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Capacity Analysis for UWB Systems with Power Controlled Terminals under Power and Coexistence Constraints

机译:功率和共存约束下具有功率控制终端的UWB系统的容量分析

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Ultra-wideband (UWB) wireless technology will play a key role in the future beyond third generation wireless systems guaranteeing very high bit rates availability, low power consumption, low costs and location capabilities. The worldwide acceptance of UWB technology is mainly related to coexistence issues with other existing narrowband and wideband systems sharing the spectrum with UWB. To this aim regulatory bodies imposed restrictions on UWB transmissions so implicitly limiting its system capacity intended as the number of users that can be served for a specified link outage probability. In this work the problem of calculation. of UWB system capacity subject to power and coexistence constraints is analyzed. The problem is first formulated and a semi-analytical method for solving it is presented. The proposed procedure is then applied to a study case considering the coexistence between an UWB network located inside a building and outdoor fixed wireless systems. It is observed that power and coexistence constraints can lead to a significant under-utilization of the available UWB system capacity. The capacity-coexistence tradeoff is also discussed. In general, it can be observed that depending on the relative position between the UWB devices and the victim receiver, coexistence requirements may result to be more restrictive than power limitations and the UWB system can be limited by coexistence rather than by self-interference
机译:超宽带(UWB)无线技术将在未来的第三代无线系统之外发挥关键作用,从而确保非常高的比特率可用性,低功耗,低成本和定位功能。 UWB技术在全球范围内的接受度主要与与其他现有的与UWB共享频谱的窄带和宽带系统的共存问题有关。为此,监管机构对UWB传输施加了限制,因此隐式地限制了其系统容量,该容量旨在为特定链路中断概率提供服务的用户数量。在这项工作中的计算问题。分析了受功率和共存约束的超宽带系统容量。首先提出问题,并提出解决问题的半分析方法。然后,考虑到位于建筑物内部的UWB网络与室外固定无线系统之间的共存,将建议的过程应用于研究案例。可以看到,功率和共存限制会导致可用UWB系统容量的严重利用不足。还讨论了容量共存权衡。通常,可以观察到,根据UWB设备与受害接收机之间的相对位置,共存要求可能会比功率限制更具限制性,并且UWB系统可能会受到共存而非自身干扰的限制。

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