PURPOSES: This investigational survey is to observe a proper spatial aggregation method for path travel time estimation using the hi-pass DSRC system. METHODS: The links which connect the nodes of section detectors location are used for path travel time estimation traditionally. It makes some problem such as increasing accumulation errors and processing times. In this background, the new links composition methods for spatial aggregation are considered by using some types of nodes as IC, JC, RSE combination. Path travel times estimated by new aggregation methods are compared with PBM travel times by MAE, MAPE and statistical hypothesis tests. RESULTS : The results of minimum sample size and missing rate for 5 minutes aggregation interval are satisfied except for JC link path travel time in Seoul TG~Kuemho JC. Thus, it was additionally observed for minimum sample size satisfaction. In 15, 30 minutes and 1 hour aggregation intervals, all conditions are satisfied by the minimum sample size criteria. For accuracy test and statistical hypothesis test, it has been proved that RSE, Conzone, IC, JC links have equivalent errors and statistical characteristics. CONCLUSIONS : There are some errors between the PBM and the LBM methods that come from dropping vehicles by rest areas. Consequently, this survey result means each of links compositions are available for the estimation of path travel time when PBM vehicles are missed.
무선 다중경로 채널에서 데이터를 고속으로 전송할 경우, 신호는 페이딩, 심볼간 간섭 등의 영향으로 높은 에러율을 갖게 된다. 그러므로 현재 개발된 DSRC(dedicated short-range communication) 시스템의 변복조 방식은 1 Mbps이상의 데이터 서비스가 어려울 것으로 예상되므로 새로운 채널등화 기법 및 개선된 변복조 방식이 요구된다. OFDM(orthogonal frequency division multiplexing) 방식은 보호간격의 삽입을 통하여 ISI를 방지할 수 있으므로 고속 데이터 전송에 적합하다. 그러나 보호기간이 OFDM 방식에서의 각각의 심볼주기에 사용되는 채널지연 확산보다 길어지므로 채널활용의 효율성에서 상당한 손실이 야기된다. 그러므로 등화기를 고속의 데이터 전송율과 긴 채널 지연확산 조건을 가지는 ITS(intelligent transport system)에 적용하기 위해서는 ISI(inter symbol interference)를 제거할 필요가 있다. 본 논문에서는 OFDM-DSRC 시스템을 위한 채널 등화기를 설계하였으며, 다중경로 페이딩 환경에서 컴퓨터 시뮬레이션을 통해 그 성능을 분석하였다.
In this paper, we proposed the model of wireless communication for ACTS using DSRC and the DSRC system for T/C. The proposed wireless communication model is how to join with DSRC and other wireless communication in port. The DSRC system for T/C is the first application to the unit of port Facilities Automation on stacking area. The DSRC system is communicated between OBE and RSE using 5.8Hz ISM band frequency. The previous works of DSRC applications are gate automation. In these cases, the road trackers are difficult to obtain information of the port in the stacking area. So we used the DSRC for the wireless communication for the port Facilities Automation. Using DSRC, the load trackers obtain more information in the port and contacts to ITS on back-roads of port. The proposed communication system is serviced to reelection of port statistics.