We generalize an existing low-cost analog signal processing concept that takes advantage of the periodicity of vehicle-to-vehicle broadcast service to the transmitter side. In particular, we propose to process multiple antennas using either an analog beamforming network (ABN) of phase shifters, or an an antenna switching network (ASN) that periodically alternate between the available antennas, to transmit periodic messages to receivers that have an analog combining network (ACN) of phase shifters, which has been proposed in earlier work. To guarantee robustness, we aim to minimize the burst error probability for the worst receiving vehicular user, in a scenario of bad propagation condition that is modeled by a single dominant path between the communicating vehicles. In absence of any form of channel knowledge, we analytically derive the optimal parameters of both ABN and ASN. The ABN beamforming vector is found to be optimal for all users and not only for the worst receiving user. Further, we demonstrate that Alamouti scheme for the special case of two transmit antennas yields similar performance to ABN and ASN. At last, we show that the derived parameters of the two proposed transmission strategies are also optimal when hybrid ACN-maximal ratio combining is used at the receiver.
翻译:我们推广了利用现有天线之间定期交替的现有低成本模拟模拟信号处理概念,利用车辆对车辆广播服务的周期性向发射方的发射方的循环,特别是,我们提议利用相向式变换器的模拟波形网络(ABN)或天线交换网(ASN)处理多个天线,在现有天线之间定期交替,向拥有相向变换器模拟混合网络(ACN)的接收器定期传递信息,这是先前工作提出的,为了保证稳健,我们的目标是在以通信器之间单一主要路径模拟的不良传播状态下,尽量减少接收最差的天线用户的爆发误差概率。在缺乏任何渠道知识的情况下,我们分析地得出ABN和ASN的最佳参数。据认为,ABN的成型传动矢量对所有用户都是最佳的,而不仅仅对接收最差的用户。此外,我们证明两种传输天线的特殊情况下的Almouti方案具有与ABN和AN相似的性能。最后,我们表明,在使用两种最大传输战略的混合状态下,两个最大传输战略的衍生参数也是最佳的混合。