In [8], the authors proposed several stochastic resource allocation formulations to minimize the cost of composing a virtual LTE-U network from a hybrid set of HD/FD Wi-Fi access points (APs). An AP is assumed to be either HD or FD (with perfect SIC). In general, different devices in a network may have different SIC capabilities, depending, mainly, on the employed analog and digital cancellation mechanisms. In [9] the authors proposed joint channel and base station (BS) stochastic allocation schemes for opportunistic LTE networks with heterogeneous SIC capabilities at different BSs. The resource allocation schemes in [8, 9] are centralized with high computational complexity. Instead, in this paper we develop a game-theoretic framework to analyze the performance of wireless networks with heterogeneous SIC capabilities and in the absence of any global information (i.e., a link does not know the exact SIC level of its neighboring link).