayınız.
Y(s)
X(s) →(+
H(s)
K
Transcribed Image Text:Bir sürekli nedensel DZD sistemin transfer fonksiyonu aşağıdaki verildiği gibi SGSÇ kararsızdır. 1 H(s) = S- 3 Sistemi kararlı hale getirmek için aşağıdaki şekilde gösterildiği gibi sabit K katsayılı bir geri besleme ile kararsız kutbu kararlı bölgeye çekilerek SGSÇ kararlı yapılmak istenmektedir. Bir K geri besleme katsayısının olup olmadığını ve eğer var ise değer aralığını hesaplayınız. Y(s) X(s) →(+ H(s) K
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