26
Markovian Error Models Based on Jeffrey S. Slack FINITE STATE MARKOV MODELS FOR ERROR BURSTS ON THE LAND MOBILE SATELLITE CHANNEL

Markovian Error Models Based on Jeffrey S. Slack FINITE STATE MARKOV MODELS FOR ERROR BURSTS ON THE LAND MOBILE SATELLITE CHANNEL

  • View
    213

  • Download
    0

Embed Size (px)

Citation preview

Page 1: Markovian Error Models Based on Jeffrey S. Slack FINITE STATE MARKOV MODELS FOR ERROR BURSTS ON THE LAND MOBILE SATELLITE CHANNEL

Markovian Error Models

Based onJeffrey S. Slack

FINITE STATE MARKOV MODELS FOR ERROR BURSTS ON

THE LAND MOBILE SATELLITE CHANNEL

Page 2: Markovian Error Models Based on Jeffrey S. Slack FINITE STATE MARKOV MODELS FOR ERROR BURSTS ON THE LAND MOBILE SATELLITE CHANNEL

Bernoulli model

• Independent bit errors• Bit Error Rate (BER)=P• Frame Error Rate (FER)=F• N: bits per frame

F=1-(1-P)n ¼ n P

• Example P=1E-9, n=1500*8, F=1E-5• Example P=1E-3, n=500, F=0,4

Page 3: Markovian Error Models Based on Jeffrey S. Slack FINITE STATE MARKOV MODELS FOR ERROR BURSTS ON THE LAND MOBILE SATELLITE CHANNEL

Signal strength and bursty errors

Page 4: Markovian Error Models Based on Jeffrey S. Slack FINITE STATE MARKOV MODELS FOR ERROR BURSTS ON THE LAND MOBILE SATELLITE CHANNEL

Gilbert Model

No errors in state (good) 1

Bernoulli model in state (bad) 2

(BER=1-h)

Page 5: Markovian Error Models Based on Jeffrey S. Slack FINITE STATE MARKOV MODELS FOR ERROR BURSTS ON THE LAND MOBILE SATELLITE CHANNEL

Determining Model Parameters

• Match average BER

• Match Error Gap Distribution

U(n)=P(00..0) (at least n good bits in row)

• Match Block Error Probability

P(m,n)=probability of m errors in block of n bits

Page 6: Markovian Error Models Based on Jeffrey S. Slack FINITE STATE MARKOV MODELS FOR ERROR BURSTS ON THE LAND MOBILE SATELLITE CHANNEL

Mapping Transition Probabilities to u(n) and P(m,n)

P11,P12,P21,P22 ! u(n),P(m,n)

P*11,P*12,P*21,P*22 Ã u*(n),P*(m,n)

Page 7: Markovian Error Models Based on Jeffrey S. Slack FINITE STATE MARKOV MODELS FOR ERROR BURSTS ON THE LAND MOBILE SATELLITE CHANNEL

Matching Error Gaps

Page 8: Markovian Error Models Based on Jeffrey S. Slack FINITE STATE MARKOV MODELS FOR ERROR BURSTS ON THE LAND MOBILE SATELLITE CHANNEL

Matching Block Error Probabilities

Page 9: Markovian Error Models Based on Jeffrey S. Slack FINITE STATE MARKOV MODELS FOR ERROR BURSTS ON THE LAND MOBILE SATELLITE CHANNEL

Elliot Model

Bernoulli model in state 1(BER=1-k)Bernoulli model in state 2(BER=1-h)

Page 10: Markovian Error Models Based on Jeffrey S. Slack FINITE STATE MARKOV MODELS FOR ERROR BURSTS ON THE LAND MOBILE SATELLITE CHANNEL

BEP for the Elliot ModelAssumed: 1-h >> 1-k

h and transition probabilities determined as for the Gilbert model

K determined from BEP

Page 11: Markovian Error Models Based on Jeffrey S. Slack FINITE STATE MARKOV MODELS FOR ERROR BURSTS ON THE LAND MOBILE SATELLITE CHANNEL

Matching Error Gaps

Page 12: Markovian Error Models Based on Jeffrey S. Slack FINITE STATE MARKOV MODELS FOR ERROR BURSTS ON THE LAND MOBILE SATELLITE CHANNEL

Matching BEP

Page 13: Markovian Error Models Based on Jeffrey S. Slack FINITE STATE MARKOV MODELS FOR ERROR BURSTS ON THE LAND MOBILE SATELLITE CHANNEL

The McCullough model

Random error state

Bursty error state

State change allways on error

Page 14: Markovian Error Models Based on Jeffrey S. Slack FINITE STATE MARKOV MODELS FOR ERROR BURSTS ON THE LAND MOBILE SATELLITE CHANNEL

BEP for the McCullough model

Page 15: Markovian Error Models Based on Jeffrey S. Slack FINITE STATE MARKOV MODELS FOR ERROR BURSTS ON THE LAND MOBILE SATELLITE CHANNEL

Estimation

Page 16: Markovian Error Models Based on Jeffrey S. Slack FINITE STATE MARKOV MODELS FOR ERROR BURSTS ON THE LAND MOBILE SATELLITE CHANNEL

Results

Page 17: Markovian Error Models Based on Jeffrey S. Slack FINITE STATE MARKOV MODELS FOR ERROR BURSTS ON THE LAND MOBILE SATELLITE CHANNEL

Best k-value

Page 18: Markovian Error Models Based on Jeffrey S. Slack FINITE STATE MARKOV MODELS FOR ERROR BURSTS ON THE LAND MOBILE SATELLITE CHANNEL

The Fritchman model

Transition between error free state prohibited

(for tractability)

Page 19: Markovian Error Models Based on Jeffrey S. Slack FINITE STATE MARKOV MODELS FOR ERROR BURSTS ON THE LAND MOBILE SATELLITE CHANNEL

Error Gap Probabilities

PBA PB

• B-states are now attractive

• Probabilities for staying in A-states are the same for the two transition matrices

PAB

PAB=0

PB=I

PA

Page 20: Markovian Error Models Based on Jeffrey S. Slack FINITE STATE MARKOV MODELS FOR ERROR BURSTS ON THE LAND MOBILE SATELLITE CHANNEL

Error Gap Probabilities

Page 21: Markovian Error Models Based on Jeffrey S. Slack FINITE STATE MARKOV MODELS FOR ERROR BURSTS ON THE LAND MOBILE SATELLITE CHANNEL

Error Gap/Cluster Probabilities

Page 22: Markovian Error Models Based on Jeffrey S. Slack FINITE STATE MARKOV MODELS FOR ERROR BURSTS ON THE LAND MOBILE SATELLITE CHANNEL

Measured Error Cluster Probabilities

Straight line -> geometric -> only one dominating eigenvalue -> only one errorstate

Page 23: Markovian Error Models Based on Jeffrey S. Slack FINITE STATE MARKOV MODELS FOR ERROR BURSTS ON THE LAND MOBILE SATELLITE CHANNEL

Block Error Probabilities

Page 24: Markovian Error Models Based on Jeffrey S. Slack FINITE STATE MARKOV MODELS FOR ERROR BURSTS ON THE LAND MOBILE SATELLITE CHANNEL

Estimation

Page 25: Markovian Error Models Based on Jeffrey S. Slack FINITE STATE MARKOV MODELS FOR ERROR BURSTS ON THE LAND MOBILE SATELLITE CHANNEL

Matching Error Gap

Page 26: Markovian Error Models Based on Jeffrey S. Slack FINITE STATE MARKOV MODELS FOR ERROR BURSTS ON THE LAND MOBILE SATELLITE CHANNEL

Matching Block Errors