Variance Analysis for State Estimation In Communication Channel with Finite Bandwidth

유한한 대역폭을 가지는 통신 채널에서의 상태 추정값에 대한 분산 해석

  • 황태현 (부산대학교 기계공학부) ;
  • 최재원 (부산대학교 기계공학부 및 기계기술 연구소)
  • Published : 2000.11.02

Abstract

Aspects of classical information theory, such as rate distortion theory, investigate how to encode and decode information from an independently identically distributed source so that the asymptotic distortion rate between the source and its quantized representation is minimized. However, in most natural dynamics, the source state is highly corrupted by disturbances, and the measurement contains the noise. In recent coder-estimator sequence is developed for state estimation problem based on observations transmitted with finite communication capacity constraints. Unlike classical estimation problems where the observation is a continuous process corrupted by additive noises, the condition is that the observations must be coded and transmitted over a digital communication channel with finite capacity. However, coder-estimator sequence does not provide such a quantitative analysis as a variance for estimation error. In this paper, under the assumption that the estimation error is Gaussian distribution, a variance for coder-estimation sequence is proposed and its fitness is evaluated through simulations with a simple example.

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