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Modeling Capacity and Delay Based on Bus Bay Blockage and the Influence of Traffic Flow

机译:基于公交车道口堵塞和交通流量影响的时延建模

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The determination of capacity and delay significantly affects the transit system's performance from the perspectives of operators, passengers, and vehicles. Buses will form the spillback queue, in the entrance of the bus bay, when the demand of buses stopping is high. Therefore, bus bay blockage will reduce the capacity and service level of the bus bay and increase the dwell time. The upper partial moment is used to estimate the maximum threshold of blockage probability. The capacity of the bus bay is modeled as a function of arrival buses, blockage probability and critical headway, taking into account spillback and blockage in bus bay entrance and exit. According to bus bay operating time and dwell time, the research aims at estimating a delay based on blockage probability, traffic flow of the adjacent lane and the number of berths. Congestion can be effectively alleviated by increasing the number of berth when demand of buses stopping is low due to the probability threshold has significant change. However, the probability has little significant change when traffic flow of the adjacent lane is more than 450veh/h. It is significant to have congestion delay when multiple bus routes converge into a bus bay.
机译:从操作员,乘客和车辆的角度来看,容量和延误的确定会严重影响公交系统的性能。当公交车的停车需求很高时,公交车将在公交车站的入口处形成溢出队列。因此,总线托架的堵塞将降低总线托架的容量和服务水平,并增加停留时间。上部偏矩用于估计阻塞概率的最大阈值。公交车厢的容量是根据到达公交车,阻塞概率和临界车距的函数建模的,其中要考虑到公交车厢入口和出口的回溢和阻塞。根据巴士站的运行时间和停留时间,该研究旨在基于阻塞概率,相邻车道的交通流量和泊位数量来估计延迟。当由于概率阈值发生重大变化而导致公交车停止需求低时,可通过增加泊位数量来有效缓解拥堵。但是,当相邻车道的交通流量大于450veh / h时,概率几乎没有显着变化。当多条公交路线汇聚到一个公交车厢中时,拥塞延迟很重要。

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