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분산 ATM 교환제어시스템에서 프로세서간 통신 정합부에 대한 성능 분석
여환근,송광석,노승환,기장근,Yeo, Hwan-Geun,Song, Kwang-Suk,Ro, Soong-Hwan,Ki, Jang-Geun 대한전자공학회 1998 電子工學會論文誌, S Vol.s35 No.6
교환기 제어계의 구조는 전기통신 서비스에서 필요로 하는 다양한 호처리 기능을 제공하기 위하여 많은 구조적인 변화가 진행되어 왔따. 특히 분산 교환제어 환경하에서의 호처리 수행에 있어 프로세서들간의 통신에 의한 지연은 시스템의 성능에 영향을 미치는 중요한 요소중의 하나이다. 본 논문에서는 분산 제어 구조를 갖는 ATM 교환기에서 호처리 수행에 필수적으로 요구되는 프로세서간 메시지 통신이 ATM 스위치를 통해서 이루어지는 경우, 각 프로세서내의 한 기능으로 구현되는 IPC(Inter Processor Communication) 정합부에 대한 성능 분석 모델을 제안하고, 시뮬레이션을 통해서 프로세서의 성능에 미치는 병목 요인에 대해서 검토하였다. 결과적으로, 프로세서간 통신 메시지의 입력율 변화에 따라 이를 처리하는 각 성분(자원)의 이용율과, 메시지 입력율의 변화에 따른 각 성분에서의 큐길이 및 처리 지연시간과의 관계로부터 IPC에 관련되는 주요 성분중 로컬 CPU가 프로세서 시스템의 최대 성능을 제한하는 주 요인이 됨을 정량적으로 확인하였다. 또한 로컬 CPU의 성능 변화에 따른 IPC 메시지 처리 지연효과와, 평균 메시지 길이의 가변에 따른 로컬 CPU의 처리 능력을 정량적으로 제시하였으며, 이 결과는 향후 프로세서의 성능 개선이나 시스템 확장을 위한 기초 자료로 활용될 수 있을 것이다. The control system architecture in switching systems have undergone numerous changes to provide various call processing capability needed in telecommunication services. During call processing in a distributed switching control environment, the delay effect due to communication among main processors or peripheral controllers is one of the limiting factors which affect the system performance. In this paper, we propose a performance model for an IPC(Inter Processor Communication) interface hardware block which is required on the ATM cell-based message processing in a distributed ATM exchange system, and analyze the primary causes which affect the processor performance through the simulation. Consequently, It can be shown that the local CPU of the several components(resources) related to the IPC scheme is a bottleneck factor in achieving the maximum system performance from the simulation results, such as the utilization of each processing component according to the change of the input message rate, and the queue length and processing delay according to input message rate. And we also give some useful results such as the maximum message processing capacity according to the change of the performance of local CPU, and the local CPU maximum throughput according to the change of average message length, which is applicable as a reference data for the improvement or expansion of the ATM control system.
ATM 교환기에서 SAAL 기능 분산에 따른 호처리 프로세서의 성능 분석
여환근,송광석,노승환,기장근 대한전자공학회 1998 電子工學會論文誌, S Vol.s35 No.2
In this paper, we have presented a quantitative performance effect of CCP(Call Control Processor) when SAAL(Signalling ATM Adaptation Layer) function is distributed from CCP to SIMs(Subscriber Interface Modules) in an ATM switching system with distributed architecutre. For the performance analysis, SLAM II simulation language is used and subscriber signalling messageand inter-processor communication messages according to Q.2931 based local call processing procedure are taken into consideration in the proposed queuing network model. The results of simulation are compared with in case of processing SAAL function on CCP. It is observed that the processing utilization of CCP reach 24,000 BHCA and 25,700 BHCAwhen SAAL function load amounts to 10% and 20% of the processing time of the total message, respectively. These values shows that the processing utilization of CCP is alleviated about 7% in comparison with 2,000 BHCA in case that SAAL function is carried out on CCP. Consquently, it is shown that we have to consider seriously how to distribute the functions concerning call processing in a large cale ATM switching system architecture accomodating a number of SIMs.
여환근,송광석,노승환,기장근 한국통신학회 1996 韓國通信學會論文誌 Vol.21 No.12
ATM switching system is made up of transport network and control newrk according to its functions. The control device, basic part of control network must be developed before developing any other functions, and control device must be stable and need high reliability. Out distributed ATM switching system consists of several ALSs that provides variable local call services, and an ACS that interconnect among several ALSs. Eech ALS has CCCP that takes charage of call and connection control functions, and ACS has an OMP that takes charge of OA&M(Operation, Administration and Maintenance) functios. In this paper, we analyzed the performance evaluation of control device that manipulate subscriber's call based on ITU-T Q.2931 standard protocol messages and Interprocessor communication messages. As a result of simulation when the number of ALS is under 22, as the call arrival rate increase the processor utilization of CCCP increase rapidly than that of OMP. When the number of ALS is incremented to 22, the processor utilization of CCCP is balanced with the of OMP, and when the number of ALS exceeds 22, the processor utiliztion of OMP increase rapidly. Also if messary processing time of OMP is 1.35 times that of CCCP, processor utilizations of CCCP and OMP is equal.