Title :
Dynamic lazy calendar queue: an event list for network simulation
Author :
Oh, SeungHyun ; Ahn, JongSuk
Author_Institution :
Dept. of Comput. Eng., Dongguk Univ., Seoul, South Korea
fDate :
28 Apr-2 May 1997
Abstract :
Proposes a new calendar queue which can improve the conventional calendar queue´s performance over uneven event distributions. A calendar queue is a multi-list priority queue which is frequently employed in discrete event simulations as the global event list, since its performance shows O(1) time complexity. For O(1) performance, calendar queues maintain only a small number of events at each list of their multi-list by constantly adjusting their multi-list size depending on the number of enqueued events and redistributing events over the newly resized multi-list. Calendar queues, however, perform poorly over skewed event distributions. Our proposed calendar queue can reduce the conventional calendar queue´s sensitivity to event distributions by adding two new mechanisms. The first mechanism constantly measures the event distribution and, according to the measured metrics, reconfigures the calendar queue´s multi-list to maintain O(1) performance even for uneven distributions. The second mechanism adopts an additional data structure to save the time wasted in frequent resizing of calendar queues. Our conducted experiments show that our calendar queue can achieve more than a 10-fold speedup for uneven event distributions while maintaining the same performance for other distributions
Keywords :
communication complexity; computational complexity; data structures; discrete event simulation; queueing theory; telecommunication computing; telecommunication networks; data structure; discrete event simulations; dynamic lazy calendar queue; event redistribution; global event list; multi-list priority queue; multi-list size adjustment; network simulation; performance; queue resizing; skewed event distributions; time complexity; uneven event distributions; Algorithm design and analysis; Calendars; Computational modeling; Computer networks; Computer simulation; Data structures; Discrete event simulation; Distributed computing; Routing; Tree data structures;
Conference_Titel :
High Performance Computing on the Information Superhighway, 1997. HPC Asia '97
Conference_Location :
Seoul
Print_ISBN :
0-8186-7901-8
DOI :
10.1109/HPC.1997.592156