Development of A System Optimum Traffic Control Strategy with Cell Transmission Model

Cell Transmission 이론에 근거한 시스템최적 신호시간산정

  • Published : 2002.10.01

Abstract

A signal optimization model is proposed by applying the Cell-Transmission Model(CTM) as an embedded traffic flow model to estimate a system-optimal signal timing plan in a transportation network composed of signalized intersections. Beyond the existing signal-optimization models, the CTM provides appropriate theoretical and practical backgrounds to simulate oversaturation phenomena such as shockwave, queue length, and spillback. The model is formulated on the Mixed-Integer Programming(MIP) theory. The proposed model implies a system-optimal in a sense that traffic demand and signal system cooperate to minimize the traffic network cost: the demand departing from origins through route choice behavior until arriving at destinations and the signal system by calculating optimal signal timings considering the movement of these demand. The potential of model's practical application is demonstrated through a comparison study of two signal control strategies: optimal and fixed signal controls.

신호교차로로 구성된 네트워크의 시스템최적 신호시간산정을 위해 Cell Transmission 이론을 교통류 모형으로 활용한 신호최적화 모형을 제안한다. Cell Transmission 모형은 기존에 소개된 신호최적화 모형과는 달리 충격파, 대기행렬의 길이, 그리고 하류부 교차로 대기행렬의 역류(Spillback)과 같은 과포화 현상을 표현하는데 적절한 이론적이고 실제적인 배경을 지원한다. 모형에서 기점을 출발한 수요차량은 종점에 도착할 때까지 경로선택을 통해서, 그리고 신호시스템은 이러한 수요의 움직임 고려하여 신호시간요소의 최적화를 통한 네트워크의 비용을 최소화하기 위해 서로 협력한다는 의미에서 제안된 모형은 시스템 최적화를 의미한다. 모형은 혼합정수계획법으로 정식화되며 최적신호전략과 고정신호전략간의 실험계획을 통해 구축된 모형을 비교·평가한다.

Keywords

References

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