For a zero-mean, unit-variance stationary univariate Gaussian process we derive the probability that a record at the time n, say Xn, takes place, and derive its distribution function. We study the joint distribution of the arrival time process of records and the distribution of the increments between records. We compute the expected number of records. We also consider two consecutive and non-consecutive records, one at time j and one at time n, and we derive the probability that the joint records occur, as well as their distribution function. The probability that the records and take place and the arrival time of the nth record are independent of the marginal distribution function, provided that it is continuous. These results actually hold for a strictly stationary process with Gaussian copulas.

Records for time-dependent stationary Gaussian sequences

Khorrami Chokami A.;
2020-01-01

Abstract

For a zero-mean, unit-variance stationary univariate Gaussian process we derive the probability that a record at the time n, say Xn, takes place, and derive its distribution function. We study the joint distribution of the arrival time process of records and the distribution of the increments between records. We compute the expected number of records. We also consider two consecutive and non-consecutive records, one at time j and one at time n, and we derive the probability that the joint records occur, as well as their distribution function. The probability that the records and take place and the arrival time of the nth record are independent of the marginal distribution function, provided that it is continuous. These results actually hold for a strictly stationary process with Gaussian copulas.
2020
Arrival time
Closed skew-normal distribution
Gaussian process
Increments
Joint records
Record
Strictly stationary process
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11584/416846
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