def simulateBER(argstr): params = Parameters(argstr) if params.code == "symbol": codes = np.array(Modulator(params.mod, params.L).symbols).reshape(params.L, 1, 1) elif params.code == "OSTBC": codes = OSTBCode(params.M, params.mod, params.L).codes elif params.code == "DUC": codes = DiagonalUnitaryCode(params.M, params.L).codes elif params.code == "ADSM": codes = ADSMCode(params.M, params.mod, params.L).codes if params.mode == "BER": channel = IdealRayleighChannel(1, params.M, params.N) else: channel = IdealRayleighChannel(params.ITi, params.M, params.N) if params.sim == "diff": sim = DifferentialMLDSimulator(codes, channel) elif params.sim == "sudiff": sim = SemiUnitaryDifferentialMLDSimulator(codes, channel) elif params.sim == "nsdiff": bases = Basis(params.basis, params.M, params.T).bases sim = NonSquareDifferentialMLDSimulator(codes, channel, bases) if params.mode == "BER": return sim.simulateBERReference(params, outputFile=False, printValue=False) else: return sim.simulateBERParallel(params, outputFile=False, printValue=False)
def test_BERReference_NDOSTC_AWGN(self): truth = np.log10( np.array([ 4.90489052631578936747e-01, 4.68008763157894747131e-01, 3.89989789473684234089e-01, 1.77222684210526310045e-01, 8.28273684210526286997e-03 ])) params = Parameters( "BER_sim=nsdiff_channel=AWGN_code=OSTBC_basis=i_M=2_N=2_T=1_L=2_W=40_IT=1e4_snrfrom=-10.00_to=10.00_len=5" ) codes = OSTBCode(params.M, params.mod, params.L).codes channel = AWGNChannel(1, params.M) bases = Basis(params.basis, params.M, params.T).bases sim = NonSquareDifferentialMLDSimulator(codes, channel, bases) ret = sim.simulateBERReference(params, outputFile=False) np.testing.assert_almost_equal(np.log10(ret["ber"]), truth, 1)
def test_BERReference_NDOSTC_Rayleigh(self): truth = np.log10( np.array([ 4.80833947368421055213e-01, 4.41299473684210519231e-01, 3.40417894736842086001e-01, 1.59756578947368416133e-01, 3.54696052631578925829e-02, 4.77671052631578954561e-03 ])) params = Parameters( "BER_sim=nsdiff_channel=rayleigh_code=OSTBC_basis=i_M=2_N=2_T=1_L=2_W=40_IT=1e4_snrfrom=-10.00_to=15.00_len=6" ) codes = OSTBCode(params.M, params.mod, params.L).codes channel = IdealRayleighChannel(1, params.M, params.N) bases = Basis(params.basis, params.M, params.T).bases sim = NonSquareDifferentialMLDSimulator(codes, channel, bases) ret = sim.simulateBERReference(params, outputFile=False) np.testing.assert_almost_equal(np.log10(ret["ber"]), truth, 1)
def simulateBER(argstr): params = Parameters(argstr) if params.code == "symbol": codes = np.array(Modulator("PSK", params.L).symbols).reshape(params.L, 1, 1) elif params.code == "OSTBC": codes = OSTBCode(params.M, "PSK", params.L).codes elif params.code == "DUC": codes = DiagonalUnitaryCode(params.M, params.L).codes elif params.code == "ADSM": codes = ADSMCode(params.M, params.mod, params.L).codes elif params.code == "TAST": codes = TASTCode(params.M, params.Q, params.L).codes channel = IdealRayleighChannel(params.ITi, params.M, params.N) sim = DifferentialMLDSimulator(codes, channel) return sim.simulateBERParallel(params, outputFile=False, printValue=False)
def test_BERParallel_OSTBC(self): from imtoolkit import Parameters, OSTBCode, IdealRayleighChannel, CoherentMLDSimulator truth = np.log10( np.array([ 2.72212300000000018141e-01, 1.46606500000000000705e-01, 4.03784000000000017905e-02, 3.73150000000000000785e-03 ])) params = Parameters( "BERP_sim=coh_channel=rayleigh_code=OSTBC_M=2_N=2_T=2_L=2_mod=PSK_ITo=1e1_ITi=1e4_snrfrom=-10.00_to=5.00_len=4" ) code = OSTBCode(params.M, "PSK", params.L) channel = IdealRayleighChannel(params.ITi, params.M, params.N) sim = CoherentMLDSimulator(code.codes, channel) ret = sim.simulateBERParallel(params, outputFile=False, printValue=False) np.testing.assert_almost_equal(np.log10(ret["ber"]), truth, 1)
def test_AMIParallel_OSTBC(self): from imtoolkit import Parameters, OSTBCode, IdealRayleighChannel, CoherentMLDSimulator truth = np.array([ 2.34009305866733186008e-01, 5.31335636295124702499e-01, 8.56159232876912645871e-01, 9.85823618846433324947e-01, 9.99561665572359148157e-01, 9.99989963240521695376e-01, 9.99999993834903122547e-01 ]) params = Parameters( "AMIP_sim=coh_channel=rayleigh_code=OSTBC_M=2_N=2_T=2_L=2_mod=PSK_ITo=1e1_ITi=1e2_snrfrom=-10.00_to=20.00_len=7" ) code = OSTBCode(params.M, "PSK", params.L) channel = IdealRayleighChannel(params.ITi, params.M, params.N) sim = CoherentMLDSimulator(code.codes, channel) ret = sim.simulateAMIParallel(params, outputFile=False, printValue=False) np.testing.assert_almost_equal(ret["ami"], truth, 1)
def test_BERReference_OSTBC(self): truth = np.log10( np.array([ 4.30007799999999995588e-01, 3.16763799999999984269e-01, 1.40630900000000003125e-01, 2.39459999999999985365e-02, 1.21079999999999994055e-03 ])) params = Parameters( "BER_sim=diff_channel=rayleigh_code=OSTBC_M=2_N=2_T=2_L=2_mod=PSK_IT=1e4_snrfrom=-10.00_to=10.00_len=5" ) #params = Parameters("BER_sim=diff_channel=rayleigh_code=OSTBC_M=2_N=2_T=2_L=2_mod=PSK_IT=1e6_snrfrom=-10.00_to=10.00_len=5") code = OSTBCode(params.M, "PSK", params.L) channel = IdealRayleighChannel(1, params.M, params.N) sim = DifferentialMLDSimulator(code.codes, channel) ret = sim.simulateBERReference(params, outputFile=False, printValue=False) np.testing.assert_almost_equal(np.log10(ret["ber"]), truth, 1)
def test_BERParallel_NDOSTC(self): from imtoolkit import Parameters, OSTBCode, IdealRayleighChannel, CoherentMLDSimulator, Basis truth = np.log10( np.array([ 3.43530300000000010652e-01, 2.47677700000000000635e-01, 1.30837700000000001221e-01, 4.04209000000000026609e-02, 7.00869999999999965246e-03, 8.46599999999999978419e-04, 9.30999999999999997046e-05 ])) params = Parameters( "BERP_sim=rcoh_channel=rayleigh_code=OSTBC_basis=i_M=2_N=2_T=1_L=2_ITo=1e1_ITi=1e5_snrfrom=-10.00_to=20.00_len=7" ) codes = OSTBCode(params.M, params.mod, params.L).codes bases = Basis(params.basis, params.M, params.T).bases codes = np.matmul(codes, bases[0]) channel = IdealRayleighChannel(params.ITi, params.M, params.N) sim = CoherentMLDSimulator(codes, channel) ret = sim.simulateBERParallel(params, outputFile=False, printValue=False) np.testing.assert_almost_equal(np.log10(ret["ber"]), truth, 1)