Title :
Design and Performance Analysis of a New Soft Handoff Scheme for CDMA Cellular Systems
Author :
Ma, Xiaomin ; Liu, Yun ; Trivedi, Kishor S.
Author_Institution :
Dept. of Eng. & Phys., Oral Roberts Univ., Tulsa, OK
Abstract :
In this paper, a new soft handoff scheme for CDMA cellular systems is proposed and investigated. It is pointed out that some handoff calls unnecessarily occupy multiple channels with little contribution to the performance of handoffs in IS95/CDMA2000-based handoff schemes or systems. To alleviate performance degradation due to channel resource shortage during soft handoff, a new concept of channel convertible set (CCS), which contains several types of handoff calls that unnecessarily occupy extra channels by considering the relative mobility of the calls in the handoff area is introduced. A new scheme that reallocates those extra channels in the CCS to new handoff calls when there is no available free channel in the system is proposed. Furthermore, according to the variation of the CCS, the proposed scheme dynamically adjusts the number of guard channels reserved exclusively for handoff. Then, the feasibility and implementation issues of the proposed scheme are discussed. To evaluate and compare performance indexes of different soft handoff schemes, continuous-time Markov chain models are constructed. Automated generation and solution of the underlying Markov chains are facilitated by stochastic reward net models, which are specified and solved by stochastic Petri net package. Numerical results show that this scheme can significantly decrease both the number of dropped handoff calls and the number of blocked calls without degrading the quality of communication service and the soft handoff process
Keywords :
3G mobile communication; Markov processes; Petri nets; cellular radio; channel allocation; code division multiple access; quality of service; CDMA cellular systems; IS95-CDMA2000-based handoff schemes; blocked calls; channel convertible set; channel resource shortage; communication service quality; continuous-time Markov chain models; extra channel reallocation; guard channels; handoff calls; multiple channels; performance analysis; performance degradation; performance indexes; soft handoff scheme; stochastic Petri net package; stochastic reward net models; Carbon capture and storage; Degradation; Frequency diversity; Mobile communication; Multiaccess communication; Packaging; Performance analysis; Radio frequency; Signal processing; Stochastic processes; Code-division multiple access (CDMA); performance; soft handoff; stochastic reward net (SRN);
Journal_Title :
Vehicular Technology, IEEE Transactions on
DOI :
10.1109/TVT.2006.877489